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In cytoplasm, acts as a nucleation-promoting factor for both branched and unbranched actin filaments. Activates the Arp2/3 complex to induce branched actin filament networks. Also catalyzes actin polymerization in the absence of Arp2/3, creating unbranched filaments. Contributes to cell motility by controlling actin dynamics. May promote the rapid formation of a branched actin network by first nucleating new mother filaments and then activating Arp2/3 to branch off these filaments. The p53/TP53-cofactor and actin activator activities are regulated via its subcellular location (By similarity).","idgFamily":"Non-IDG","idgTDL":"Tbio","novelty":-1.2675985998783523,"antibodyCount":162,"monoclonalCount":38,"pubmedCount":null,"jensenScore":21.199856,"patentCount":null,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":null,"knowledgeAvailability":33.23119018034973,"pubTatorScore":1.1147776986284144,"self":"https://pharos.nih.gov/idg/api/v1/targets(3001)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":274,"href":"https://pharos.nih.gov/idg/api/v1/targets(3001)/properties"},"_links":{"count":921,"href":"https://pharos.nih.gov/idg/api/v1/targets(3001)/links"},"_synonyms":{"count":75,"href":"https://pharos.nih.gov/idg/api/v1/targets(3001)/synonyms"},"_publications":{"count":28,"href":"https://pharos.nih.gov/idg/api/v1/targets(3001)/publications"},"_namespace":null},{"id":3002,"version":2,"created":1554875598000,"modified":1554875600000,"deprecated":false,"name":"Calcium-regulated heat-stable protein 1","accession":"Q9Y2V2","gene":"CARHSP1","description":"Binds mRNA and regulates the stability of target mRNA. 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Required for coatomer-mediated retrograde transport in certain cells (By similarity). May recruit other proteins to membranes with high curvature. May promote membrane fusion (PubMed:11604418). Involved in activation of caspase-dependent apoptosis by promoting BAX/BAK1 activation (PubMed:16227588). Isoform 1 acts proapoptotic in fibroblasts (By similarity). Involved in caspase-independent apoptosis during nutrition starvation and involved in the regulation of autophagy. Activates lipid kinase activity of PIK3C3 during autophagy probably by associating with the PI3K complex II (PI3KC3-C2) (PubMed:17891140). Associated with PI3KC3-C2 during autophagy may regulate the trafficking of ATG9A from the Golgi complex to the peripheral cytoplasm for the formation of autophagosomes by inducing Golgi membrane tubulation and fragmentation (PubMed:21068542). Involved in regulation of degradative endocytic trafficking and cytokinesis, probably in the context of PI3KC3-C2 (PubMed:20643123). 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Rho-2 GABA receptor could play a role in retinal neurotransmission.","idgFamily":"Ion Channel","idgTDL":"Tbio","novelty":-1.7436544253841788,"antibodyCount":92,"monoclonalCount":0,"pubmedCount":null,"jensenScore":53.859901,"patentCount":1150,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":null,"knowledgeAvailability":29.74284246592097,"pubTatorScore":0.8465882745165487,"self":"https://pharos.nih.gov/idg/api/v1/targets(3010)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":229,"href":"https://pharos.nih.gov/idg/api/v1/targets(3010)/properties"},"_links":{"count":807,"href":"https://pharos.nih.gov/idg/api/v1/targets(3010)/links"},"_synonyms":{"count":104,"href":"https://pharos.nih.gov/idg/api/v1/targets(3010)/synonyms"},"_publications":{"count":33,"href":"https://pharos.nih.gov/idg/api/v1/targets(3010)/publications"},"_namespace":null},{"id":3011,"version":3,"created":1554875624000,"modified":1555034471000,"deprecated":false,"name":"Calcium-binding protein 39","accession":"Q9Y376","gene":"CAB39","description":"Component of a complex that binds and activates STK11/LKB1. 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Preferentially associates with the sarcoglycan subcomplex of the DGC.","idgFamily":"Non-IDG","idgTDL":"Tbio","novelty":-1.6422208030778664,"antibodyCount":42,"monoclonalCount":2,"pubmedCount":null,"jensenScore":48.732585,"patentCount":null,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":null,"knowledgeAvailability":31.98296812826166,"pubTatorScore":1.4912980440144215,"self":"https://pharos.nih.gov/idg/api/v1/targets(3013)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":280,"href":"https://pharos.nih.gov/idg/api/v1/targets(3013)/properties"},"_links":{"count":953,"href":"https://pharos.nih.gov/idg/api/v1/targets(3013)/links"},"_synonyms":{"count":90,"href":"https://pharos.nih.gov/idg/api/v1/targets(3013)/synonyms"},"_publications":{"count":32,"href":"https://pharos.nih.gov/idg/api/v1/targets(3013)/publications"},"_namespace":null},{"id":3014,"version":2,"created":1554875635000,"modified":1554875635000,"deprecated":false,"name":"Immunoglobulin lambda variable 5-39","accession":"A0A0G2JS06","gene":"IGLV5-39","description":"V region of the variable domain of immunoglobulin light chains that participates in the antigen recognition (PubMed:24600447). 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May regulate the participation of VAMP7 in membrane fusion events; in vitro inhibits VAMP7-mediated SNARE complex formation by trapping VAMP7 in a closed, fusogenically inactive conformation (PubMed:23104059). Involved in peripheral melanosomal distribution of TYRP1 in melanocytes; the function, which probably is implicating vesicle-trafficking, includes cooperation with Rab32, Rab38 and VAMP7 (By similarity). Involved in the regulation of neurite growth; the function seems to require its GEF activity, probably towards Rab21, and VAMP7 but not Rab32/38 (By similarity). Proposed to be involved in Golgi sorting of VAMP7 and transport of VAMP7 vesicles to the cell surface; the function seems to implicate kinesin heavy chain isoform 5 proteins, GOLGA4, RAB21 and MACF1 (PubMed:22705394). Required for the colocalization of VAMP7 and Rab21, probably on TGN sites (PubMed:19745841). Involved in GLUT1 endosome-to-plasma membrane trafficking; the function is dependent of association with VPS29 (PubMed:24856514). 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The XPC complex recognizes a wide spectrum of damaged DNA characterized by distortions of the DNA helix such as single-stranded loops, mismatched bubbles or single-stranded overhangs. The orientation of XPC complex binding appears to be crucial for inducing a productive NER. XPC complex is proposed to recognize and to interact with unpaired bases on the undamaged DNA strand which is followed by recruitment of the TFIIH complex and subsequent scanning for lesions in the opposite strand in a 5'-to-3' direction by the NER machinery. Cyclobutane pyrimidine dimers (CPDs) which are formed upon UV-induced DNA damage esacpe detection by the XPC complex due to a low degree of structural perurbation. Instead they are detected by the UV-DDB complex which in turn recruits and cooperates with the XPC complex in the respective DNA repair. In vitro, the XPC:RAD23B dimer is sufficient to initiate NER; it preferentially binds to cisplatin and UV-damaged double-stranded DNA and also binds to a variety of chemically and structurally diverse DNA adducts. XPC:RAD23B contacts DNA both 5' and 3' of a cisplatin lesion with a preference for the 5' side. XPC:RAD23B induces a bend in DNA upon binding. XPC:RAD23B stimulates the activity of DNA glycosylases TDG and SMUG1.","idgFamily":"Non-IDG","idgTDL":"Tbio","novelty":-1.9941188304798478,"antibodyCount":313,"monoclonalCount":72,"pubmedCount":null,"jensenScore":96.76713,"patentCount":null,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":9,"knowledgeAvailability":48.0881105701836,"pubTatorScore":1.7977566535369864,"self":"https://pharos.nih.gov/idg/api/v1/targets(3023)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":533,"href":"https://pharos.nih.gov/idg/api/v1/targets(3023)/properties"},"_links":{"count":1234,"href":"https://pharos.nih.gov/idg/api/v1/targets(3023)/links"},"_synonyms":{"count":124,"href":"https://pharos.nih.gov/idg/api/v1/targets(3023)/synonyms"},"_publications":{"count":106,"href":"https://pharos.nih.gov/idg/api/v1/targets(3023)/publications"},"_namespace":null},{"id":3024,"version":2,"created":1554875683000,"modified":1554875685000,"deprecated":false,"name":"Dysbindin domain-containing protein 2","accession":"Q9BQY9","gene":"DBNDD2","description":"May modulate the activity of casein kinase-1. 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Required for the association of HIV-1 vpr with the host proteasome.","idgFamily":"Non-IDG","idgTDL":"Tbio","novelty":-1.572819107856202,"antibodyCount":356,"monoclonalCount":68,"pubmedCount":null,"jensenScore":35.696191,"patentCount":null,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":1,"knowledgeAvailability":40.48243414961172,"pubTatorScore":1.7446493574220558,"self":"https://pharos.nih.gov/idg/api/v1/targets(3025)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":478,"href":"https://pharos.nih.gov/idg/api/v1/targets(3025)/properties"},"_links":{"count":1144,"href":"https://pharos.nih.gov/idg/api/v1/targets(3025)/links"},"_synonyms":{"count":143,"href":"https://pharos.nih.gov/idg/api/v1/targets(3025)/synonyms"},"_publications":{"count":72,"href":"https://pharos.nih.gov/idg/api/v1/targets(3025)/publications"},"_namespace":null},{"id":3026,"version":2,"created":1554875689000,"modified":1554875690000,"deprecated":false,"name":"WAP four-disulfide core domain protein 6","accession":"Q9BQY6","gene":"WFDC6","description":null,"idgFamily":"Non-IDG","idgTDL":"Tdark","novelty":-0.03476210770686023,"antibodyCount":2,"monoclonalCount":2,"pubmedCount":null,"jensenScore":0.743589,"patentCount":null,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":null,"knowledgeAvailability":7.128914059590625,"pubTatorScore":null,"self":"https://pharos.nih.gov/idg/api/v1/targets(3026)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":110,"href":"https://pharos.nih.gov/idg/api/v1/targets(3026)/properties"},"_links":{"count":207,"href":"https://pharos.nih.gov/idg/api/v1/targets(3026)/links"},"_synonyms":{"count":69,"href":"https://pharos.nih.gov/idg/api/v1/targets(3026)/synonyms"},"_publications":{"count":6,"href":"https://pharos.nih.gov/idg/api/v1/targets(3026)/publications"},"_namespace":null},{"id":3027,"version":2,"created":1554875690000,"modified":1554875709000,"deprecated":false,"name":"Rod cGMP-specific 3',5'-cyclic phosphodiesterase subunit alpha","accession":"P16499","gene":"PDE6A","description":"This protein participates in processes of transmission and amplification of the visual signal.","idgFamily":"Enzyme","idgTDL":"Tclin","novelty":-1.2922764854140782,"antibodyCount":111,"monoclonalCount":0,"pubmedCount":null,"jensenScore":20.270705,"patentCount":null,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":null,"knowledgeAvailability":32.043413971396944,"pubTatorScore":1.9701159226817389,"self":"https://pharos.nih.gov/idg/api/v1/targets(3027)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":286,"href":"https://pharos.nih.gov/idg/api/v1/targets(3027)/properties"},"_links":{"count":891,"href":"https://pharos.nih.gov/idg/api/v1/targets(3027)/links"},"_synonyms":{"count":94,"href":"https://pharos.nih.gov/idg/api/v1/targets(3027)/synonyms"},"_publications":{"count":28,"href":"https://pharos.nih.gov/idg/api/v1/targets(3027)/publications"},"_namespace":null},{"id":3028,"version":2,"created":1554875710000,"modified":1554875712000,"deprecated":false,"name":"Phylloquinone omega-hydroxylase CYP4F11","accession":"Q9HBI6","gene":"CYP4F11","description":"Omega-hydroxylase that oxidizes a variety of structurally unrelated compounds, including fatty acids and xenobiotics. 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Activated by amino acids through a mechanism involving the lysosomal V-ATPase, the Ragulator functions as a guanine nucleotide exchange factor activating the small GTPases Rag. Activated Ragulator and Rag GTPases function as a scaffold recruiting mTORC1 to lysosomes where it is in turn activated. Adapter protein that enhances the efficiency of the MAP kinase cascade facilitating the activation of MAPK2.","idgFamily":"Non-IDG","idgTDL":"Tbio","novelty":-0.9631896808908474,"antibodyCount":81,"monoclonalCount":2,"pubmedCount":null,"jensenScore":9.784527,"patentCount":null,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":2,"knowledgeAvailability":35.65492299041795,"pubTatorScore":0.8629922540626748,"self":"https://pharos.nih.gov/idg/api/v1/targets(3111)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":417,"href":"https://pharos.nih.gov/idg/api/v1/targets(3111)/properties"},"_links":{"count":1103,"href":"https://pharos.nih.gov/idg/api/v1/targets(3111)/links"},"_synonyms":{"count":97,"href":"https://pharos.nih.gov/idg/api/v1/targets(3111)/synonyms"},"_publications":{"count":22,"href":"https://pharos.nih.gov/idg/api/v1/targets(3111)/publications"},"_namespace":null},{"id":3112,"version":3,"created":1554876000000,"modified":1555034531000,"deprecated":false,"name":"Leucine-rich repeat and transmembrane domain-containing protein 2","accession":"Q8N967","gene":"LRTM2","description":null,"idgFamily":"Non-IDG","idgTDL":"Tdark","novelty":0.33881855619146894,"antibodyCount":58,"monoclonalCount":0,"pubmedCount":null,"jensenScore":0.424242,"patentCount":null,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":7,"knowledgeAvailability":20.376803049321953,"pubTatorScore":-0.9030899869919435,"self":"https://pharos.nih.gov/idg/api/v1/targets(3112)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":153,"href":"https://pharos.nih.gov/idg/api/v1/targets(3112)/properties"},"_links":{"count":665,"href":"https://pharos.nih.gov/idg/api/v1/targets(3112)/links"},"_synonyms":{"count":84,"href":"https://pharos.nih.gov/idg/api/v1/targets(3112)/synonyms"},"_publications":{"count":5,"href":"https://pharos.nih.gov/idg/api/v1/targets(3112)/publications"},"_namespace":null},{"id":3113,"version":2,"created":1554876003000,"modified":1554876004000,"deprecated":false,"name":"Protein FAM83C","accession":"Q9BQN1","gene":"FAM83C","description":"May play a role in MAPK signaling.","idgFamily":"Non-IDG","idgTDL":"Tdark","novelty":0.17609125905568124,"antibodyCount":4,"monoclonalCount":0,"pubmedCount":null,"jensenScore":0.5625,"patentCount":null,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":null,"knowledgeAvailability":11.626682521751418,"pubTatorScore":-0.7781503817955484,"self":"https://pharos.nih.gov/idg/api/v1/targets(3113)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":164,"href":"https://pharos.nih.gov/idg/api/v1/targets(3113)/properties"},"_links":{"count":701,"href":"https://pharos.nih.gov/idg/api/v1/targets(3113)/links"},"_synonyms":{"count":63,"href":"https://pharos.nih.gov/idg/api/v1/targets(3113)/synonyms"},"_publications":{"count":6,"href":"https://pharos.nih.gov/idg/api/v1/targets(3113)/publications"},"_namespace":null},{"id":3114,"version":2,"created":1554876005000,"modified":1554876007000,"deprecated":false,"name":"N6-adenosine-methyltransferase catalytic subunit","accession":"Q86U44","gene":"METTL3","description":"The METTL3-METTL14 heterodimer forms a N6-methyltransferase complex that methylates adenosine residues at the N(6) position of some RNAs and regulates various processes such as the circadian clock, differentiation of embryonic and haematopoietic stem cells, cortical neurogenesis, response to DNA damage, differentiation of T-cells and primary miRNA processing (PubMed:22575960, PubMed:24284625, PubMed:25719671, PubMed:25799998, PubMed:26321680, PubMed:26593424, PubMed:27627798, PubMed:27373337, PubMed:27281194, PubMed:28297716, PubMed:9409616). In the heterodimer formed with METTL14, METTL3 constitutes the catalytic core (PubMed:27627798, PubMed:27373337, PubMed:27281194). N6-methyladenosine (m6A), which takes place at the 5'-[AG]GAC-3' consensus sites of some mRNAs, plays a role in mRNA stability, processing, translation efficiency and editing (PubMed:22575960, PubMed:24284625, PubMed:25719671, PubMed:25799998, PubMed:26321680, PubMed:26593424, PubMed:28297716, PubMed:9409616). M6A acts as a key regulator of mRNA stability: methylation is completed upon the release of mRNA into the nucleoplasm and promotes mRNA destabilization and degradation (PubMed:28637692). In embryonic stem cells (ESCs), m6A methylation of mRNAs encoding key naive pluripotency-promoting transcripts results in transcript destabilization, promoting differentiation of ESCs (By similarity). M6A regulates the length of the circadian clock: acts as an early pace-setter in the circadian loop by putting mRNA production on a fast-track for facilitating nuclear processing, thereby providing an early point of control in setting the dynamics of the feedback loop (By similarity). M6A regulates spermatogonial differentiation and meiosis and is essential for male fertility and spermatogenesis (By similarity). Involved in the response to DNA damage: in response to ultraviolet irradiation, METTL3 rapidly catalyzes the formation of m6A on poly(A) transcripts at DNA damage sites, leading to the recruitment of POLK to DNA damage sites (PubMed:28297716). M6A is also required for T-cell homeostasis and differentiation: m6A methylation of transcripts of SOCS family members (SOCS1, SOCS3 and CISH) in naive T-cells promotes mRNA destabilization and degradation, promoting T-cell differentiation (By similarity). M6A also takes place in other RNA molecules, such as primary miRNA (pri-miRNAs) (PubMed:25799998). M6A also regulates cortical neurogenesis: m6A methylation of transcripts related to transcription factors, neural stem cells, the cell cycle and neuronal differentiation during brain development promotes their destabilization and decay, promoting differentiation of radial glial cells (By similarity). METTL3 mediates methylation of pri-miRNAs, marking them for recognition and processing by DGCR8 (PubMed:25799998). Acts as a positive regulator of mRNA translation independently of the methyltransferase activity: promotes translation by interacting with the translation initiation machinery in the cytoplasm (PubMed:27117702). Its overexpression in a number of cancer cells suggests that it may participate to cancer cell proliferation by promoting mRNA translation (PubMed:27117702).","idgFamily":"Enzyme","idgTDL":"Tbio","novelty":-1.761740065764843,"antibodyCount":94,"monoclonalCount":4,"pubmedCount":null,"jensenScore":60.489745,"patentCount":null,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":null,"knowledgeAvailability":36.83411852373786,"pubTatorScore":1.3724736412466039,"self":"https://pharos.nih.gov/idg/api/v1/targets(3114)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":339,"href":"https://pharos.nih.gov/idg/api/v1/targets(3114)/properties"},"_links":{"count":1012,"href":"https://pharos.nih.gov/idg/api/v1/targets(3114)/links"},"_synonyms":{"count":106,"href":"https://pharos.nih.gov/idg/api/v1/targets(3114)/synonyms"},"_publications":{"count":39,"href":"https://pharos.nih.gov/idg/api/v1/targets(3114)/publications"},"_namespace":null},{"id":3115,"version":3,"created":1554876008000,"modified":1555034534000,"deprecated":false,"name":"rRNA-processing protein FCF1 homolog","accession":"Q9Y324","gene":"FCF1","description":"Essential protein involved in pre-rRNA processing and 40S ribosomal subunit assembly.","idgFamily":"Non-IDG","idgTDL":"Tdark","novelty":-2.006221318956311,"antibodyCount":7,"monoclonalCount":0,"pubmedCount":null,"jensenScore":96.255789,"patentCount":null,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":46,"knowledgeAvailability":32.3200598024354,"pubTatorScore":1.177330298176396,"self":"https://pharos.nih.gov/idg/api/v1/targets(3115)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":339,"href":"https://pharos.nih.gov/idg/api/v1/targets(3115)/properties"},"_links":{"count":983,"href":"https://pharos.nih.gov/idg/api/v1/targets(3115)/links"},"_synonyms":{"count":73,"href":"https://pharos.nih.gov/idg/api/v1/targets(3115)/synonyms"},"_publications":{"count":10,"href":"https://pharos.nih.gov/idg/api/v1/targets(3115)/publications"},"_namespace":null},{"id":3116,"version":2,"created":1554876011000,"modified":1554876014000,"deprecated":false,"name":"Polyadenylate-binding protein 2","accession":"Q86U42","gene":"PABPN1","description":"Involved in the 3'-end formation of mRNA precursors (pre-mRNA) by the addition of a poly(A) tail of 200-250 nt to the upstream cleavage product (By similarity). Stimulates poly(A) polymerase (PAPOLA) conferring processivity on the poly(A) tail elongation reaction and controls also the poly(A) tail length (By similarity). Increases the affinity of poly(A) polymerase for RNA (By similarity). Is also present at various stages of mRNA metabolism including nucleocytoplasmic trafficking and nonsense-mediated decay (NMD) of mRNA. Cooperates with SKIP to synergistically activate E-box-mediated transcription through MYOD1 and may regulate the expression of muscle-specific genes (PubMed:11371506). Binds to poly(A) and to poly(G) with high affinity (By similarity). May protect the poly(A) tail from degradation (By similarity). Subunit of the trimeric poly(A) tail exosome targeting (PAXT) complex, a complex that directs a subset of long and polyadenylated poly(A) RNAs for exosomal degradation. The RNA exosome is fundamental for the degradation of RNA in eukaryotic nuclei. Substrate targeting is facilitated by its cofactor SKIV2L2/MTR4, which links to RNA-binding protein adapters (PubMed:27871484).","idgFamily":"Non-IDG","idgTDL":"Tbio","novelty":-2.4875731089631583,"antibodyCount":120,"monoclonalCount":13,"pubmedCount":null,"jensenScore":316.411224,"patentCount":null,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":null,"knowledgeAvailability":41.61439117889239,"pubTatorScore":2.2081607884563956,"self":"https://pharos.nih.gov/idg/api/v1/targets(3116)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":518,"href":"https://pharos.nih.gov/idg/api/v1/targets(3116)/properties"},"_links":{"count":1202,"href":"https://pharos.nih.gov/idg/api/v1/targets(3116)/links"},"_synonyms":{"count":103,"href":"https://pharos.nih.gov/idg/api/v1/targets(3116)/synonyms"},"_publications":{"count":97,"href":"https://pharos.nih.gov/idg/api/v1/targets(3116)/publications"},"_namespace":null},{"id":3117,"version":2,"created":1554876015000,"modified":1554876017000,"deprecated":false,"name":"Zinc finger protein 257","accession":"Q9Y2Q1","gene":"ZNF257","description":"May be involved in transcriptional regulation.","idgFamily":"Transcription Factor","idgTDL":"Tdark","novelty":-0.06694678818296496,"antibodyCount":37,"monoclonalCount":2,"pubmedCount":null,"jensenScore":1.130435,"patentCount":null,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":null,"knowledgeAvailability":22.502930192622976,"pubTatorScore":-0.7781503817955484,"self":"https://pharos.nih.gov/idg/api/v1/targets(3117)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":228,"href":"https://pharos.nih.gov/idg/api/v1/targets(3117)/properties"},"_links":{"count":786,"href":"https://pharos.nih.gov/idg/api/v1/targets(3117)/links"},"_synonyms":{"count":83,"href":"https://pharos.nih.gov/idg/api/v1/targets(3117)/synonyms"},"_publications":{"count":6,"href":"https://pharos.nih.gov/idg/api/v1/targets(3117)/publications"},"_namespace":null},{"id":3118,"version":3,"created":1554876018000,"modified":1555034536000,"deprecated":false,"name":"Thioredoxin-related transmembrane protein 2","accession":"Q9Y320","gene":"TMX2","description":null,"idgFamily":"Non-IDG","idgTDL":"Tdark","novelty":-0.9287493192879259,"antibodyCount":50,"monoclonalCount":0,"pubmedCount":null,"jensenScore":7.356068,"patentCount":null,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":2,"knowledgeAvailability":32.77290262603219,"pubTatorScore":0.7556328786278821,"self":"https://pharos.nih.gov/idg/api/v1/targets(3118)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":327,"href":"https://pharos.nih.gov/idg/api/v1/targets(3118)/properties"},"_links":{"count":1038,"href":"https://pharos.nih.gov/idg/api/v1/targets(3118)/links"},"_synonyms":{"count":94,"href":"https://pharos.nih.gov/idg/api/v1/targets(3118)/synonyms"},"_publications":{"count":18,"href":"https://pharos.nih.gov/idg/api/v1/targets(3118)/publications"},"_namespace":null},{"id":3119,"version":2,"created":1554876020000,"modified":1554876024000,"deprecated":false,"name":"Phospholipid-transporting ATPase IA","accession":"Q9Y2Q0","gene":"ATP8A1","description":"Catalytic component of a P4-ATPase flippase complex which catalyzes the hydrolysis of ATP coupled to the transport of aminophospholipids from the outer to the inner leaflet of various membranes and ensures the maintenance of asymmetric distribution of phospholipids. Phospholipid translocation seems also to be implicated in vesicle formation and in uptake of lipid signaling molecules. In vitro, its ATPase activity is selectively and stereospecifically stimulated by phosphatidylserine (PS). The flippase complex ATP8A1:TMEM30A seems to play a role in regulation of cell migration probably involving flippase-mediated translocation of phosphatidylethanolamine (PE) at the plasma membrane. Acts as aminophospholipid translocase at the plasma membrane in neuronal 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Binds to CDE and promotes mRNA deadenylation and degradation. This process does not involve miRNAs. In follicular helper T (Tfh) cells, represses of ICOS and TNFRSF4 expression, thus preventing spontaneous Tfh cell differentiation, germinal center B-cell differentiation in the absence of immunization and autoimmunity. In resting or LPS-stimulated macrophages, controls inflammation by suppressing TNF expression. Also recognizes CDE in its own mRNA and in that of paralogous RC3H2, possibly leading to feedback loop regulation (By similarity). May act as a ubiquitin E3 ligase. 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Required for the maintenance of inner ear hair cells.","idgFamily":"Transcription Factor","idgTDL":"Tbio","novelty":-2.2078290161886645,"antibodyCount":176,"monoclonalCount":70,"pubmedCount":null,"jensenScore":172.723269,"patentCount":null,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":null,"knowledgeAvailability":39.16217723791701,"pubTatorScore":2.1956296890772684,"self":"https://pharos.nih.gov/idg/api/v1/targets(3228)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":322,"href":"https://pharos.nih.gov/idg/api/v1/targets(3228)/properties"},"_links":{"count":877,"href":"https://pharos.nih.gov/idg/api/v1/targets(3228)/links"},"_synonyms":{"count":96,"href":"https://pharos.nih.gov/idg/api/v1/targets(3228)/synonyms"},"_publications":{"count":59,"href":"https://pharos.nih.gov/idg/api/v1/targets(3228)/publications"},"_namespace":null},{"id":3229,"version":2,"created":1554876485000,"modified":1554876485000,"deprecated":false,"name":"Putative uncharacterized protein encoded by LINC01546","accession":"A6NGU7","gene":"LINC01546","description":null,"idgFamily":"Non-IDG","idgTDL":"Tdark","novelty":null,"antibodyCount":0,"monoclonalCount":0,"pubmedCount":null,"jensenScore":0.0,"patentCount":null,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":null,"knowledgeAvailability":3.40539003260517,"pubTatorScore":null,"self":"https://pharos.nih.gov/idg/api/v1/targets(3229)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":18,"href":"https://pharos.nih.gov/idg/api/v1/targets(3229)/properties"},"_links":{"count":16,"href":"https://pharos.nih.gov/idg/api/v1/targets(3229)/links"},"_synonyms":{"count":28,"href":"https://pharos.nih.gov/idg/api/v1/targets(3229)/synonyms"},"_publications":{"count":3,"href":"https://pharos.nih.gov/idg/api/v1/targets(3229)/publications"},"_namespace":null},{"id":3230,"version":3,"created":1554876485000,"modified":1555034616000,"deprecated":false,"name":"2'-5'-oligoadenylate synthase 2","accession":"P29728","gene":"OAS2","description":"Interferon-induced, dsRNA-activated antiviral enzyme which plays a critical role in cellular innate antiviral response. In addition, it may also play a role in other cellular processes such as apoptosis, cell growth, differentiation and gene regulation. Synthesizes higher oligomers of 2'-5'-oligoadenylates (2-5A) from ATP which then bind to the inactive monomeric form of ribonuclease L (RNase L) leading to its dimerization and subsequent activation. Activation of RNase L leads to degradation of cellular as well as viral RNA, resulting in the inhibition of protein synthesis, thus terminating viral replication. Can mediate the antiviral effect via the classical RNase L-dependent pathway or an alternative antiviral pathway independent of RNase L.","idgFamily":"Enzyme","idgTDL":"Tbio","novelty":-1.4149617003490071,"antibodyCount":293,"monoclonalCount":131,"pubmedCount":null,"jensenScore":20.840618,"patentCount":null,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":2,"knowledgeAvailability":36.234737278769295,"pubTatorScore":1.2566597640342612,"self":"https://pharos.nih.gov/idg/api/v1/targets(3230)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":443,"href":"https://pharos.nih.gov/idg/api/v1/targets(3230)/properties"},"_links":{"count":1066,"href":"https://pharos.nih.gov/idg/api/v1/targets(3230)/links"},"_synonyms":{"count":94,"href":"https://pharos.nih.gov/idg/api/v1/targets(3230)/synonyms"},"_publications":{"count":40,"href":"https://pharos.nih.gov/idg/api/v1/targets(3230)/publications"},"_namespace":null},{"id":3231,"version":3,"created":1554876489000,"modified":1555034618000,"deprecated":false,"name":"Tetratricopeptide repeat protein 6","accession":"Q86TZ1","gene":"TTC6","description":null,"idgFamily":"Non-IDG","idgTDL":"Tdark","novelty":0.2688453129607253,"antibodyCount":63,"monoclonalCount":1,"pubmedCount":null,"jensenScore":0.571429,"patentCount":null,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":2,"knowledgeAvailability":10.555409659497569,"pubTatorScore":-0.024823788098954087,"self":"https://pharos.nih.gov/idg/api/v1/targets(3231)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":160,"href":"https://pharos.nih.gov/idg/api/v1/targets(3231)/properties"},"_links":{"count":561,"href":"https://pharos.nih.gov/idg/api/v1/targets(3231)/links"},"_synonyms":{"count":65,"href":"https://pharos.nih.gov/idg/api/v1/targets(3231)/synonyms"},"_publications":{"count":7,"href":"https://pharos.nih.gov/idg/api/v1/targets(3231)/publications"},"_namespace":null},{"id":3232,"version":3,"created":1554876491000,"modified":1555034619000,"deprecated":false,"name":"HLA class II histocompatibility antigen, DP beta 1 chain","accession":"P04440","gene":"HLA-DPB1","description":"Binds peptides derived from antigens that access the endocytic route of antigen presenting cells (APC) and presents them on the cell surface for recognition by the CD4 T-cells. The peptide binding cleft accommodates peptides of 10-30 residues. The peptides presented by MHC class II molecules are generated mostly by degradation of proteins that access the endocytic route, where they are processed by lysosomal proteases and other hydrolases. Exogenous antigens that have been endocytosed by the APC are thus readily available for presentation via MHC II molecules, and for this reason this antigen presentation pathway is usually referred to as exogenous. As membrane proteins on their way to degradation in lysosomes as part of their normal turn-over are also contained in the endosomal/lysosomal compartments, exogenous antigens must compete with those derived from endogenous components. Autophagy is also a source of endogenous peptides, autophagosomes constitutively fuse with MHC class II loading compartments. In addition to APCs, other cells of the gastrointestinal tract, such as epithelial cells, express MHC class II molecules and CD74 and act as APCs, which is an unusual trait of the GI tract. To produce a MHC class II molecule that presents an antigen, three MHC class II molecules (heterodimers of an alpha and a beta chain) associate with a CD74 trimer in the ER to form a heterononamer. Soon after the entry of this complex into the endosomal/lysosomal system where antigen processing occurs, CD74 undergoes a sequential degradation by various proteases, including CTSS and CTSL, leaving a small fragment termed CLIP (class-II-associated invariant chain peptide). The removal of CLIP is facilitated by HLA-DM via direct binding to the alpha-beta-CLIP complex so that CLIP is released. HLA-DM stabilizes MHC class II molecules until primary high affinity antigenic peptides are bound. The MHC II molecule bound to a peptide is then transported to the cell membrane surface. In B-cells, the interaction between HLA-DM and MHC class II molecules is regulated by HLA-DO. Primary dendritic cells (DCs) also to express HLA-DO. Lysosomal microenvironment has been implicated in the regulation of antigen loading into MHC II molecules, increased acidification produces increased proteolysis and efficient peptide loading.","idgFamily":"Non-IDG","idgTDL":"Tbio","novelty":-2.6921938624792503,"antibodyCount":321,"monoclonalCount":148,"pubmedCount":null,"jensenScore":594.429944,"patentCount":null,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":9,"knowledgeAvailability":37.417493663890376,"pubTatorScore":2.1559791156840262,"self":"https://pharos.nih.gov/idg/api/v1/targets(3232)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":743,"href":"https://pharos.nih.gov/idg/api/v1/targets(3232)/properties"},"_links":{"count":1282,"href":"https://pharos.nih.gov/idg/api/v1/targets(3232)/links"},"_synonyms":{"count":506,"href":"https://pharos.nih.gov/idg/api/v1/targets(3232)/synonyms"},"_publications":{"count":349,"href":"https://pharos.nih.gov/idg/api/v1/targets(3232)/publications"},"_namespace":null},{"id":3233,"version":3,"created":1554876497000,"modified":1554876584000,"deprecated":false,"name":"Protein kinase C beta type","accession":"P05771","gene":"PRKCB","description":"Calcium-activated, phospholipid- and diacylglycerol (DAG)-dependent serine/threonine-protein kinase involved in various cellular processes such as regulation of the B-cell receptor (BCR) signalosome, oxidative stress-induced apoptosis, androgen receptor-dependent transcription regulation, insulin signaling and endothelial cells proliferation. Plays a key role in B-cell activation by regulating BCR-induced NF-kappa-B activation. Mediates the activation of the canonical NF-kappa-B pathway (NFKB1) by direct phosphorylation of CARD11/CARMA1 at 'Ser-559', 'Ser-644' and 'Ser-652'. Phosphorylation induces CARD11/CARMA1 association with lipid rafts and recruitment of the BCL10-MALT1 complex as well as MAP3K7/TAK1, which then activates IKK complex, resulting in nuclear translocation and activation of NFKB1. Plays a direct role in the negative feedback regulation of the BCR signaling, by down-modulating BTK function via direct phosphorylation of BTK at 'Ser-180', which results in the alteration of BTK plasma membrane localization and in turn inhibition of BTK activity. Involved in apoptosis following oxidative damage: in case of oxidative conditions, specifically phosphorylates 'Ser-36' of isoform p66Shc of SHC1, leading to mitochondrial accumulation of p66Shc, where p66Shc acts as a reactive oxygen species producer. Acts as a coactivator of androgen receptor (ANDR)-dependent transcription, by being recruited to ANDR target genes and specifically mediating phosphorylation of 'Thr-6' of histone H3 (H3T6ph), a specific tag for epigenetic transcriptional activation that prevents demethylation of histone H3 'Lys-4' (H3K4me) by LSD1/KDM1A. In insulin signaling, may function downstream of IRS1 in muscle cells and mediate insulin-dependent DNA synthesis through the RAF1-MAPK/ERK signaling cascade. May participate in the regulation of glucose transport in adipocytes by negatively modulating the insulin-stimulated translocation of the glucose transporter SLC2A4/GLUT4. Under high glucose in pancreatic beta-cells, is probably involved in the inhibition of the insulin gene transcription, via regulation of MYC expression. In endothelial cells, activation of PRKCB induces increased phosphorylation of RB1, increased VEGFA-induced cell proliferation, and inhibits PI3K/AKT-dependent nitric oxide synthase (NOS3/eNOS) regulation by insulin, which causes endothelial dysfunction. Also involved in triglyceride homeostasis (By similarity). Phosphorylates ATF2 which promotes cooperation between ATF2 and JUN, activating transcription.","idgFamily":"Kinase","idgTDL":"Tchem","novelty":-2.0043722630484933,"antibodyCount":598,"monoclonalCount":71,"pubmedCount":null,"jensenScore":93.477696,"patentCount":10807,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":null,"knowledgeAvailability":54.54878349827856,"pubTatorScore":2.5841151758603984,"self":"https://pharos.nih.gov/idg/api/v1/targets(3233)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":849,"href":"https://pharos.nih.gov/idg/api/v1/targets(3233)/properties"},"_links":{"count":1450,"href":"https://pharos.nih.gov/idg/api/v1/targets(3233)/links"},"_synonyms":{"count":171,"href":"https://pharos.nih.gov/idg/api/v1/targets(3233)/synonyms"},"_publications":{"count":328,"href":"https://pharos.nih.gov/idg/api/v1/targets(3233)/publications"},"_namespace":null},{"id":3234,"version":2,"created":1554876586000,"modified":1554876588000,"deprecated":false,"name":"Hephaestin","accession":"Q9BQS7","gene":"HEPH","description":"May function as a ferroxidase for ferrous (II) to ferric ion (III) conversion and may be involved in copper transport and homeostasis. Implicated in iron homeostasis and may mediate iron efflux associated to ferroportin 1.","idgFamily":"Non-IDG","idgTDL":"Tbio","novelty":-2.025354769576797,"antibodyCount":111,"monoclonalCount":36,"pubmedCount":null,"jensenScore":102.708136,"patentCount":null,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":null,"knowledgeAvailability":35.59688151704589,"pubTatorScore":1.7030865578297858,"self":"https://pharos.nih.gov/idg/api/v1/targets(3234)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":374,"href":"https://pharos.nih.gov/idg/api/v1/targets(3234)/properties"},"_links":{"count":990,"href":"https://pharos.nih.gov/idg/api/v1/targets(3234)/links"},"_synonyms":{"count":102,"href":"https://pharos.nih.gov/idg/api/v1/targets(3234)/synonyms"},"_publications":{"count":30,"href":"https://pharos.nih.gov/idg/api/v1/targets(3234)/publications"},"_namespace":null},{"id":3235,"version":2,"created":1554876589000,"modified":1554876589000,"deprecated":false,"name":"Immunoglobulin heavy variable 5-10-1","accession":"A0A0J9YXX1","gene":"IGHV5-10-1","description":"V region of the variable domain of immunoglobulin heavy chains that participates in the antigen recognition (PubMed:24600447). 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The variable domains are assembled by a process called V-(D)-J rearrangement and can then be subjected to somatic hypermutations which, after exposure to antigen and selection, allow affinity maturation for a particular antigen (PubMed:20176268, PubMed:17576170).","idgFamily":"Non-IDG","idgTDL":"Tdark","novelty":null,"antibodyCount":0,"monoclonalCount":0,"pubmedCount":null,"jensenScore":0.0,"patentCount":null,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":null,"knowledgeAvailability":0.0,"pubTatorScore":null,"self":"https://pharos.nih.gov/idg/api/v1/targets(3235)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":28,"href":"https://pharos.nih.gov/idg/api/v1/targets(3235)/properties"},"_links":{"count":1,"href":"https://pharos.nih.gov/idg/api/v1/targets(3235)/links"},"_synonyms":{"count":26,"href":"https://pharos.nih.gov/idg/api/v1/targets(3235)/synonyms"},"_publications":{"count":7,"href":"https://pharos.nih.gov/idg/api/v1/targets(3235)/publications"},"_namespace":null},{"id":3236,"version":3,"created":1554876589000,"modified":1555034623000,"deprecated":false,"name":"Heat shock protein beta-9","accession":"Q9BQS6","gene":"HSPB9","description":null,"idgFamily":"Non-IDG","idgTDL":"Tbio","novelty":-0.8226166411218366,"antibodyCount":75,"monoclonalCount":3,"pubmedCount":null,"jensenScore":6.540554,"patentCount":null,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":10,"knowledgeAvailability":17.71891418198396,"pubTatorScore":0.5652574615955669,"self":"https://pharos.nih.gov/idg/api/v1/targets(3236)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":131,"href":"https://pharos.nih.gov/idg/api/v1/targets(3236)/properties"},"_links":{"count":124,"href":"https://pharos.nih.gov/idg/api/v1/targets(3236)/links"},"_synonyms":{"count":70,"href":"https://pharos.nih.gov/idg/api/v1/targets(3236)/synonyms"},"_publications":{"count":8,"href":"https://pharos.nih.gov/idg/api/v1/targets(3236)/publications"},"_namespace":null},{"id":3237,"version":2,"created":1554876590000,"modified":1554876590000,"deprecated":false,"name":"Putative uncharacterized protein C20orf78","accession":"Q9BR46","gene":"C20orf78","description":null,"idgFamily":"Non-IDG","idgTDL":"Tdark","novelty":null,"antibodyCount":0,"monoclonalCount":0,"pubmedCount":null,"jensenScore":0.0,"patentCount":null,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":null,"knowledgeAvailability":0.0,"pubTatorScore":null,"self":"https://pharos.nih.gov/idg/api/v1/targets(3237)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":24,"href":"https://pharos.nih.gov/idg/api/v1/targets(3237)/properties"},"_links":{"count":49,"href":"https://pharos.nih.gov/idg/api/v1/targets(3237)/links"},"_synonyms":{"count":30,"href":"https://pharos.nih.gov/idg/api/v1/targets(3237)/synonyms"},"_publications":{"count":1,"href":"https://pharos.nih.gov/idg/api/v1/targets(3237)/publications"},"_namespace":null},{"id":3238,"version":2,"created":1554876590000,"modified":1554876593000,"deprecated":false,"name":"Exosome complex exonuclease RRP44","accession":"Q9Y2L1","gene":"DIS3","description":"Putative catalytic component of the RNA exosome complex which has 3'->5' exoribonuclease activity and participates in a multitude of cellular RNA processing and degradation events. In the nucleus, the RNA exosome complex is involved in proper maturation of stable RNA species such as rRNA, snRNA and snoRNA, in the elimination of RNA processing by-products and non-coding 'pervasive' transcripts, such as antisense RNA species and promoter-upstream transcripts (PROMPTs), and of mRNAs with processing defects, thereby limiting or excluding their export to the cytoplasm. The RNA exosome may be involved in Ig class switch recombination (CSR) and/or Ig variable region somatic hypermutation (SHM) by targeting AICDA deamination activity to transcribed dsDNA substrates. In the cytoplasm, the RNA exosome complex is involved in general mRNA turnover and specifically degrades inherently unstable mRNAs containing AU-rich elements (AREs) within their 3' untranslated regions, and in RNA surveillance pathways, preventing translation of aberrant mRNAs. It seems to be involved in degradation of histone mRNA. DIS3 has both 3'-5' exonuclease and endonuclease activities.","idgFamily":"Enzyme","idgTDL":"Tbio","novelty":-1.8072962586782289,"antibodyCount":141,"monoclonalCount":20,"pubmedCount":null,"jensenScore":64.210099,"patentCount":null,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":null,"knowledgeAvailability":41.9129747937233,"pubTatorScore":1.4477475735399699,"self":"https://pharos.nih.gov/idg/api/v1/targets(3238)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":444,"href":"https://pharos.nih.gov/idg/api/v1/targets(3238)/properties"},"_links":{"count":1083,"href":"https://pharos.nih.gov/idg/api/v1/targets(3238)/links"},"_synonyms":{"count":111,"href":"https://pharos.nih.gov/idg/api/v1/targets(3238)/synonyms"},"_publications":{"count":37,"href":"https://pharos.nih.gov/idg/api/v1/targets(3238)/publications"},"_namespace":null},{"id":3239,"version":3,"created":1554876594000,"modified":1555034623000,"deprecated":false,"name":"Glutathione S-transferase theta-1","accession":"P30711","gene":"GSTT1","description":"Conjugation of reduced glutathione to a wide number of exogenous and endogenous hydrophobic electrophiles. Acts on 1,2-epoxy-3-(4-nitrophenoxy)propane, phenethylisothiocyanate 4-nitrobenzyl chloride and 4-nitrophenethyl bromide. 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It is not known if it has protein kinase activity and what type of substrate it would phosphorylate (Ser, Thr or Tyr).","idgFamily":"Kinase","idgTDL":"Tdark","novelty":-0.04092795043405109,"antibodyCount":142,"monoclonalCount":21,"pubmedCount":null,"jensenScore":1.085714,"patentCount":1673,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":null,"knowledgeAvailability":29.346294517281013,"pubTatorScore":null,"self":"https://pharos.nih.gov/idg/api/v1/targets(3276)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":237,"href":"https://pharos.nih.gov/idg/api/v1/targets(3276)/properties"},"_links":{"count":823,"href":"https://pharos.nih.gov/idg/api/v1/targets(3276)/links"},"_synonyms":{"count":76,"href":"https://pharos.nih.gov/idg/api/v1/targets(3276)/synonyms"},"_publications":{"count":8,"href":"https://pharos.nih.gov/idg/api/v1/targets(3276)/publications"},"_namespace":null},{"id":3277,"version":3,"created":1554876739000,"modified":1555034649000,"deprecated":false,"name":"Cell death activator CIDE-B","accession":"Q9UHD4","gene":"CIDEB","description":"Activates apoptosis.","idgFamily":"Non-IDG","idgTDL":"Tbio","novelty":-1.292161665997601,"antibodyCount":249,"monoclonalCount":27,"pubmedCount":null,"jensenScore":23.591574,"patentCount":null,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":1,"knowledgeAvailability":32.41911227198315,"pubTatorScore":1.2581698894143782,"self":"https://pharos.nih.gov/idg/api/v1/targets(3277)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":232,"href":"https://pharos.nih.gov/idg/api/v1/targets(3277)/properties"},"_links":{"count":887,"href":"https://pharos.nih.gov/idg/api/v1/targets(3277)/links"},"_synonyms":{"count":91,"href":"https://pharos.nih.gov/idg/api/v1/targets(3277)/synonyms"},"_publications":{"count":21,"href":"https://pharos.nih.gov/idg/api/v1/targets(3277)/publications"},"_namespace":null},{"id":3278,"version":2,"created":1554876742000,"modified":1554876765000,"deprecated":false,"name":"Scavenger receptor class B member 1","accession":"Q8WTV0","gene":"SCARB1","description":"(Microbial infection) Acts as a receptor for hepatitis C virus in hepatocytes and appears to facilitate its cell entry (PubMed:12356718, PubMed:12913001, PubMed:18000990). Binding between SCARB1 and the hepatitis C virus glycoprotein E2 is independent of the genotype of the viral isolate (PubMed:12356718). Mediates uptake of M.fortuitum, E.coli and S.aureus (PubMed:16020694).","idgFamily":"Non-IDG","idgTDL":"Tchem","novelty":-2.939203982426617,"antibodyCount":378,"monoclonalCount":81,"pubmedCount":null,"jensenScore":915.723341,"patentCount":null,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":null,"knowledgeAvailability":52.673156794159,"pubTatorScore":2.727438818953321,"self":"https://pharos.nih.gov/idg/api/v1/targets(3278)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":696,"href":"https://pharos.nih.gov/idg/api/v1/targets(3278)/properties"},"_links":{"count":1299,"href":"https://pharos.nih.gov/idg/api/v1/targets(3278)/links"},"_synonyms":{"count":102,"href":"https://pharos.nih.gov/idg/api/v1/targets(3278)/synonyms"},"_publications":{"count":295,"href":"https://pharos.nih.gov/idg/api/v1/targets(3278)/publications"},"_namespace":null},{"id":3279,"version":3,"created":1554876767000,"modified":1555034652000,"deprecated":false,"name":"THAP domain-containing protein 3","accession":"Q8WTV1","gene":"THAP3","description":"Component of a THAP1/THAP3-HCFC1-OGT complex that is required for the regulation of the transcriptional activity of RRM1.","idgFamily":"Transcription Factor","idgTDL":"Tdark","novelty":0.5440680443502757,"antibodyCount":28,"monoclonalCount":3,"pubmedCount":null,"jensenScore":0.233108,"patentCount":null,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":48,"knowledgeAvailability":29.195064730783304,"pubTatorScore":-0.6020599913279624,"self":"https://pharos.nih.gov/idg/api/v1/targets(3279)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":317,"href":"https://pharos.nih.gov/idg/api/v1/targets(3279)/properties"},"_links":{"count":828,"href":"https://pharos.nih.gov/idg/api/v1/targets(3279)/links"},"_synonyms":{"count":83,"href":"https://pharos.nih.gov/idg/api/v1/targets(3279)/synonyms"},"_publications":{"count":8,"href":"https://pharos.nih.gov/idg/api/v1/targets(3279)/publications"},"_namespace":null},{"id":3280,"version":3,"created":1554876770000,"modified":1555034653000,"deprecated":false,"name":"Serine/threonine-protein kinase TBK1","accession":"Q9UHD2","gene":"TBK1","description":"Serine/threonine kinase that plays an essential role in regulating inflammatory responses to foreign agents. Following activation of toll-like receptors by viral or bacterial components, associates with TRAF3 and TANK and phosphorylates interferon regulatory factors (IRFs) IRF3 and IRF7 as well as DDX3X. This activity allows subsequent homodimerization and nuclear translocation of the IRFs leading to transcriptional activation of pro-inflammatory and antiviral genes including IFNA and IFNB. In order to establish such an antiviral state, TBK1 form several different complexes whose composition depends on the type of cell and cellular stimuli. Thus, several scaffolding molecules including FADD, TRADD, MAVS, AZI2, TANK or TBKBP1/SINTBAD can be recruited to the TBK1-containing-complexes. Under particular conditions, functions as a NF-kappa-B effector by phosphorylating NF-kappa-B inhibitor alpha/NFKBIA, IKBKB or RELA to translocate NF-Kappa-B to the nucleus. Restricts bacterial proliferation by phosphorylating the autophagy receptor OPTN/Optineurin on 'Ser-177', thus enhancing LC3 binding affinity and antibacterial autophagy (PubMed:21617041). Phosphorylates SMCR8 component of the C9orf72-SMCR8 complex, promoting autophagosome maturation (PubMed:27103069). Phosphorylates and activates AKT1 (PubMed:21464307). Seems to play a role in energy balance regulation by sustaining a state of chronic, low-grade inflammation in obesity, wich leads to a negative impact on insulin sensitivity. Attenuates retroviral budding by phosphorylating the endosomal sorting complex required for transport-I (ESCRT-I) subunit VPS37C (PubMed:21270402). Phosphorylates Borna disease virus (BDV) P protein (PubMed:16155125).","idgFamily":"Kinase","idgTDL":"Tchem","novelty":-2.7672782675143526,"antibodyCount":455,"monoclonalCount":105,"pubmedCount":null,"jensenScore":569.148945,"patentCount":19375,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":1,"knowledgeAvailability":49.73110335667031,"pubTatorScore":2.53150513486421,"self":"https://pharos.nih.gov/idg/api/v1/targets(3280)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":559,"href":"https://pharos.nih.gov/idg/api/v1/targets(3280)/properties"},"_links":{"count":1306,"href":"https://pharos.nih.gov/idg/api/v1/targets(3280)/links"},"_synonyms":{"count":143,"href":"https://pharos.nih.gov/idg/api/v1/targets(3280)/synonyms"},"_publications":{"count":200,"href":"https://pharos.nih.gov/idg/api/v1/targets(3280)/publications"},"_namespace":null},{"id":3281,"version":3,"created":1554876806000,"modified":1555034655000,"deprecated":false,"name":"Cysteine and histidine-rich domain-containing protein 1","accession":"Q9UHD1","gene":"CHORDC1","description":"Regulates centrosome duplication, probably by inhibiting the kinase activity of ROCK2. Proposed to act as co-chaperone for HSP90. May play a role in the regulation of NOD1 via a HSP90 chaperone complex. In vitro, has intrinsic chaperone activity. This function may be achieved by inhibiting association of ROCK2 with NPM1. Involved in stress response. Prevents tumorigenesis.","idgFamily":"Non-IDG","idgTDL":"Tbio","novelty":-0.5378190987647773,"antibodyCount":157,"monoclonalCount":4,"pubmedCount":null,"jensenScore":2.152274,"patentCount":null,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":2,"knowledgeAvailability":39.38127909753965,"pubTatorScore":0.693873388727159,"self":"https://pharos.nih.gov/idg/api/v1/targets(3281)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":391,"href":"https://pharos.nih.gov/idg/api/v1/targets(3281)/properties"},"_links":{"count":1056,"href":"https://pharos.nih.gov/idg/api/v1/targets(3281)/links"},"_synonyms":{"count":90,"href":"https://pharos.nih.gov/idg/api/v1/targets(3281)/synonyms"},"_publications":{"count":27,"href":"https://pharos.nih.gov/idg/api/v1/targets(3281)/publications"},"_namespace":null},{"id":3282,"version":3,"created":1554876809000,"modified":1555034657000,"deprecated":false,"name":"Kelch-like protein 20","accession":"Q9Y2M5","gene":"KLHL20","description":"Substrate-specific adapter of a BCR (BTB-CUL3-RBX1) E3 ubiquitin-protein ligase complex involved in interferon response and anterograde Golgi to endosome transport. The BCR(KLHL20) E3 ubiquitin ligase complex mediates the ubiquitination of DAPK1, leading to its degradation by the proteasome, thereby acting as a negative regulator of apoptosis (PubMed:20389280). The BCR(KLHL20) E3 ubiquitin ligase complex also specifically mediates 'Lys-33'-linked ubiquitination (PubMed:24768539). Involved in anterograde Golgi to endosome transport by mediating 'Lys-33'-linked ubiquitination of CORO7, promoting interaction between CORO7 and EPS15, thereby facilitating actin polymerization and post-Golgi trafficking (PubMed:24768539). Also acts as a regulator of endothelial migration during angiogenesis by controlling the activation of Rho GTPases. The BCR(KLHL20) E3 ubiquitin ligase complex acts as a regulator of neurite outgrowth by mediating ubiquitination and degradation of PDZ-RhoGEF/ARHGEF11 (PubMed:21670212). In case of tumor, the BCR(KLHL20) E3 ubiquitin ligase complex is involved in tumor hypoxia: following hypoxia, the BCR(KLHL20)complex mediates ubiquitination and degradation of PML, potentiating HIF-1 signaling and cancer progression (PubMed:21840486).","idgFamily":"Non-IDG","idgTDL":"Tbio","novelty":-0.7042458748373711,"antibodyCount":76,"monoclonalCount":2,"pubmedCount":null,"jensenScore":7.773843,"patentCount":null,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":32,"knowledgeAvailability":36.26817780826337,"pubTatorScore":0.8494584186925345,"self":"https://pharos.nih.gov/idg/api/v1/targets(3282)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":385,"href":"https://pharos.nih.gov/idg/api/v1/targets(3282)/properties"},"_links":{"count":976,"href":"https://pharos.nih.gov/idg/api/v1/targets(3282)/links"},"_synonyms":{"count":96,"href":"https://pharos.nih.gov/idg/api/v1/targets(3282)/synonyms"},"_publications":{"count":19,"href":"https://pharos.nih.gov/idg/api/v1/targets(3282)/publications"},"_namespace":null},{"id":3283,"version":2,"created":1554876813000,"modified":1554876816000,"deprecated":false,"name":"Septin-9","accession":"Q9UHD8","gene":"SEPT9","description":"Filament-forming cytoskeletal GTPase (By similarity). May play a role in cytokinesis (Potential). May play a role in the internalization of 2 intracellular microbial pathogens, Listeria monocytogenes and Shigella flexneri.","idgFamily":"Non-IDG","idgTDL":"Tbio","novelty":-2.2089763892385057,"antibodyCount":130,"monoclonalCount":4,"pubmedCount":null,"jensenScore":161.903261,"patentCount":null,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":null,"knowledgeAvailability":50.708296308402524,"pubTatorScore":2.1319263527215027,"self":"https://pharos.nih.gov/idg/api/v1/targets(3283)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":498,"href":"https://pharos.nih.gov/idg/api/v1/targets(3283)/properties"},"_links":{"count":1430,"href":"https://pharos.nih.gov/idg/api/v1/targets(3283)/links"},"_synonyms":{"count":206,"href":"https://pharos.nih.gov/idg/api/v1/targets(3283)/synonyms"},"_publications":{"count":104,"href":"https://pharos.nih.gov/idg/api/v1/targets(3283)/publications"},"_namespace":null},{"id":3284,"version":2,"created":1554876818000,"modified":1554876820000,"deprecated":false,"name":"Midasin","accession":"Q9NU22","gene":"MDN1","description":"Nuclear chaperone required for maturation and nuclear export of pre-60S ribosome subunits (PubMed:27814492). Functions at successive maturation steps to remove ribosomal factors at critical transition points, first driving the exit of early pre-60S particles from the nucleolus and then driving late pre-60S particles from the nucleus (By similarity). At an early stage in 60S maturation, mediates the dissociation of the PeBoW complex (PES1-BOP1-WDR12) from early pre-60S particles, rendering them competent for export from the nucleolus to the nucleoplasm (By similarity). Subsequently recruited to the nucleoplasmic particles through interaction with SUMO-conjugated PELP1 complex (PubMed:27814492). This binding is only possible if the 5S RNP at the central protuberance has undergone the rotation to complete its maturation (By similarity).","idgFamily":"Non-IDG","idgTDL":"Tdark","novelty":-1.2317547170344818,"antibodyCount":10,"monoclonalCount":0,"pubmedCount":null,"jensenScore":16.266918,"patentCount":null,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":null,"knowledgeAvailability":43.842612720853225,"pubTatorScore":1.0600679589174657,"self":"https://pharos.nih.gov/idg/api/v1/targets(3284)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":291,"href":"https://pharos.nih.gov/idg/api/v1/targets(3284)/properties"},"_links":{"count":990,"href":"https://pharos.nih.gov/idg/api/v1/targets(3284)/links"},"_synonyms":{"count":82,"href":"https://pharos.nih.gov/idg/api/v1/targets(3284)/synonyms"},"_publications":{"count":23,"href":"https://pharos.nih.gov/idg/api/v1/targets(3284)/publications"},"_namespace":null},{"id":3285,"version":3,"created":1554876821000,"modified":1555034658000,"deprecated":false,"name":"LYR motif-containing protein 2","accession":"Q9NU23","gene":"LYRM2","description":null,"idgFamily":"Non-IDG","idgTDL":"Tdark","novelty":0.0,"antibodyCount":95,"monoclonalCount":0,"pubmedCount":null,"jensenScore":1.0,"patentCount":null,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":3,"knowledgeAvailability":28.309528651376876,"pubTatorScore":0.0,"self":"https://pharos.nih.gov/idg/api/v1/targets(3285)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":205,"href":"https://pharos.nih.gov/idg/api/v1/targets(3285)/properties"},"_links":{"count":734,"href":"https://pharos.nih.gov/idg/api/v1/targets(3285)/links"},"_synonyms":{"count":63,"href":"https://pharos.nih.gov/idg/api/v1/targets(3285)/synonyms"},"_publications":{"count":10,"href":"https://pharos.nih.gov/idg/api/v1/targets(3285)/publications"},"_namespace":null},{"id":3286,"version":2,"created":1554876823000,"modified":1554876825000,"deprecated":false,"name":"Phospholipase ABHD3","accession":"Q8WU67","gene":"ABHD3","description":"Phospholipase that may play a role in phospholipids remodeling. May selectively cleave myristate (C14)-containing phosphatidylcholines through its predominant phospholipase 1 activity, cleaving preferentially acyl groups in sn1 position. In parallel, may have a minor phospholipase 2 activity acting on acyl groups in position sn2. In addition to (C14)-containing phosphatidylcholines, may also act on other medium-chain-containing and oxidatively truncated phospholipids.","idgFamily":"Enzyme","idgTDL":"Tbio","novelty":-0.4121804524915048,"antibodyCount":91,"monoclonalCount":0,"pubmedCount":null,"jensenScore":2.225491,"patentCount":null,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":null,"knowledgeAvailability":31.366070812284867,"pubTatorScore":-0.12493873660829995,"self":"https://pharos.nih.gov/idg/api/v1/targets(3286)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":302,"href":"https://pharos.nih.gov/idg/api/v1/targets(3286)/properties"},"_links":{"count":901,"href":"https://pharos.nih.gov/idg/api/v1/targets(3286)/links"},"_synonyms":{"count":82,"href":"https://pharos.nih.gov/idg/api/v1/targets(3286)/synonyms"},"_publications":{"count":12,"href":"https://pharos.nih.gov/idg/api/v1/targets(3286)/publications"},"_namespace":null},{"id":3287,"version":2,"created":1554876826000,"modified":1554876828000,"deprecated":false,"name":"Splicing factor U2AF 26 kDa subunit","accession":"Q8WU68","gene":"U2AF1L4","description":"RNA-binding protein that function as a pre-mRNA splicing factor. Plays a critical role in both constitutive and enhancer-dependent splicing by mediating protein-protein interactions and protein-RNA interactions required for accurate 3'-splice site selection. Acts by enhancing the binding of U2AF2 to weak pyrimidine tracts. Also participates in the regulation of alternative pre-mRNA splicing. Activates exon 5 skipping of PTPRC during T-cell activation; an event reversed by GFI1. Binds to RNA at the AG dinucleotide at the 3'-splice site (By similarity). Shows a preference for AGC or AGA (By similarity).","idgFamily":"Non-IDG","idgTDL":"Tbio","novelty":-0.17609125688420882,"antibodyCount":61,"monoclonalCount":8,"pubmedCount":null,"jensenScore":1.858334,"patentCount":null,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":null,"knowledgeAvailability":22.975073729738632,"pubTatorScore":0.728450290201975,"self":"https://pharos.nih.gov/idg/api/v1/targets(3287)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":390,"href":"https://pharos.nih.gov/idg/api/v1/targets(3287)/properties"},"_links":{"count":1052,"href":"https://pharos.nih.gov/idg/api/v1/targets(3287)/links"},"_synonyms":{"count":87,"href":"https://pharos.nih.gov/idg/api/v1/targets(3287)/synonyms"},"_publications":{"count":14,"href":"https://pharos.nih.gov/idg/api/v1/targets(3287)/publications"},"_namespace":null},{"id":3288,"version":3,"created":1554876829000,"modified":1555034660000,"deprecated":false,"name":"Interleukin-12 receptor subunit beta-2","accession":"Q99665","gene":"IL12RB2","description":"Receptor for interleukin-12. This subunit is the signaling component coupling to the JAK2/STAT4 pathway. Promotes the proliferation of T-cells as well as NK cells. 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Acts as an E3 ubiquitin-protein ligase regulating NF-kappa-B signaling and regulates both canonical and non-canonical NF-kappa-B signaling by acting in opposite directions: acts as a positive regulator of the canonical pathway and suppresses constitutive activation of non-canonical NF-kappa-B signaling. The target proteins for its E3 ubiquitin-protein ligase activity include: RIPK1, RIPK2, RIPK3, RIPK4, CASP3, CASP7, CASP8, IKBKE, TRAF1, and BCL10. Acts as an important regulator of innate immune signaling via regulation of Toll-like receptors (TLRs), Nodlike receptors (NLRs) and RIG-I like receptors (RLRs), collectively referred to as pattern recognition receptors (PRRs). Protects cells from spontaneous formation of the ripoptosome, a large multi-protein complex that has the capability to kill cancer cells in a caspase-dependent and caspase-independent manner. Suppresses ripoptosome formation by ubiquitinating RIPK1 and CASP8.","idgFamily":"Non-IDG","idgTDL":"Tchem","novelty":-2.6255266109360247,"antibodyCount":500,"monoclonalCount":151,"pubmedCount":null,"jensenScore":373.209902,"patentCount":null,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":2,"knowledgeAvailability":48.210115840422205,"pubTatorScore":2.5120442165790884,"self":"https://pharos.nih.gov/idg/api/v1/targets(3352)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":566,"href":"https://pharos.nih.gov/idg/api/v1/targets(3352)/properties"},"_links":{"count":1221,"href":"https://pharos.nih.gov/idg/api/v1/targets(3352)/links"},"_synonyms":{"count":143,"href":"https://pharos.nih.gov/idg/api/v1/targets(3352)/synonyms"},"_publications":{"count":183,"href":"https://pharos.nih.gov/idg/api/v1/targets(3352)/publications"},"_namespace":null},{"id":3353,"version":3,"created":1554877104000,"modified":1555034720000,"deprecated":false,"name":"V-type proton ATPase 116 kDa subunit a isoform 3","accession":"Q13488","gene":"TCIRG1","description":"Part of the proton channel of V-ATPases (By similarity). 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Recruits TBP and BRF2 to the U6 snRNA TATA box.","idgFamily":"Non-IDG","idgTDL":"Tdark","novelty":-0.5482378119823216,"antibodyCount":130,"monoclonalCount":9,"pubmedCount":null,"jensenScore":3.004938,"patentCount":null,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":null,"knowledgeAvailability":30.533662199843686,"pubTatorScore":0.7871367230121106,"self":"https://pharos.nih.gov/idg/api/v1/targets(3354)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":346,"href":"https://pharos.nih.gov/idg/api/v1/targets(3354)/properties"},"_links":{"count":900,"href":"https://pharos.nih.gov/idg/api/v1/targets(3354)/links"},"_synonyms":{"count":77,"href":"https://pharos.nih.gov/idg/api/v1/targets(3354)/synonyms"},"_publications":{"count":18,"href":"https://pharos.nih.gov/idg/api/v1/targets(3354)/publications"},"_namespace":null},{"id":3355,"version":3,"created":1554877112000,"modified":1555034722000,"deprecated":false,"name":"Cytohesin-4","accession":"Q9UIA0","gene":"CYTH4","description":"Promotes guanine-nucleotide exchange on ARF1 and ARF5. 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Attaches integral membrane proteins to cytoskeletal elements. Also binds to cytoskeletal proteins. Required for coordinate assembly of Na/Ca exchanger, Na/K ATPase and InsP3 receptor at sarcoplasmic reticulum sites in cardiomyocytes. Required for the coordinated expression of the Na/K ATPase, Na/Ca exchanger and beta-2-spectrin (SPTBN1) in the inner segment of rod photoreceptors (By similarity). Required for expression and targeting of SPTBN1 in neonatal cardiomyocytes and for the regulation of neonatal cardiomyocyte contraction rate (PubMed:12571597). Plays a role in endocytosis and intracellular protein transport. Associates with phosphatidylinositol 3-phosphate (PI3P)-positive organelles and binds dynactin to promote long-range motility of cells. Recruits RABGAP1L to (PI3P)-positive early endosomes, where RABGAP1L inactivates RAB22A, and promotes polarized trafficking to the leading edge of the migrating cells. Part of the ANK2/RABGAP1L complex which is required for the polarized recycling of fibronectin receptor ITGA5 ITGB1 to the plasma membrane that enables continuous directional cell migration (By similarity).","idgFamily":"Non-IDG","idgTDL":"Tbio","novelty":-2.0842124807154345,"antibodyCount":236,"monoclonalCount":208,"pubmedCount":null,"jensenScore":120.472081,"patentCount":null,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":null,"knowledgeAvailability":50.13871029594798,"pubTatorScore":1.8650182033803437,"self":"https://pharos.nih.gov/idg/api/v1/targets(3357)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":511,"href":"https://pharos.nih.gov/idg/api/v1/targets(3357)/properties"},"_links":{"count":1223,"href":"https://pharos.nih.gov/idg/api/v1/targets(3357)/links"},"_synonyms":{"count":137,"href":"https://pharos.nih.gov/idg/api/v1/targets(3357)/synonyms"},"_publications":{"count":82,"href":"https://pharos.nih.gov/idg/api/v1/targets(3357)/publications"},"_namespace":null},{"id":3358,"version":2,"created":1554877123000,"modified":1554877123000,"deprecated":false,"name":"Uncharacterized protein C9orf163","accession":"Q8N9P6","gene":"C9orf163","description":null,"idgFamily":"Non-IDG","idgTDL":"Tdark","novelty":null,"antibodyCount":0,"monoclonalCount":0,"pubmedCount":null,"jensenScore":0.0,"patentCount":null,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":null,"knowledgeAvailability":0.0,"pubTatorScore":null,"self":"https://pharos.nih.gov/idg/api/v1/targets(3358)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":19,"href":"https://pharos.nih.gov/idg/api/v1/targets(3358)/properties"},"_links":{"count":45,"href":"https://pharos.nih.gov/idg/api/v1/targets(3358)/links"},"_synonyms":{"count":39,"href":"https://pharos.nih.gov/idg/api/v1/targets(3358)/synonyms"},"_publications":{"count":5,"href":"https://pharos.nih.gov/idg/api/v1/targets(3358)/publications"},"_namespace":null},{"id":3359,"version":2,"created":1554877123000,"modified":1554877125000,"deprecated":false,"name":"Reticulon-4 receptor-like 2","accession":"Q86UN3","gene":"RTN4RL2","description":"Cell surface receptor that plays a functionally redundant role in the inhibition of neurite outgrowth mediated by MAG (By similarity). Plays a functionally redundant role in postnatal brain development. Contributes to normal axon migration across the brain midline and normal formation of the corpus callosum. Does not seem to play a significant role in regulating axon regeneration in the adult central nervous system. Protects motoneurons against apoptosis; protection against apoptosis is probably mediated by MAG (By similarity). Like other family members, plays a role in restricting the number dendritic spines and the number of synapses that are formed during brain development (PubMed:22325200). Signaling mediates activation of Rho and downstream reorganization of the actin cytoskeleton (PubMed:22325200).","idgFamily":"Non-IDG","idgTDL":"Tbio","novelty":-1.1191595508645773,"antibodyCount":90,"monoclonalCount":20,"pubmedCount":null,"jensenScore":14.451902,"patentCount":null,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":null,"knowledgeAvailability":23.826100848078237,"pubTatorScore":0.9736408034699406,"self":"https://pharos.nih.gov/idg/api/v1/targets(3359)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":250,"href":"https://pharos.nih.gov/idg/api/v1/targets(3359)/properties"},"_links":{"count":848,"href":"https://pharos.nih.gov/idg/api/v1/targets(3359)/links"},"_synonyms":{"count":85,"href":"https://pharos.nih.gov/idg/api/v1/targets(3359)/synonyms"},"_publications":{"count":14,"href":"https://pharos.nih.gov/idg/api/v1/targets(3359)/publications"},"_namespace":null},{"id":3360,"version":2,"created":1554877126000,"modified":1554877128000,"deprecated":false,"name":"Reticulon-4 receptor-like 1","accession":"Q86UN2","gene":"RTN4RL1","description":"Cell surface receptor. Plays a functionally redundant role in postnatal brain development and in regulating axon regeneration in the adult central nervous system. Contributes to normal axon migration across the brain midline and normal formation of the corpus callosum. Protects motoneurons against apoptosis; protection against apoptosis is probably mediated by MAG. Plays a role in inhibiting neurite outgrowth and axon regeneration via its binding to neuronal chondroitin sulfate proteoglycans. Binds heparin (By similarity). Like other family members, plays a role in restricting the number dendritic spines and the number of synapses that are formed during brain development (PubMed:22325200). Signaling mediates activation of Rho and downstream reorganization of the actin cytoskeleton (PubMed:22325200).","idgFamily":"Non-IDG","idgTDL":"Tbio","novelty":-0.8133373785276958,"antibodyCount":92,"monoclonalCount":2,"pubmedCount":null,"jensenScore":6.427447,"patentCount":null,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":null,"knowledgeAvailability":29.095940149222493,"pubTatorScore":0.7856121770181471,"self":"https://pharos.nih.gov/idg/api/v1/targets(3360)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":241,"href":"https://pharos.nih.gov/idg/api/v1/targets(3360)/properties"},"_links":{"count":806,"href":"https://pharos.nih.gov/idg/api/v1/targets(3360)/links"},"_synonyms":{"count":81,"href":"https://pharos.nih.gov/idg/api/v1/targets(3360)/synonyms"},"_publications":{"count":13,"href":"https://pharos.nih.gov/idg/api/v1/targets(3360)/publications"},"_namespace":null},{"id":3361,"version":2,"created":1554877129000,"modified":1554877131000,"deprecated":false,"name":"Major facilitator superfamily domain-containing protein 2B","accession":"A6NFX1","gene":"MFSD2B","description":"Cation-dependent lipid transporter that specifically mediates export of sphingosine-1-phosphate in red blood cells and platelets (PubMed:29045386). Sphingosine-1-phosphate is a signaling sphingolipid and its export from red blood cells into in the plasma is required for red blood cell morphology (By similarity). Does not transport lysophosphatidylcholine (LPC) (By similarity).","idgFamily":"Non-IDG","idgTDL":"Tdark","novelty":-0.4051185965563696,"antibodyCount":80,"monoclonalCount":0,"pubmedCount":null,"jensenScore":1.187179,"patentCount":null,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":null,"knowledgeAvailability":19.681552101364087,"pubTatorScore":-0.6020599913279624,"self":"https://pharos.nih.gov/idg/api/v1/targets(3361)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":173,"href":"https://pharos.nih.gov/idg/api/v1/targets(3361)/properties"},"_links":{"count":709,"href":"https://pharos.nih.gov/idg/api/v1/targets(3361)/links"},"_synonyms":{"count":48,"href":"https://pharos.nih.gov/idg/api/v1/targets(3361)/synonyms"},"_publications":{"count":14,"href":"https://pharos.nih.gov/idg/api/v1/targets(3361)/publications"},"_namespace":null},{"id":3362,"version":2,"created":1554877132000,"modified":1554877134000,"deprecated":false,"name":"Zinc finger protein 251","accession":"Q9BRH9","gene":"ZNF251","description":"May be involved in transcriptional regulation.","idgFamily":"Transcription Factor","idgTDL":"Tdark","novelty":0.3672350361350055,"antibodyCount":69,"monoclonalCount":0,"pubmedCount":null,"jensenScore":0.326705,"patentCount":null,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":null,"knowledgeAvailability":27.394590912001675,"pubTatorScore":-0.12493873660829995,"self":"https://pharos.nih.gov/idg/api/v1/targets(3362)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":321,"href":"https://pharos.nih.gov/idg/api/v1/targets(3362)/properties"},"_links":{"count":903,"href":"https://pharos.nih.gov/idg/api/v1/targets(3362)/links"},"_synonyms":{"count":78,"href":"https://pharos.nih.gov/idg/api/v1/targets(3362)/synonyms"},"_publications":{"count":9,"href":"https://pharos.nih.gov/idg/api/v1/targets(3362)/publications"},"_namespace":null},{"id":3363,"version":3,"created":1554877134000,"modified":1555034724000,"deprecated":false,"name":"Probable lysosomal cobalamin transporter","accession":"Q9NUN5","gene":"LMBRD1","description":"Probable lysosomal cobalamin transporter. Required to export cobalamin from lysosomes allowing its conversion to cofactors. Isoform 3 may play a role in the assembly of hepatitis delta virus (HDV).","idgFamily":"Non-IDG","idgTDL":"Tbio","novelty":-2.1051751581185276,"antibodyCount":54,"monoclonalCount":2,"pubmedCount":null,"jensenScore":126.109666,"patentCount":null,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":1,"knowledgeAvailability":36.97476067727002,"pubTatorScore":1.227653022161968,"self":"https://pharos.nih.gov/idg/api/v1/targets(3363)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":300,"href":"https://pharos.nih.gov/idg/api/v1/targets(3363)/properties"},"_links":{"count":1010,"href":"https://pharos.nih.gov/idg/api/v1/targets(3363)/links"},"_synonyms":{"count":103,"href":"https://pharos.nih.gov/idg/api/v1/targets(3363)/synonyms"},"_publications":{"count":22,"href":"https://pharos.nih.gov/idg/api/v1/targets(3363)/publications"},"_namespace":null},{"id":3364,"version":2,"created":1554877138000,"modified":1554877141000,"deprecated":false,"name":"Exportin-7","accession":"Q9UIA9","gene":"XPO7","description":"Mediates the nuclear export of proteins (cargos) with broad substrate specificity. 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The directionality of nuclear export is thought to be conferred by an asymmetric distribution of the GTP- and GDP-bound forms of Ran between the cytoplasm and nucleus.","idgFamily":"Non-IDG","idgTDL":"Tbio","novelty":-1.0189348382146024,"antibodyCount":101,"monoclonalCount":0,"pubmedCount":null,"jensenScore":10.194851,"patentCount":null,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":null,"knowledgeAvailability":41.653219252173244,"pubTatorScore":0.8050475689421027,"self":"https://pharos.nih.gov/idg/api/v1/targets(3364)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":284,"href":"https://pharos.nih.gov/idg/api/v1/targets(3364)/properties"},"_links":{"count":998,"href":"https://pharos.nih.gov/idg/api/v1/targets(3364)/links"},"_synonyms":{"count":75,"href":"https://pharos.nih.gov/idg/api/v1/targets(3364)/synonyms"},"_publications":{"count":20,"href":"https://pharos.nih.gov/idg/api/v1/targets(3364)/publications"},"_namespace":null},{"id":3365,"version":2,"created":1554877141000,"modified":1554877144000,"deprecated":false,"name":"Alkaline ceramidase 3","accession":"Q9NUN7","gene":"ACER3","description":"Hydrolyzes only phytoceramide into phytosphingosine and free fatty acid. 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Protects cells from spontaneous formation of the ripoptosome, a large multi-protein complex that has the capability to kill cancer cells in a caspase-dependent and caspase-independent manner. Suppresses ripoptosome formation by ubiquitinating RIPK1 and CASP8. Can stimulate the transcriptional activity of E2F1. 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Required for skeletal muscle maintenance but not for myogenesis.","idgFamily":"Enzyme","idgTDL":"Tbio","novelty":-2.725071269577345,"antibodyCount":235,"monoclonalCount":10,"pubmedCount":null,"jensenScore":527.34422,"patentCount":null,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":3,"knowledgeAvailability":39.00619433703778,"pubTatorScore":2.1854319666280095,"self":"https://pharos.nih.gov/idg/api/v1/targets(3370)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":455,"href":"https://pharos.nih.gov/idg/api/v1/targets(3370)/properties"},"_links":{"count":1111,"href":"https://pharos.nih.gov/idg/api/v1/targets(3370)/links"},"_synonyms":{"count":122,"href":"https://pharos.nih.gov/idg/api/v1/targets(3370)/synonyms"},"_publications":{"count":77,"href":"https://pharos.nih.gov/idg/api/v1/targets(3370)/publications"},"_namespace":null},{"id":3371,"version":2,"created":1554877258000,"modified":1554877261000,"deprecated":false,"name":"Mastermind-like domain-containing protein 1","accession":"Q13495","gene":"MAMLD1","description":"Transactivates the HES3 promoter independently of NOTCH proteins. 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Involved in the suppression of glioma (By similarity).","idgFamily":"Non-IDG","idgTDL":"Tbio","novelty":-1.2985802011233805,"antibodyCount":70,"monoclonalCount":9,"pubmedCount":null,"jensenScore":23.513502,"patentCount":null,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":9,"knowledgeAvailability":23.646426859222046,"pubTatorScore":1.3687670216297476,"self":"https://pharos.nih.gov/idg/api/v1/targets(3373)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":248,"href":"https://pharos.nih.gov/idg/api/v1/targets(3373)/properties"},"_links":{"count":828,"href":"https://pharos.nih.gov/idg/api/v1/targets(3373)/links"},"_synonyms":{"count":113,"href":"https://pharos.nih.gov/idg/api/v1/targets(3373)/synonyms"},"_publications":{"count":25,"href":"https://pharos.nih.gov/idg/api/v1/targets(3373)/publications"},"_namespace":null},{"id":3374,"version":2,"created":1554877271000,"modified":1554877275000,"deprecated":false,"name":"Mucin-5B","accession":"Q9HC84","gene":"MUC5B","description":"Gel-forming mucin that is thought to contribute to the lubricating and viscoelastic properties of whole saliva and cervical mucus.","idgFamily":"Non-IDG","idgTDL":"Tbio","novelty":-3.2032245226424427,"antibodyCount":177,"monoclonalCount":70,"pubmedCount":null,"jensenScore":1552.242981,"patentCount":null,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":null,"knowledgeAvailability":31.222877305555215,"pubTatorScore":2.6946176739730583,"self":"https://pharos.nih.gov/idg/api/v1/targets(3374)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":407,"href":"https://pharos.nih.gov/idg/api/v1/targets(3374)/properties"},"_links":{"count":971,"href":"https://pharos.nih.gov/idg/api/v1/targets(3374)/links"},"_synonyms":{"count":126,"href":"https://pharos.nih.gov/idg/api/v1/targets(3374)/synonyms"},"_publications":{"count":141,"href":"https://pharos.nih.gov/idg/api/v1/targets(3374)/publications"},"_namespace":null},{"id":3375,"version":3,"created":1554877277000,"modified":1555034735000,"deprecated":false,"name":"Succinate dehydrogenase assembly factor 1, mitochondrial","accession":"A6NFY7","gene":"SDHAF1","description":"Plays an essential role in the assembly of succinate dehydrogenase (SDH), an enzyme complex (also referred to as respiratory complex II) that is a component of both the tricarboxylic acid (TCA) cycle and the mitochondrial electron transport chain, and which couples the oxidation of succinate to fumarate with the reduction of ubiquinone (coenzyme Q) to ubiquinol. Promotes maturation of the iron-sulfur protein subunit SDHB of the SDH catalytic dimer, protecting it from the deleterious effects of oxidants. 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Stimulates phospholipase C (PLC) activity in a manner that is independent of RALA activation.","idgFamily":"GPCR","idgTDL":"Tchem","novelty":-1.9839361351506242,"antibodyCount":265,"monoclonalCount":4,"pubmedCount":null,"jensenScore":89.313873,"patentCount":14243,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":2,"knowledgeAvailability":32.09224011138864,"pubTatorScore":1.9348154916639104,"self":"https://pharos.nih.gov/idg/api/v1/targets(3376)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":403,"href":"https://pharos.nih.gov/idg/api/v1/targets(3376)/properties"},"_links":{"count":957,"href":"https://pharos.nih.gov/idg/api/v1/targets(3376)/links"},"_synonyms":{"count":100,"href":"https://pharos.nih.gov/idg/api/v1/targets(3376)/synonyms"},"_publications":{"count":58,"href":"https://pharos.nih.gov/idg/api/v1/targets(3376)/publications"},"_namespace":null},{"id":3377,"version":3,"created":1554877295000,"modified":1555034738000,"deprecated":false,"name":"Membrane-anchored junction protein","accession":"Q3KP22","gene":"MAJIN","description":"Meiosis-specific telomere-associated protein involved in meiotic telomere attachment to the nucleus inner membrane, a crucial step for homologous pairing and synapsis. 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MAJIN shows DNA-binding activity, possibly for the stabilization of telomere attachment on the nucleus inner membrane.","idgFamily":"Non-IDG","idgTDL":"Tdark","novelty":-0.24303804977203064,"antibodyCount":25,"monoclonalCount":0,"pubmedCount":null,"jensenScore":0.794259,"patentCount":null,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":2,"knowledgeAvailability":0.0,"pubTatorScore":null,"self":"https://pharos.nih.gov/idg/api/v1/targets(3377)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":150,"href":"https://pharos.nih.gov/idg/api/v1/targets(3377)/properties"},"_links":{"count":626,"href":"https://pharos.nih.gov/idg/api/v1/targets(3377)/links"},"_synonyms":{"count":68,"href":"https://pharos.nih.gov/idg/api/v1/targets(3377)/synonyms"},"_publications":{"count":5,"href":"https://pharos.nih.gov/idg/api/v1/targets(3377)/publications"},"_namespace":null},{"id":3378,"version":2,"created":1554877297000,"modified":1554877299000,"deprecated":false,"name":"SLAM family member 5","accession":"Q9UIB8","gene":"CD84","description":"Self-ligand receptor of the signaling lymphocytic activation molecule (SLAM) family. 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In germinal centers involved in maintaining B-cell tolerance and in preventing autoimmunity (By similarity). In mast cells negatively regulates high affinity immunoglobulin epsilon receptor signaling; independent of SH2D1A and SH2D1B but implicating FES and PTPN6/SHP-1 (PubMed:22068234). 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Probably involved in regulation of insulin secretion in pancreatic beta cells (By similarity).","idgFamily":"Enzyme","idgTDL":"Tbio","novelty":-1.3624316242764876,"antibodyCount":109,"monoclonalCount":7,"pubmedCount":null,"jensenScore":22.958218,"patentCount":null,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":null,"knowledgeAvailability":32.42953485021968,"pubTatorScore":1.097451362292515,"self":"https://pharos.nih.gov/idg/api/v1/targets(3385)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":364,"href":"https://pharos.nih.gov/idg/api/v1/targets(3385)/properties"},"_links":{"count":990,"href":"https://pharos.nih.gov/idg/api/v1/targets(3385)/links"},"_synonyms":{"count":102,"href":"https://pharos.nih.gov/idg/api/v1/targets(3385)/synonyms"},"_publications":{"count":17,"href":"https://pharos.nih.gov/idg/api/v1/targets(3385)/publications"},"_namespace":null},{"id":3386,"version":2,"created":1554877329000,"modified":1554877332000,"deprecated":false,"name":"Centromere protein J","accession":"Q9HC77","gene":"CENPJ","description":"Plays an important role in cell division and centrosome function by participating in centriole duplication (PubMed:17681131, PubMed:20531387). 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Can also limit the replication of hepatitis C virus (HCV), West Nile virus (WNV), Chikungunya virus (CHIKV), herpes simplex virus type 1 (HHV-1) and human adenovirus (PubMed:26735137).","idgFamily":"Non-IDG","idgTDL":"Tdark","novelty":-0.1995723530956438,"antibodyCount":23,"monoclonalCount":0,"pubmedCount":null,"jensenScore":1.833333,"patentCount":null,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":10,"knowledgeAvailability":0.0,"pubTatorScore":-0.4771216890143615,"self":"https://pharos.nih.gov/idg/api/v1/targets(3513)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":340,"href":"https://pharos.nih.gov/idg/api/v1/targets(3513)/properties"},"_links":{"count":999,"href":"https://pharos.nih.gov/idg/api/v1/targets(3513)/links"},"_synonyms":{"count":87,"href":"https://pharos.nih.gov/idg/api/v1/targets(3513)/synonyms"},"_publications":{"count":12,"href":"https://pharos.nih.gov/idg/api/v1/targets(3513)/publications"},"_namespace":null},{"id":3514,"version":3,"created":1554879392000,"modified":1555034824000,"deprecated":false,"name":"Ubiquitin domain-containing protein 2","accession":"Q8WUN7","gene":"UBTD2","description":null,"idgFamily":"Non-IDG","idgTDL":"Tbio","novelty":-0.6577461741086896,"antibodyCount":116,"monoclonalCount":32,"pubmedCount":null,"jensenScore":5.036663,"patentCount":null,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":4,"knowledgeAvailability":24.192754741755248,"pubTatorScore":0.7436404253784553,"self":"https://pharos.nih.gov/idg/api/v1/targets(3514)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":226,"href":"https://pharos.nih.gov/idg/api/v1/targets(3514)/properties"},"_links":{"count":874,"href":"https://pharos.nih.gov/idg/api/v1/targets(3514)/links"},"_synonyms":{"count":75,"href":"https://pharos.nih.gov/idg/api/v1/targets(3514)/synonyms"},"_publications":{"count":10,"href":"https://pharos.nih.gov/idg/api/v1/targets(3514)/publications"},"_namespace":null},{"id":3515,"version":3,"created":1554879394000,"modified":1555034825000,"deprecated":false,"name":"Probable ATP-dependent RNA helicase DDX28","accession":"Q9NUL7","gene":"DDX28","description":"Plays an essential role in facilitating the proper assembly of the mitochondrial large ribosomal subunit and its helicase activity is essential for this function (PubMed:25683708, PubMed:25683715). May be involved in RNA processing or transport. Has RNA and Mg(2+)-dependent ATPase activity (PubMed:11350955).","idgFamily":"Enzyme","idgTDL":"Tbio","novelty":-0.6180480884604976,"antibodyCount":109,"monoclonalCount":2,"pubmedCount":null,"jensenScore":4.540909,"patentCount":null,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":11,"knowledgeAvailability":32.33689096251899,"pubTatorScore":0.6483600109809317,"self":"https://pharos.nih.gov/idg/api/v1/targets(3515)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":314,"href":"https://pharos.nih.gov/idg/api/v1/targets(3515)/properties"},"_links":{"count":958,"href":"https://pharos.nih.gov/idg/api/v1/targets(3515)/links"},"_synonyms":{"count":74,"href":"https://pharos.nih.gov/idg/api/v1/targets(3515)/synonyms"},"_publications":{"count":19,"href":"https://pharos.nih.gov/idg/api/v1/targets(3515)/publications"},"_namespace":null},{"id":3516,"version":2,"created":1554879397000,"modified":1554879398000,"deprecated":false,"name":"39S ribosomal protein L45, mitochondrial","accession":"Q9BRJ2","gene":"MRPL45","description":null,"idgFamily":"Non-IDG","idgTDL":"Tdark","novelty":0.5093059379876602,"antibodyCount":0,"monoclonalCount":0,"pubmedCount":null,"jensenScore":0.233334,"patentCount":null,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":null,"knowledgeAvailability":31.603086016213666,"pubTatorScore":-0.9030899869919435,"self":"https://pharos.nih.gov/idg/api/v1/targets(3516)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":106,"href":"https://pharos.nih.gov/idg/api/v1/targets(3516)/properties"},"_links":{"count":351,"href":"https://pharos.nih.gov/idg/api/v1/targets(3516)/links"},"_synonyms":{"count":74,"href":"https://pharos.nih.gov/idg/api/v1/targets(3516)/synonyms"},"_publications":{"count":18,"href":"https://pharos.nih.gov/idg/api/v1/targets(3516)/publications"},"_namespace":null},{"id":3517,"version":2,"created":1554879398000,"modified":1554879401000,"deprecated":false,"name":"Quinone oxidoreductase-like protein 1","accession":"O95825","gene":"CRYZL1","description":null,"idgFamily":"Enzyme","idgTDL":"Tbio","novelty":-1.3795069704868077,"antibodyCount":157,"monoclonalCount":43,"pubmedCount":null,"jensenScore":20.513476,"patentCount":null,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":null,"knowledgeAvailability":33.41619385074886,"pubTatorScore":0.3010299956639812,"self":"https://pharos.nih.gov/idg/api/v1/targets(3517)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":363,"href":"https://pharos.nih.gov/idg/api/v1/targets(3517)/properties"},"_links":{"count":983,"href":"https://pharos.nih.gov/idg/api/v1/targets(3517)/links"},"_synonyms":{"count":86,"href":"https://pharos.nih.gov/idg/api/v1/targets(3517)/synonyms"},"_publications":{"count":11,"href":"https://pharos.nih.gov/idg/api/v1/targets(3517)/publications"},"_namespace":null},{"id":3518,"version":3,"created":1554879402000,"modified":1555034826000,"deprecated":false,"name":"Serine/threonine-protein kinase Sgk2","accession":"Q9HBY8","gene":"SGK2","description":"Serine/threonine-protein kinase which is involved in the regulation of a wide variety of ion channels, membrane transporters, cell growth, survival and proliferation. Up-regulates Na(+) channels: SCNN1A/ENAC, K(+) channels: KCNA3/Kv1.3, KCNE1 and KCNQ1, amino acid transporter: SLC6A19, glutamate transporter: SLC1A6/EAAT4, glutamate receptors: GRIA1/GLUR1 and GRIK2/GLUR6, Na(+)/H(+) exchanger: SLC9A3/NHE3, and the Na(+)/K(+) ATPase.","idgFamily":"Kinase","idgTDL":"Tchem","novelty":-0.806718193228615,"antibodyCount":223,"monoclonalCount":71,"pubmedCount":null,"jensenScore":4.282946,"patentCount":4248,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":4,"knowledgeAvailability":33.09585466253001,"pubTatorScore":0.8916576943257375,"self":"https://pharos.nih.gov/idg/api/v1/targets(3518)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":289,"href":"https://pharos.nih.gov/idg/api/v1/targets(3518)/properties"},"_links":{"count":927,"href":"https://pharos.nih.gov/idg/api/v1/targets(3518)/links"},"_synonyms":{"count":108,"href":"https://pharos.nih.gov/idg/api/v1/targets(3518)/synonyms"},"_publications":{"count":25,"href":"https://pharos.nih.gov/idg/api/v1/targets(3518)/publications"},"_namespace":null},{"id":3519,"version":2,"created":1554879407000,"modified":1554879410000,"deprecated":false,"name":"Mesoderm posterior protein 1","accession":"Q9BRJ9","gene":"MESP1","description":"Transcription factor. Plays a role in the epithelialization of somitic mesoderm and in the development of cardiac mesoderm. Defines the rostrocaudal patterning of the somites by participating in distinct Notch pathways (By similarity).","idgFamily":"Transcription Factor","idgTDL":"Tbio","novelty":-1.3853552119220134,"antibodyCount":208,"monoclonalCount":78,"pubmedCount":null,"jensenScore":26.770514,"patentCount":null,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":null,"knowledgeAvailability":27.693983707041177,"pubTatorScore":1.4024085876333938,"self":"https://pharos.nih.gov/idg/api/v1/targets(3519)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":229,"href":"https://pharos.nih.gov/idg/api/v1/targets(3519)/properties"},"_links":{"count":732,"href":"https://pharos.nih.gov/idg/api/v1/targets(3519)/links"},"_synonyms":{"count":66,"href":"https://pharos.nih.gov/idg/api/v1/targets(3519)/synonyms"},"_publications":{"count":11,"href":"https://pharos.nih.gov/idg/api/v1/targets(3519)/publications"},"_namespace":null},{"id":3520,"version":3,"created":1554879411000,"modified":1555034828000,"deprecated":false,"name":"Tudor-interacting repair regulator protein","accession":"Q9BRJ7","gene":"NUDT16L1","description":"Key regulator of TP53BP1 required to stabilize TP53BP1 and regulate its recruitment to chromatin (PubMed:28241136). In absence of DNA damage, interacts with the tandem Tudor-like domain of TP53BP1, masking the region that binds histone H4 dimethylated at 'Lys-20' (H4K20me2), thereby preventing TP53BP1 recruitment to chromatin and maintaining TP53BP1 localization to the nucleus (PubMed:28241136). Following DNA damage, ATM-induced phosphorylation of TP53BP1 and subsequent recruitment of RIF1 leads to dissociate NUDT16L1/TIRR from TP53BP1, unmasking the tandem Tudor-like domain and allowing recruitment of TP53BP1 to DNA double strand breaks (DSBs) (PubMed:28241136). Binds U8 snoRNA (PubMed:18820299).","idgFamily":"Non-IDG","idgTDL":"Tbio","novelty":-1.544068022635552,"antibodyCount":44,"monoclonalCount":5,"pubmedCount":null,"jensenScore":33.522222,"patentCount":null,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":2,"knowledgeAvailability":27.671377373198197,"pubTatorScore":0.8750612633917001,"self":"https://pharos.nih.gov/idg/api/v1/targets(3520)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":354,"href":"https://pharos.nih.gov/idg/api/v1/targets(3520)/properties"},"_links":{"count":942,"href":"https://pharos.nih.gov/idg/api/v1/targets(3520)/links"},"_synonyms":{"count":67,"href":"https://pharos.nih.gov/idg/api/v1/targets(3520)/synonyms"},"_publications":{"count":15,"href":"https://pharos.nih.gov/idg/api/v1/targets(3520)/publications"},"_namespace":null},{"id":3521,"version":2,"created":1554879413000,"modified":1554879416000,"deprecated":false,"name":"Uncharacterized protein C7orf50","accession":"Q9BRJ6","gene":"C7orf50","description":null,"idgFamily":"Non-IDG","idgTDL":"Tdark","novelty":0.47712125471966244,"antibodyCount":87,"monoclonalCount":0,"pubmedCount":null,"jensenScore":0.333333,"patentCount":null,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":null,"knowledgeAvailability":0.0,"pubTatorScore":null,"self":"https://pharos.nih.gov/idg/api/v1/targets(3521)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":349,"href":"https://pharos.nih.gov/idg/api/v1/targets(3521)/properties"},"_links":{"count":1068,"href":"https://pharos.nih.gov/idg/api/v1/targets(3521)/links"},"_synonyms":{"count":68,"href":"https://pharos.nih.gov/idg/api/v1/targets(3521)/synonyms"},"_publications":{"count":17,"href":"https://pharos.nih.gov/idg/api/v1/targets(3521)/publications"},"_namespace":null},{"id":3522,"version":2,"created":1554879416000,"modified":1554879419000,"deprecated":false,"name":"Arfaptin-1","accession":"P53367","gene":"ARFIP1","description":"Putative target protein of ADP-ribosylation factor.","idgFamily":"Non-IDG","idgTDL":"Tbio","novelty":-0.4425793046961826,"antibodyCount":199,"monoclonalCount":9,"pubmedCount":null,"jensenScore":4.762154,"patentCount":null,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":null,"knowledgeAvailability":36.58310895663183,"pubTatorScore":0.46311055451601085,"self":"https://pharos.nih.gov/idg/api/v1/targets(3522)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":340,"href":"https://pharos.nih.gov/idg/api/v1/targets(3522)/properties"},"_links":{"count":1101,"href":"https://pharos.nih.gov/idg/api/v1/targets(3522)/links"},"_synonyms":{"count":116,"href":"https://pharos.nih.gov/idg/api/v1/targets(3522)/synonyms"},"_publications":{"count":23,"href":"https://pharos.nih.gov/idg/api/v1/targets(3522)/publications"},"_namespace":null},{"id":3523,"version":3,"created":1554879420000,"modified":1555034829000,"deprecated":false,"name":"Voltage-gated potassium channel subunit beta-1","accession":"Q14722","gene":"KCNAB1","description":"Cytoplasmic potassium channel subunit that modulates the characteristics of the channel-forming alpha-subunits (PubMed:7499366, PubMed:7603988, PubMed:17156368,PubMed:17540341, PubMed:19713757). Modulates action potentials via its effect on the pore-forming alpha subunits (By similarity). Promotes expression of the pore-forming alpha subunits at the cell membrane, and thereby increases channel activity (By similarity). Mediates closure of delayed rectifier potassium channels by physically obstructing the pore via its N-terminal domain and increases the speed of channel closure for other family members (PubMed:9763623). Promotes the closure of KCNA1, KCNA2 and KCNA5 channels (PubMed:7499366, PubMed:7890032, PubMed:7603988, PubMed:7649300, PubMed:8938711, PubMed:12077175, PubMed:12130714, PubMed:15361858, PubMed:17540341, PubMed:19713757). Accelerates KCNA4 channel closure (PubMed:7890032, PubMed:7649300, PubMed:7890764, PubMed:9763623). Accelerates the closure of heteromeric channels formed by KCNA1 and KCNA4 (PubMed:17156368). Accelerates the closure of heteromeric channels formed by KCNA2, KCNA5 and KCNA6 (By similarity). Isoform KvB1.2 has no effect on KCNA1, KCNA2 or KCNB1 (PubMed:7890032, PubMed:7890764). Enhances KCNB1 and KCNB2 channel activity (By similarity). Binds NADPH; this is required for efficient down-regulation of potassium channel activity (PubMed:17540341). Has NADPH-dependent aldoketoreductase activity (By similarity). Oxidation of the bound NADPH strongly decreases N-type inactivation of potassium channel activity (By similarity).","idgFamily":"Ion Channel","idgTDL":"Tbio","novelty":-1.734411045181535,"antibodyCount":218,"monoclonalCount":110,"pubmedCount":null,"jensenScore":56.324767,"patentCount":1214,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":1,"knowledgeAvailability":39.080588141065846,"pubTatorScore":1.5230690895767955,"self":"https://pharos.nih.gov/idg/api/v1/targets(3523)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":375,"href":"https://pharos.nih.gov/idg/api/v1/targets(3523)/properties"},"_links":{"count":984,"href":"https://pharos.nih.gov/idg/api/v1/targets(3523)/links"},"_synonyms":{"count":128,"href":"https://pharos.nih.gov/idg/api/v1/targets(3523)/synonyms"},"_publications":{"count":35,"href":"https://pharos.nih.gov/idg/api/v1/targets(3523)/publications"},"_namespace":null},{"id":3524,"version":3,"created":1554879423000,"modified":1555034830000,"deprecated":false,"name":"Apoptosis-inducing factor 1, mitochondrial","accession":"O95831","gene":"AIFM1","description":"Functions both as NADH oxidoreductase and as regulator of apoptosis. In response to apoptotic stimuli, it is released from the mitochondrion intermembrane space into the cytosol and to the nucleus, where it functions as a proapoptotic factor in a caspase-independent pathway. In contrast, functions as an antiapoptotic factor in normal mitochondria via its NADH oxidoreductase activity. The soluble form (AIFsol) found in the nucleus induces 'parthanatos' i.e. caspase-independent fragmentation of chromosomal DNA. Interacts with EIF3G,and thereby inhibits the EIF3 machinery and protein synthesis, and activates casapse-7 to amplify apoptosis. Plays a critical role in caspase-independent, pyknotic cell death in hydrogen peroxide-exposed cells. Binds to DNA in a sequence-independent manner.","idgFamily":"Non-IDG","idgTDL":"Tbio","novelty":-1.7407220430914006,"antibodyCount":637,"monoclonalCount":73,"pubmedCount":null,"jensenScore":50.522812,"patentCount":null,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":8,"knowledgeAvailability":49.17161229799191,"pubTatorScore":2.0515900283762103,"self":"https://pharos.nih.gov/idg/api/v1/targets(3524)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":561,"href":"https://pharos.nih.gov/idg/api/v1/targets(3524)/properties"},"_links":{"count":1284,"href":"https://pharos.nih.gov/idg/api/v1/targets(3524)/links"},"_synonyms":{"count":182,"href":"https://pharos.nih.gov/idg/api/v1/targets(3524)/synonyms"},"_publications":{"count":188,"href":"https://pharos.nih.gov/idg/api/v1/targets(3524)/publications"},"_namespace":null},{"id":3525,"version":2,"created":1554879432000,"modified":1554879432000,"deprecated":false,"name":"Zinc finger CCHC domain-containing protein 3","accession":"Q9NUD5","gene":"ZCCHC3","description":null,"idgFamily":"Non-IDG","idgTDL":"Tdark","novelty":null,"antibodyCount":38,"monoclonalCount":7,"pubmedCount":null,"jensenScore":0.0,"patentCount":null,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":null,"knowledgeAvailability":25.416584638987157,"pubTatorScore":null,"self":"https://pharos.nih.gov/idg/api/v1/targets(3525)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":160,"href":"https://pharos.nih.gov/idg/api/v1/targets(3525)/properties"},"_links":{"count":229,"href":"https://pharos.nih.gov/idg/api/v1/targets(3525)/links"},"_synonyms":{"count":62,"href":"https://pharos.nih.gov/idg/api/v1/targets(3525)/synonyms"},"_publications":{"count":7,"href":"https://pharos.nih.gov/idg/api/v1/targets(3525)/publications"},"_namespace":null},{"id":3526,"version":2,"created":1554879432000,"modified":1554879440000,"deprecated":false,"name":"Potassium voltage-gated channel subfamily B member 1","accession":"Q14721","gene":"KCNB1","description":"Voltage-gated potassium channel that mediates transmembrane potassium transport in excitable membranes, primarily in the brain, but also in the pancreas and cardiovascular system. Contributes to the regulation of the action potential (AP) repolarization, duration and frequency of repetitive AP firing in neurons, muscle cells and endocrine cells and plays a role in homeostatic attenuation of electrical excitability throughout the brain (PubMed:23161216). Plays also a role in the regulation of exocytosis independently of its electrical function (By similarity). Forms tetrameric potassium-selective channels through which potassium ions pass in accordance with their electrochemical gradient. The channel alternates between opened and closed conformations in response to the voltage difference across the membrane. Homotetrameric channels mediate a delayed-rectifier voltage-dependent outward potassium current that display rapid activation and slow inactivation in response to membrane depolarization (PubMed:8081723, PubMed:1283219, PubMed:10484328, PubMed:12560340, PubMed:19074135, PubMed:19717558, PubMed:24901643). Can form functional homotetrameric and heterotetrameric channels that contain variable proportions of KCNB2; channel properties depend on the type of alpha subunits that are part of the channel (By similarity). Can also form functional heterotetrameric channels with other alpha subunits that are non-conducting when expressed alone, such as KCNF1, KCNG1, KCNG3, KCNG4, KCNH1, KCNH2, KCNS1, KCNS2, KCNS3 and KCNV1, creating a functionally diverse range of channel complexes (PubMed:10484328, PubMed:11852086, PubMed:12060745, PubMed:19074135, PubMed:19717558, PubMed:24901643). Heterotetrameric channel activity formed with KCNS3 show increased current amplitude with the threshold for action potential activation shifted towards more negative values in hypoxic-treated pulmonary artery smooth muscle cells (By similarity). Channel properties are also modulated by cytoplasmic ancillary beta subunits such as AMIGO1, KCNE1, KCNE2 and KCNE3, slowing activation and inactivation rate of the delayed rectifier potassium channels (By similarity). In vivo, membranes probably contain a mixture of heteromeric potassium channel complexes, making it difficult to assign currents observed in intact tissues to any particular potassium channel family member. Major contributor to the slowly inactivating delayed-rectifier voltage-gated potassium current in neurons of the central nervous system, sympathetic ganglion neurons, neuroendocrine cells, pancreatic beta cells, cardiomyocytes and smooth muscle cells. Mediates the major part of the somatodendritic delayed-rectifier potassium current in hippocampal and cortical pyramidal neurons and sympathetic superior cervical ganglion (CGC) neurons that acts to slow down periods of firing, especially during high frequency stimulation. Plays a role in the induction of long-term potentiation (LTP) of neuron excitability in the CA3 layer of the hippocampus (By similarity). Contributes to the regulation of glucose-induced action potential amplitude and duration in pancreatic beta cells, hence limiting calcium influx and insulin secretion (PubMed:23161216). Plays a role in the regulation of resting membrane potential and contraction in hypoxia-treated pulmonary artery smooth muscle cells. May contribute to the regulation of the duration of both the action potential of cardiomyocytes and the heart ventricular repolarization QT interval. Contributes to the pronounced pro-apoptotic potassium current surge during neuronal apoptotic cell death in response to oxidative injury. May confer neuroprotection in response to hypoxia/ischemic insults by suppressing pyramidal neurons hyperexcitability in hippocampal and cortical regions (By similarity). Promotes trafficking of KCNG3, KCNH1 and KCNH2 to the cell surface membrane, presumably by forming heterotetrameric channels with these subunits (PubMed:12060745). Plays a role in the calcium-dependent recruitment and release of fusion-competent vesicles from the soma of neurons, neuroendocrine and glucose-induced pancreatic beta cells by binding key components of the fusion machinery in a pore-independent manner (By similarity).","idgFamily":"Ion Channel","idgTDL":"Tclin","novelty":-2.574839263760118,"antibodyCount":303,"monoclonalCount":77,"pubmedCount":null,"jensenScore":386.036388,"patentCount":4428,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":null,"knowledgeAvailability":41.733890383717345,"pubTatorScore":2.331585939915935,"self":"https://pharos.nih.gov/idg/api/v1/targets(3526)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":365,"href":"https://pharos.nih.gov/idg/api/v1/targets(3526)/properties"},"_links":{"count":972,"href":"https://pharos.nih.gov/idg/api/v1/targets(3526)/links"},"_synonyms":{"count":101,"href":"https://pharos.nih.gov/idg/api/v1/targets(3526)/synonyms"},"_publications":{"count":69,"href":"https://pharos.nih.gov/idg/api/v1/targets(3526)/publications"},"_namespace":null},{"id":3527,"version":3,"created":1554879441000,"modified":1555034832000,"deprecated":false,"name":"Uncharacterized protein C20orf96","accession":"Q9NUD7","gene":"C20orf96","description":null,"idgFamily":"Non-IDG","idgTDL":"Tdark","novelty":0.9542425094393249,"antibodyCount":28,"monoclonalCount":0,"pubmedCount":null,"jensenScore":0.0,"patentCount":null,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":1,"knowledgeAvailability":0.0,"pubTatorScore":null,"self":"https://pharos.nih.gov/idg/api/v1/targets(3527)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":189,"href":"https://pharos.nih.gov/idg/api/v1/targets(3527)/properties"},"_links":{"count":771,"href":"https://pharos.nih.gov/idg/api/v1/targets(3527)/links"},"_synonyms":{"count":70,"href":"https://pharos.nih.gov/idg/api/v1/targets(3527)/synonyms"},"_publications":{"count":6,"href":"https://pharos.nih.gov/idg/api/v1/targets(3527)/publications"},"_namespace":null},{"id":3528,"version":3,"created":1554879444000,"modified":1555034833000,"deprecated":false,"name":"Arfaptin-2","accession":"P53365","gene":"ARFIP2","description":"Putative target protein of ADP-ribosylation factor. 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With PARP1 and EEF1A1, TXK forms a complex that acts as a T-helper 1 (Th1) cell-specific transcription factor and binds the promoter of IFNG to directly regulate its transcription, and is thus involved importantly in Th1 cytokine production. Phosphorylates both PARP1 and EEF1A1. Phosphorylates also key sites in LCP2 leading to the up-regulation of Th1 preferred cytokine IL-2. Phosphorylates 'Tyr-201' of CTLA4 which leads to the association of PI-3 kinase with the CTLA4 receptor.","idgFamily":"Kinase","idgTDL":"Tchem","novelty":-2.283648525166554,"antibodyCount":194,"monoclonalCount":71,"pubmedCount":null,"jensenScore":191.088077,"patentCount":50553,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":null,"knowledgeAvailability":34.12396530275271,"pubTatorScore":2.4687332437404277,"self":"https://pharos.nih.gov/idg/api/v1/targets(3629)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":301,"href":"https://pharos.nih.gov/idg/api/v1/targets(3629)/properties"},"_links":{"count":834,"href":"https://pharos.nih.gov/idg/api/v1/targets(3629)/links"},"_synonyms":{"count":122,"href":"https://pharos.nih.gov/idg/api/v1/targets(3629)/synonyms"},"_publications":{"count":28,"href":"https://pharos.nih.gov/idg/api/v1/targets(3629)/publications"},"_namespace":null},{"id":3630,"version":3,"created":1554879850000,"modified":1555034896000,"deprecated":false,"name":"Enolase-phosphatase E1","accession":"Q9UHY7","gene":"ENOPH1","description":"Bifunctional enzyme that catalyzes the enolization of 2,3-diketo-5-methylthiopentyl-1-phosphate (DK-MTP-1-P) into the intermediate 2-hydroxy-3-keto-5-methylthiopentenyl-1-phosphate (HK-MTPenyl-1-P), which is then dephosphorylated to form the acireductone 1,2-dihydroxy-3-keto-5-methylthiopentene (DHK-MTPene).","idgFamily":"Enzyme","idgTDL":"Tbio","novelty":-0.9836334384934999,"antibodyCount":124,"monoclonalCount":38,"pubmedCount":null,"jensenScore":9.95626,"patentCount":null,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":4,"knowledgeAvailability":36.62768161725971,"pubTatorScore":1.1279142943715932,"self":"https://pharos.nih.gov/idg/api/v1/targets(3630)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":338,"href":"https://pharos.nih.gov/idg/api/v1/targets(3630)/properties"},"_links":{"count":1026,"href":"https://pharos.nih.gov/idg/api/v1/targets(3630)/links"},"_synonyms":{"count":98,"href":"https://pharos.nih.gov/idg/api/v1/targets(3630)/synonyms"},"_publications":{"count":8,"href":"https://pharos.nih.gov/idg/api/v1/targets(3630)/publications"},"_namespace":null},{"id":3631,"version":2,"created":1554879853000,"modified":1554879856000,"deprecated":false,"name":"Tetraspanin-12","accession":"O95859","gene":"TSPAN12","description":"Regulator of cell surface receptor signal transduction. Plays a central role in retinal vascularization by regulating norrin (NDP) signal transduction. Acts in concert with norrin (NDP) to promote FZD4 multimerization and subsequent activation of FZD4, leading to promote accumulation of beta-catenin (CTNNB1) and stimulate LEF/TCF-mediated transcriptional programs. Suprisingly, it only activate the norrin (NDP)-dependent activation of FZD4, while it does not activate the Wnt-dependent activation of FZD4, suggesting the existence of a Wnt-independent signaling that also promote accumulation the beta-catenin (CTNNB1) (By similarity). Acts as a regulator of membrane proteinases such as ADAM10 and MMP14/MT1-MMP. Activates ADAM10-dependent cleavage activity of amyloid precursor protein (APP). Activates MMP14/MT1-MMP-dependent cleavage activity.","idgFamily":"Non-IDG","idgTDL":"Tbio","novelty":-1.331299473586608,"antibodyCount":141,"monoclonalCount":16,"pubmedCount":null,"jensenScore":21.474008,"patentCount":null,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":null,"knowledgeAvailability":35.04780342228656,"pubTatorScore":1.874002327406041,"self":"https://pharos.nih.gov/idg/api/v1/targets(3631)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":242,"href":"https://pharos.nih.gov/idg/api/v1/targets(3631)/properties"},"_links":{"count":873,"href":"https://pharos.nih.gov/idg/api/v1/targets(3631)/links"},"_synonyms":{"count":94,"href":"https://pharos.nih.gov/idg/api/v1/targets(3631)/synonyms"},"_publications":{"count":34,"href":"https://pharos.nih.gov/idg/api/v1/targets(3631)/publications"},"_namespace":null},{"id":3632,"version":2,"created":1554879857000,"modified":1554879859000,"deprecated":false,"name":"Tetraspanin-15","accession":"O95858","gene":"TSPAN15","description":"Regulates maturation and trafficking of the transmembrane metalloprotease ADAM10. Promotes ADAM10-mediated cleavage of CDH2. Negatively regulates ligand-induced Notch activity probably by regulating ADAM10 activity.","idgFamily":"Non-IDG","idgTDL":"Tdark","novelty":-0.296533821285532,"antibodyCount":68,"monoclonalCount":0,"pubmedCount":null,"jensenScore":1.33737,"patentCount":null,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":null,"knowledgeAvailability":28.367044336836965,"pubTatorScore":0.3706276157340919,"self":"https://pharos.nih.gov/idg/api/v1/targets(3632)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":321,"href":"https://pharos.nih.gov/idg/api/v1/targets(3632)/properties"},"_links":{"count":940,"href":"https://pharos.nih.gov/idg/api/v1/targets(3632)/links"},"_synonyms":{"count":76,"href":"https://pharos.nih.gov/idg/api/v1/targets(3632)/synonyms"},"_publications":{"count":17,"href":"https://pharos.nih.gov/idg/api/v1/targets(3632)/publications"},"_namespace":null},{"id":3633,"version":2,"created":1554879860000,"modified":1554879862000,"deprecated":false,"name":"Cerebral cavernous malformations 2 protein-like","accession":"Q9NUG4","gene":"CCM2L","description":null,"idgFamily":"Non-IDG","idgTDL":"Tdark","novelty":-0.06694678818296496,"antibodyCount":54,"monoclonalCount":0,"pubmedCount":null,"jensenScore":1.242262,"patentCount":null,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":null,"knowledgeAvailability":17.91791595440127,"pubTatorScore":null,"self":"https://pharos.nih.gov/idg/api/v1/targets(3633)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":201,"href":"https://pharos.nih.gov/idg/api/v1/targets(3633)/properties"},"_links":{"count":723,"href":"https://pharos.nih.gov/idg/api/v1/targets(3633)/links"},"_synonyms":{"count":74,"href":"https://pharos.nih.gov/idg/api/v1/targets(3633)/synonyms"},"_publications":{"count":7,"href":"https://pharos.nih.gov/idg/api/v1/targets(3633)/publications"},"_namespace":null},{"id":3634,"version":2,"created":1554879862000,"modified":1554879871000,"deprecated":false,"name":"Abelson tyrosine-protein kinase 2","accession":"P42684","gene":"ABL2","description":"Non-receptor tyrosine-protein kinase that plays an ABL1-overlapping role in key processes linked to cell growth and survival such as cytoskeleton remodeling in response to extracellular stimuli, cell motility and adhesion and receptor endocytosis. Coordinates actin remodeling through tyrosine phosphorylation of proteins controlling cytoskeleton dynamics like MYH10 (involved in movement); CTTN (involved in signaling); or TUBA1 and TUBB (microtubule subunits). Binds directly F-actin and regulates actin cytoskeletal structure through its F-actin-bundling activity. Involved in the regulation of cell adhesion and motility through phosphorylation of key regulators of these processes such as CRK, CRKL, DOK1 or ARHGAP35. Adhesion-dependent phosphorylation of ARHGAP35 promotes its association with RASA1, resulting in recruitment of ARHGAP35 to the cell periphery where it inhibits RHO. Phosphorylates multiple receptor tyrosine kinases like PDGFRB and other substrates which are involved in endocytosis regulation such as RIN1. In brain, may regulate neurotransmission by phosphorylating proteins at the synapse. ABL2 acts also as a regulator of multiple pathological signaling cascades during infection. Pathogens can highjack ABL2 kinase signaling to reorganize the host actin cytoskeleton for multiple purposes, like facilitating intracellular movement and host cell exit. Finally, functions as its own regulator through autocatalytic activity as well as through phosphorylation of its inhibitor, ABI1.","idgFamily":"Kinase","idgTDL":"Tchem","novelty":-1.8629327696584348,"antibodyCount":358,"monoclonalCount":107,"pubmedCount":null,"jensenScore":71.204995,"patentCount":8984519,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":null,"knowledgeAvailability":53.45675342150125,"pubTatorScore":1.6525378104983264,"self":"https://pharos.nih.gov/idg/api/v1/targets(3634)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":408,"href":"https://pharos.nih.gov/idg/api/v1/targets(3634)/properties"},"_links":{"count":1103,"href":"https://pharos.nih.gov/idg/api/v1/targets(3634)/links"},"_synonyms":{"count":193,"href":"https://pharos.nih.gov/idg/api/v1/targets(3634)/synonyms"},"_publications":{"count":94,"href":"https://pharos.nih.gov/idg/api/v1/targets(3634)/publications"},"_namespace":null},{"id":3635,"version":2,"created":1554879872000,"modified":1554879877000,"deprecated":false,"name":"Tyrosine-protein kinase FRK","accession":"P42685","gene":"FRK","description":"Non-receptor tyrosine-protein kinase that negatively regulates cell proliferation. Positively regulates PTEN protein stability through phosphorylation of PTEN on 'Tyr-336', which in turn prevents its ubiquitination and degradation, possibly by reducing its binding to NEDD4. May function as a tumor suppressor.","idgFamily":"Kinase","idgTDL":"Tchem","novelty":-1.6836546867359994,"antibodyCount":394,"monoclonalCount":117,"pubmedCount":null,"jensenScore":49.1682,"patentCount":17534,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":null,"knowledgeAvailability":35.26682722547527,"pubTatorScore":1.8588596467542158,"self":"https://pharos.nih.gov/idg/api/v1/targets(3635)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":416,"href":"https://pharos.nih.gov/idg/api/v1/targets(3635)/properties"},"_links":{"count":1038,"href":"https://pharos.nih.gov/idg/api/v1/targets(3635)/links"},"_synonyms":{"count":127,"href":"https://pharos.nih.gov/idg/api/v1/targets(3635)/synonyms"},"_publications":{"count":39,"href":"https://pharos.nih.gov/idg/api/v1/targets(3635)/publications"},"_namespace":null},{"id":3636,"version":3,"created":1554879878000,"modified":1555034897000,"deprecated":false,"name":"Transcription elongation factor A protein-like 5","accession":"Q5H9L2","gene":"TCEAL5","description":"May be involved in transcriptional regulation.","idgFamily":"Non-IDG","idgTDL":"Tdark","novelty":0.6989700043360189,"antibodyCount":18,"monoclonalCount":3,"pubmedCount":null,"jensenScore":0.428571,"patentCount":null,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":4,"knowledgeAvailability":17.300123255965254,"pubTatorScore":null,"self":"https://pharos.nih.gov/idg/api/v1/targets(3636)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":208,"href":"https://pharos.nih.gov/idg/api/v1/targets(3636)/properties"},"_links":{"count":796,"href":"https://pharos.nih.gov/idg/api/v1/targets(3636)/links"},"_synonyms":{"count":61,"href":"https://pharos.nih.gov/idg/api/v1/targets(3636)/synonyms"},"_publications":{"count":6,"href":"https://pharos.nih.gov/idg/api/v1/targets(3636)/publications"},"_namespace":null},{"id":3637,"version":3,"created":1554879880000,"modified":1555034898000,"deprecated":false,"name":"Serine/threonine-protein kinase tousled-like 2","accession":"Q86UE8","gene":"TLK2","description":"Serine/threonine-protein kinase involved in the process of chromatin assembly and probably also DNA replication, transcription, repair, and chromosome segregation. Phosphorylates the chromatin assembly factors ASF1A AND ASF1B. Phosphorylation of ASF1A prevents its proteasome-mediated degradation, thereby enhancing chromatin assembly. Negative regulator of amino acid starvation-induced autophagy.","idgFamily":"Kinase","idgTDL":"Tchem","novelty":-0.9545555531236226,"antibodyCount":210,"monoclonalCount":57,"pubmedCount":null,"jensenScore":10.069359,"patentCount":1607,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":3,"knowledgeAvailability":41.544209895708114,"pubTatorScore":0.9507549598983293,"self":"https://pharos.nih.gov/idg/api/v1/targets(3637)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":315,"href":"https://pharos.nih.gov/idg/api/v1/targets(3637)/properties"},"_links":{"count":971,"href":"https://pharos.nih.gov/idg/api/v1/targets(3637)/links"},"_synonyms":{"count":114,"href":"https://pharos.nih.gov/idg/api/v1/targets(3637)/synonyms"},"_publications":{"count":33,"href":"https://pharos.nih.gov/idg/api/v1/targets(3637)/publications"},"_namespace":null},{"id":3638,"version":2,"created":1554879883000,"modified":1554879886000,"deprecated":false,"name":"p53 and DNA damage-regulated protein 1","accession":"Q9NUG6","gene":"PDRG1","description":"May play a role in chaperone-mediated protein folding.","idgFamily":"Non-IDG","idgTDL":"Tbio","novelty":-1.0084987662856586,"antibodyCount":96,"monoclonalCount":9,"pubmedCount":null,"jensenScore":9.955465,"patentCount":null,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":null,"knowledgeAvailability":30.180798987588823,"pubTatorScore":0.7683914377703095,"self":"https://pharos.nih.gov/idg/api/v1/targets(3638)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":283,"href":"https://pharos.nih.gov/idg/api/v1/targets(3638)/properties"},"_links":{"count":888,"href":"https://pharos.nih.gov/idg/api/v1/targets(3638)/links"},"_synonyms":{"count":72,"href":"https://pharos.nih.gov/idg/api/v1/targets(3638)/synonyms"},"_publications":{"count":14,"href":"https://pharos.nih.gov/idg/api/v1/targets(3638)/publications"},"_namespace":null},{"id":3639,"version":2,"created":1554879887000,"modified":1554879890000,"deprecated":false,"name":"Alpha-1-syntrophin","accession":"Q13424","gene":"SNTA1","description":"Adapter protein that binds to and probably organizes the subcellular localization of a variety of membrane proteins. May link various receptors to the actin cytoskeleton and the extracellular matrix via the dystrophin glycoprotein complex. Plays an important role in synapse formation and in the organization of UTRN and acetylcholine receptors at the neuromuscular synapse. Binds to phosphatidylinositol 4,5-bisphosphate (By similarity).","idgFamily":"Non-IDG","idgTDL":"Tbio","novelty":-1.4922694443867182,"antibodyCount":254,"monoclonalCount":109,"pubmedCount":null,"jensenScore":31.435838,"patentCount":null,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":null,"knowledgeAvailability":39.76502745922662,"pubTatorScore":1.1569363003466,"self":"https://pharos.nih.gov/idg/api/v1/targets(3639)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":449,"href":"https://pharos.nih.gov/idg/api/v1/targets(3639)/properties"},"_links":{"count":1056,"href":"https://pharos.nih.gov/idg/api/v1/targets(3639)/links"},"_synonyms":{"count":98,"href":"https://pharos.nih.gov/idg/api/v1/targets(3639)/synonyms"},"_publications":{"count":52,"href":"https://pharos.nih.gov/idg/api/v1/targets(3639)/publications"},"_namespace":null},{"id":3640,"version":2,"created":1554879891000,"modified":1554879894000,"deprecated":false,"name":"Fatty acid desaturase 2","accession":"O95864","gene":"FADS2","description":"Component of a lipid metabolic pathway that catalyzes biosynthesis of highly unsaturated fatty acids (HUFA) from precursor essential polyunsaturated fatty acids (PUFA) linoleic acid (LA) (18:2n-6) and alpha-linolenic acid (ALA) (18:3n-3). Catalyzes the first and rate limiting step in this pathway which is the desaturation of LA (18:2n-6) and ALA (18:3n-3) into gamma-linoleic acid (GLA) (18:3n-6) and stearidonic acid (18:4n-3) respectively and other desaturation steps. Highly unsaturated fatty acids (HUFA) play pivotal roles in many biological functions. It catalizes as well the introduction of a cis double bond in palmitate to produce the mono-unsaturated fatty acid sapienate, the most abundant fatty acid in sebum.","idgFamily":"Enzyme","idgTDL":"Tbio","novelty":-2.5541110302858776,"antibodyCount":135,"monoclonalCount":2,"pubmedCount":null,"jensenScore":349.594681,"patentCount":null,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":null,"knowledgeAvailability":48.68490703078108,"pubTatorScore":2.484993288010833,"self":"https://pharos.nih.gov/idg/api/v1/targets(3640)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":530,"href":"https://pharos.nih.gov/idg/api/v1/targets(3640)/properties"},"_links":{"count":1144,"href":"https://pharos.nih.gov/idg/api/v1/targets(3640)/links"},"_synonyms":{"count":124,"href":"https://pharos.nih.gov/idg/api/v1/targets(3640)/synonyms"},"_publications":{"count":145,"href":"https://pharos.nih.gov/idg/api/v1/targets(3640)/publications"},"_namespace":null},{"id":3641,"version":2,"created":1554879895000,"modified":1554879898000,"deprecated":false,"name":"NAD(P) transhydrogenase, mitochondrial","accession":"Q13423","gene":"NNT","description":"The transhydrogenation between NADH and NADP is coupled to respiration and ATP hydrolysis and functions as a proton pump across the membrane. May play a role in reactive oxygen species (ROS) detoxification in the adrenal gland.","idgFamily":"Enzyme","idgTDL":"Tbio","novelty":-2.496240630839991,"antibodyCount":112,"monoclonalCount":17,"pubmedCount":null,"jensenScore":309.231092,"patentCount":null,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":null,"knowledgeAvailability":44.9236501877318,"pubTatorScore":1.295635548174394,"self":"https://pharos.nih.gov/idg/api/v1/targets(3641)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":391,"href":"https://pharos.nih.gov/idg/api/v1/targets(3641)/properties"},"_links":{"count":1100,"href":"https://pharos.nih.gov/idg/api/v1/targets(3641)/links"},"_synonyms":{"count":124,"href":"https://pharos.nih.gov/idg/api/v1/targets(3641)/synonyms"},"_publications":{"count":33,"href":"https://pharos.nih.gov/idg/api/v1/targets(3641)/publications"},"_namespace":null},{"id":3642,"version":3,"created":1554879899000,"modified":1555034900000,"deprecated":false,"name":"Zinc finger protein SNAI1","accession":"O95863","gene":"SNAI1","description":"Involved in induction of the epithelial to mesenchymal transition (EMT), formation and maintenance of embryonic mesoderm, growth arrest, survival and cell migration. 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In addition, may also activate the CDKN2B promoter by itself.","idgFamily":"Transcription Factor","idgTDL":"Tbio","novelty":-3.286358278179855,"antibodyCount":566,"monoclonalCount":135,"pubmedCount":null,"jensenScore":1782.85577,"patentCount":null,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":9,"knowledgeAvailability":42.9388809278787,"pubTatorScore":3.2595040270110984,"self":"https://pharos.nih.gov/idg/api/v1/targets(3642)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":811,"href":"https://pharos.nih.gov/idg/api/v1/targets(3642)/properties"},"_links":{"count":1367,"href":"https://pharos.nih.gov/idg/api/v1/targets(3642)/links"},"_synonyms":{"count":100,"href":"https://pharos.nih.gov/idg/api/v1/targets(3642)/synonyms"},"_publications":{"count":389,"href":"https://pharos.nih.gov/idg/api/v1/targets(3642)/publications"},"_namespace":null},{"id":3643,"version":3,"created":1554879907000,"modified":1555034903000,"deprecated":false,"name":"DNA-binding protein Ikaros","accession":"Q13422","gene":"IKZF1","description":"Transcription regulator of hematopoietic cell differentiation (PubMed:17934067). 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Function is isoform-specific and is modulated by dominant-negative inactive isoforms (PubMed:17135265, PubMed:17934067).","idgFamily":"Transcription Factor","idgTDL":"Tbio","novelty":-2.6673171919419114,"antibodyCount":400,"monoclonalCount":75,"pubmedCount":null,"jensenScore":483.578609,"patentCount":null,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":35,"knowledgeAvailability":44.00603104328681,"pubTatorScore":2.6414700610362156,"self":"https://pharos.nih.gov/idg/api/v1/targets(3643)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":557,"href":"https://pharos.nih.gov/idg/api/v1/targets(3643)/properties"},"_links":{"count":1260,"href":"https://pharos.nih.gov/idg/api/v1/targets(3643)/links"},"_synonyms":{"count":163,"href":"https://pharos.nih.gov/idg/api/v1/targets(3643)/synonyms"},"_publications":{"count":230,"href":"https://pharos.nih.gov/idg/api/v1/targets(3643)/publications"},"_namespace":null},{"id":3644,"version":3,"created":1554879913000,"modified":1555034906000,"deprecated":false,"name":"3'(2'),5'-bisphosphate nucleotidase 1","accession":"O95861","gene":"BPNT1","description":"Converts adenosine 3'-phosphate 5'-phosphosulfate (PAPS) to adenosine 5'-phosphosulfate (APS) and 3'(2')-phosphoadenosine 5'- phosphate (PAP) to AMP. 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Binding to the adapter molecule FADD recruits it to either receptor. The resulting aggregate called death-inducing signaling complex (DISC) performs CASP8 proteolytic activation. The active dimeric enzyme is then liberated from the DISC and free to activate downstream apoptotic proteases. Proteolytic fragments of the N-terminal propeptide (termed CAP3, CAP5 and CAP6) are likely retained in the DISC. Cleaves and activates CASP3, CASP4, CASP6, CASP7, CASP9 and CASP10. May participate in the GZMB apoptotic pathways. Cleaves ADPRT. Hydrolyzes the small-molecule substrate, Ac-Asp-Glu-Val-Asp-|-AMC. Likely target for the cowpox virus CRMA death inhibitory protein. 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Involved in regulation of smooth muscle contraction, actin cytoskeleton organization, stress fiber and focal adhesion formation, neurite retraction, cell adhesion and motility via phosphorylation of DAPK3, GFAP, LIMK1, LIMK2, MYL9/MLC2, PFN1 and PPP1R12A. Phosphorylates FHOD1 and acts synergistically with it to promote SRC-dependent non-apoptotic plasma membrane blebbing. Phosphorylates JIP3 and regulates the recruitment of JNK to JIP3 upon UVB-induced stress. Acts as a suppressor of inflammatory cell migration by regulating PTEN phosphorylation and stability. Acts as a negative regulator of VEGF-induced angiogenic endothelial cell activation. Required for centrosome positioning and centrosome-dependent exit from mitosis. Plays a role in terminal erythroid differentiation. May regulate closure of the eyelids and ventral body wall by inducing the assembly of actomyosin bundles. Promotes keratinocyte terminal differentiation. Involved in osteoblast compaction through the fibronectin fibrillogenesis cell-mediated matrix assembly process, essential for osteoblast mineralization.","idgFamily":"Kinase","idgTDL":"Tclin","novelty":-2.6462222116953784,"antibodyCount":461,"monoclonalCount":153,"pubmedCount":null,"jensenScore":378.194273,"patentCount":15449,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":null,"knowledgeAvailability":53.70939010319713,"pubTatorScore":2.470502005146432,"self":"https://pharos.nih.gov/idg/api/v1/targets(3776)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":887,"href":"https://pharos.nih.gov/idg/api/v1/targets(3776)/properties"},"_links":{"count":1593,"href":"https://pharos.nih.gov/idg/api/v1/targets(3776)/links"},"_synonyms":{"count":210,"href":"https://pharos.nih.gov/idg/api/v1/targets(3776)/synonyms"},"_publications":{"count":358,"href":"https://pharos.nih.gov/idg/api/v1/targets(3776)/publications"},"_namespace":null},{"id":3777,"version":2,"created":1554880499000,"modified":1554880501000,"deprecated":false,"name":"Putative sodium-coupled neutral amino acid transporter 10","accession":"Q9HBR0","gene":"SLC38A10","description":"Putative sodium-dependent amino acid/proton antiporter.","idgFamily":"Transporter","idgTDL":"Tdark","novelty":-0.2771178356217819,"antibodyCount":25,"monoclonalCount":0,"pubmedCount":null,"jensenScore":1.708333,"patentCount":null,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":null,"knowledgeAvailability":36.65230000201429,"pubTatorScore":-0.3010299956639812,"self":"https://pharos.nih.gov/idg/api/v1/targets(3777)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":412,"href":"https://pharos.nih.gov/idg/api/v1/targets(3777)/properties"},"_links":{"count":1051,"href":"https://pharos.nih.gov/idg/api/v1/targets(3777)/links"},"_synonyms":{"count":78,"href":"https://pharos.nih.gov/idg/api/v1/targets(3777)/synonyms"},"_publications":{"count":9,"href":"https://pharos.nih.gov/idg/api/v1/targets(3777)/publications"},"_namespace":null},{"id":3778,"version":2,"created":1554880502000,"modified":1554880505000,"deprecated":false,"name":"Forkhead box protein E3","accession":"Q13461","gene":"FOXE3","description":"Transcription factor that controls lens epithelial cell growth through regulation of proliferation, apoptosis and cell cycle (PubMed:22527307, PubMed:25504734). During lens development, controls the ratio of the lens fiber cells to the cells of the anterior lens epithelium by regulating the rate of proliferation and differentiation (By similarity). Controls lens vesicle closure and subsequent separation of the lens vesicle from ectoderm (By similarity). Controls the expression of DNAJB1 in a pathway that is crucial for the development of the anterior segment of the eye (PubMed:27218149).","idgFamily":"Transcription Factor","idgTDL":"Tbio","novelty":-1.5370102673467352,"antibodyCount":150,"monoclonalCount":0,"pubmedCount":null,"jensenScore":31.543689,"patentCount":null,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":null,"knowledgeAvailability":22.844476144550917,"pubTatorScore":1.4768083196872606,"self":"https://pharos.nih.gov/idg/api/v1/targets(3778)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":182,"href":"https://pharos.nih.gov/idg/api/v1/targets(3778)/properties"},"_links":{"count":628,"href":"https://pharos.nih.gov/idg/api/v1/targets(3778)/links"},"_synonyms":{"count":79,"href":"https://pharos.nih.gov/idg/api/v1/targets(3778)/synonyms"},"_publications":{"count":23,"href":"https://pharos.nih.gov/idg/api/v1/targets(3778)/publications"},"_namespace":null},{"id":3779,"version":2,"created":1554880505000,"modified":1554880508000,"deprecated":false,"name":"Protein FAM172A","accession":"Q8WUF8","gene":"FAM172A","description":null,"idgFamily":"Non-IDG","idgTDL":"Tbio","novelty":-0.8822398512760321,"antibodyCount":36,"monoclonalCount":0,"pubmedCount":null,"jensenScore":9.60212,"patentCount":null,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":null,"knowledgeAvailability":34.90106701868642,"pubTatorScore":0.8091854541722678,"self":"https://pharos.nih.gov/idg/api/v1/targets(3779)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":354,"href":"https://pharos.nih.gov/idg/api/v1/targets(3779)/properties"},"_links":{"count":1045,"href":"https://pharos.nih.gov/idg/api/v1/targets(3779)/links"},"_synonyms":{"count":98,"href":"https://pharos.nih.gov/idg/api/v1/targets(3779)/synonyms"},"_publications":{"count":20,"href":"https://pharos.nih.gov/idg/api/v1/targets(3779)/publications"},"_namespace":null},{"id":3780,"version":3,"created":1554880508000,"modified":1555034990000,"deprecated":false,"name":"Frizzled-5","accession":"Q13467","gene":"FZD5","description":"Receptor for Wnt proteins. 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Interacts specifically with Wnt5A to induce the beta-catenin pathway.","idgFamily":"GPCR","idgTDL":"Tbio","novelty":-1.549241895088374,"antibodyCount":307,"monoclonalCount":41,"pubmedCount":null,"jensenScore":30.549361,"patentCount":7363,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":1,"knowledgeAvailability":45.18168485932191,"pubTatorScore":1.3952682618773533,"self":"https://pharos.nih.gov/idg/api/v1/targets(3780)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":441,"href":"https://pharos.nih.gov/idg/api/v1/targets(3780)/properties"},"_links":{"count":944,"href":"https://pharos.nih.gov/idg/api/v1/targets(3780)/links"},"_synonyms":{"count":103,"href":"https://pharos.nih.gov/idg/api/v1/targets(3780)/synonyms"},"_publications":{"count":48,"href":"https://pharos.nih.gov/idg/api/v1/targets(3780)/publications"},"_namespace":null},{"id":3781,"version":3,"created":1554880512000,"modified":1555034992000,"deprecated":false,"name":"Branched-chain-amino-acid aminotransferase, cytosolic","accession":"P54687","gene":"BCAT1","description":"Catalyzes the first reaction in the catabolism of the essential branched chain amino acids leucine, isoleucine, and valine.","idgFamily":"Enzyme","idgTDL":"Tchem","novelty":-1.8865864759455342,"antibodyCount":216,"monoclonalCount":20,"pubmedCount":null,"jensenScore":78.087049,"patentCount":null,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":12,"knowledgeAvailability":44.84462864291546,"pubTatorScore":1.5835504440958579,"self":"https://pharos.nih.gov/idg/api/v1/targets(3781)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":342,"href":"https://pharos.nih.gov/idg/api/v1/targets(3781)/properties"},"_links":{"count":1079,"href":"https://pharos.nih.gov/idg/api/v1/targets(3781)/links"},"_synonyms":{"count":145,"href":"https://pharos.nih.gov/idg/api/v1/targets(3781)/synonyms"},"_publications":{"count":44,"href":"https://pharos.nih.gov/idg/api/v1/targets(3781)/publications"},"_namespace":null},{"id":3782,"version":2,"created":1554880518000,"modified":1554880521000,"deprecated":false,"name":"RelA-associated inhibitor","accession":"Q8WUF5","gene":"PPP1R13L","description":"Regulator that plays a central role in regulation of apoptosis and transcription via its interaction with NF-kappa-B and p53/TP53 proteins. Blocks transcription of HIV-1 virus by inhibiting the action of both NF-kappa-B and SP1. Also inhibits p53/TP53 function, possibly by preventing the association between p53/TP53 and ASPP1 or ASPP2, and therefore suppressing the subsequent activation of apoptosis.","idgFamily":"Non-IDG","idgTDL":"Tbio","novelty":-1.7613062018504857,"antibodyCount":185,"monoclonalCount":11,"pubmedCount":null,"jensenScore":64.541084,"patentCount":null,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":null,"knowledgeAvailability":35.40324271872569,"pubTatorScore":1.8285692844911037,"self":"https://pharos.nih.gov/idg/api/v1/targets(3782)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":478,"href":"https://pharos.nih.gov/idg/api/v1/targets(3782)/properties"},"_links":{"count":1041,"href":"https://pharos.nih.gov/idg/api/v1/targets(3782)/links"},"_synonyms":{"count":114,"href":"https://pharos.nih.gov/idg/api/v1/targets(3782)/synonyms"},"_publications":{"count":104,"href":"https://pharos.nih.gov/idg/api/v1/targets(3782)/publications"},"_namespace":null},{"id":3783,"version":2,"created":1554880522000,"modified":1554880524000,"deprecated":false,"name":"MDS1 and EVI1 complex locus protein MDS1","accession":"Q13465","gene":"MECOM","description":null,"idgFamily":"Non-IDG","idgTDL":"Tbio","novelty":-1.8405952464351278,"antibodyCount":0,"monoclonalCount":0,"pubmedCount":null,"jensenScore":124.51994,"patentCount":null,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":null,"knowledgeAvailability":50.01900411149362,"pubTatorScore":2.365201894660987,"self":"https://pharos.nih.gov/idg/api/v1/targets(3783)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":300,"href":"https://pharos.nih.gov/idg/api/v1/targets(3783)/properties"},"_links":{"count":293,"href":"https://pharos.nih.gov/idg/api/v1/targets(3783)/links"},"_synonyms":{"count":60,"href":"https://pharos.nih.gov/idg/api/v1/targets(3783)/synonyms"},"_publications":{"count":137,"href":"https://pharos.nih.gov/idg/api/v1/targets(3783)/publications"},"_namespace":null},{"id":3784,"version":3,"created":1554880524000,"modified":1555034994000,"deprecated":false,"name":"Death-associated protein kinase 1","accession":"P53355","gene":"DAPK1","description":"Isoform 2 cannot induce apoptosis but can induce membrane blebbing.","idgFamily":"Kinase","idgTDL":"Tchem","novelty":-2.341526874088907,"antibodyCount":276,"monoclonalCount":30,"pubmedCount":null,"jensenScore":226.06942,"patentCount":11312,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":1,"knowledgeAvailability":52.38339282743986,"pubTatorScore":2.4879233100889064,"self":"https://pharos.nih.gov/idg/api/v1/targets(3784)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":613,"href":"https://pharos.nih.gov/idg/api/v1/targets(3784)/properties"},"_links":{"count":1194,"href":"https://pharos.nih.gov/idg/api/v1/targets(3784)/links"},"_synonyms":{"count":297,"href":"https://pharos.nih.gov/idg/api/v1/targets(3784)/synonyms"},"_publications":{"count":224,"href":"https://pharos.nih.gov/idg/api/v1/targets(3784)/publications"},"_namespace":null},{"id":3785,"version":2,"created":1554880530000,"modified":1554880531000,"deprecated":false,"name":"Potassium channel subfamily U member 1","accession":"A8MYU2","gene":"KCNU1","description":"Testis-specific potassium channel activated by both intracellular pH and membrane voltage that mediates export of K(+). May represent the primary spermatozoan K(+) current. In contrast to KCNMA1/SLO1, it is not activated by Ca(2+) or Mg(2+). Critical for fertility. May play an important role in sperm osmoregulation required for the acquisition of normal morphology and motility when faced with osmotic challenges, such as those experienced after mixing with seminal fluid and entry into the vagina.","idgFamily":"Ion Channel","idgTDL":"Tbio","novelty":-1.6577159207132586,"antibodyCount":45,"monoclonalCount":42,"pubmedCount":null,"jensenScore":43.300305,"patentCount":2762,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":null,"knowledgeAvailability":19.5918035943183,"pubTatorScore":1.1487054174494093,"self":"https://pharos.nih.gov/idg/api/v1/targets(3785)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":155,"href":"https://pharos.nih.gov/idg/api/v1/targets(3785)/properties"},"_links":{"count":317,"href":"https://pharos.nih.gov/idg/api/v1/targets(3785)/links"},"_synonyms":{"count":66,"href":"https://pharos.nih.gov/idg/api/v1/targets(3785)/synonyms"},"_publications":{"count":12,"href":"https://pharos.nih.gov/idg/api/v1/targets(3785)/publications"},"_namespace":null},{"id":3786,"version":4,"created":1554880532000,"modified":1555034997000,"deprecated":false,"name":"Serine/threonine-protein kinase PLK1","accession":"P53350","gene":"PLK1","description":"Serine/threonine-protein kinase that performs several important functions throughout M phase of the cell cycle, including the regulation of centrosome maturation and spindle assembly, the removal of cohesins from chromosome arms, the inactivation of anaphase-promoting complex/cyclosome (APC/C) inhibitors, and the regulation of mitotic exit and cytokinesis. Polo-like kinase proteins acts by binding and phosphorylating proteins are that already phosphorylated on a specific motif recognized by the POLO box domains. Phosphorylates BORA, BUB1B/BUBR1, CCNB1, CDC25C, CEP55, ECT2, ERCC6L, FBXO5/EMI1, FOXM1, KIF20A/MKLP2, CENPU, NEDD1, NINL, NPM1, NUDC, PKMYT1/MYT1, KIZ, PPP1R12A/MYPT1, PRC1, RACGAP1/CYK4, SGO1, STAG2/SA2, TEX14, TOPORS, p73/TP73, TPT1, WEE1 and HNRNPU. Plays a key role in centrosome functions and the assembly of bipolar spindles by phosphorylating KIZ, NEDD1 and NINL. NEDD1 phosphorylation promotes subsequent targeting of the gamma-tubulin ring complex (gTuRC) to the centrosome, an important step for spindle formation. Phosphorylation of NINL component of the centrosome leads to NINL dissociation from other centrosomal proteins. Involved in mitosis exit and cytokinesis by phosphorylating CEP55, ECT2, KIF20A/MKLP2, CENPU, PRC1 and RACGAP1. Recruited at the central spindle by phosphorylating and docking PRC1 and KIF20A/MKLP2; creates its own docking sites on PRC1 and KIF20A/MKLP2 by mediating phosphorylation of sites subsequently recognized by the POLO box domains. Phosphorylates RACGAP1, thereby creating a docking site for the Rho GTP exchange factor ECT2 that is essential for the cleavage furrow formation. Promotes the central spindle recruitment of ECT2. Plays a central role in G2/M transition of mitotic cell cycle by phosphorylating CCNB1, CDC25C, FOXM1, CENPU, PKMYT1/MYT1, PPP1R12A/MYPT1 and WEE1. Part of a regulatory circuit that promotes the activation of CDK1 by phosphorylating the positive regulator CDC25C and inhibiting the negative regulators WEE1 and PKMYT1/MYT1. Also acts by mediating phosphorylation of cyclin-B1 (CCNB1) on centrosomes in prophase. Phosphorylates FOXM1, a key mitotic transcription regulator, leading to enhance FOXM1 transcriptional activity. Involved in kinetochore functions and sister chromatid cohesion by phosphorylating BUB1B/BUBR1, FBXO5/EMI1 and STAG2/SA2. PLK1 is high on non-attached kinetochores suggesting a role of PLK1 in kinetochore attachment or in spindle assembly checkpoint (SAC) regulation. Required for kinetochore localization of BUB1B. Regulates the dissociation of cohesin from chromosomes by phosphorylating cohesin subunits such as STAG2/SA2. Phosphorylates SGO1: required for spindle pole localization of isoform 3 of SGO1 and plays a role in regulating its centriole cohesion function. Mediates phosphorylation of FBXO5/EMI1, a negative regulator of the APC/C complex during prophase, leading to FBXO5/EMI1 ubiquitination and degradation by the proteasome. Acts as a negative regulator of p53 family members: phosphorylates TOPORS, leading to inhibit the sumoylation of p53/TP53 and simultaneously enhance the ubiquitination and subsequent degradation of p53/TP53. Phosphorylates the transactivation domain of the transcription factor p73/TP73, leading to inhibit p73/TP73-mediated transcriptional activation and pro-apoptotic functions. Phosphorylates BORA, and thereby promotes the degradation of BORA. Contributes to the regulation of AURKA function. Also required for recovery after DNA damage checkpoint and entry into mitosis. Phosphorylates MISP, leading to stabilization of cortical and astral microtubule attachments required for proper spindle positioning (PubMed:8991084, PubMed:11202906, PubMed:12207013, PubMed:12447691, PubMed:12524548, PubMed:12738781, PubMed:12852856, PubMed:12939256, PubMed:14532005, PubMed:14734534, PubMed:15070733, PubMed:15148369, PubMed:15469984, PubMed:16198290, PubMed:16247472, PubMed:16980960, PubMed:17081991, PubMed:17351640, PubMed:17376779, PubMed:17617734, PubMed:18174154, PubMed:18331714, PubMed:18418051, PubMed:18477460, PubMed:18521620, PubMed:18615013, PubMed:19160488, PubMed:19351716, PubMed:19468300, PubMed:19468302, PubMed:19473992, PubMed:19509060, PubMed:19597481, PubMed:23455478, PubMed:23509069). Together with MEIKIN, acts as a regulator of kinetochore function during meiosis I: required both for mono-orientation of kinetochores on sister chromosomes and protection of centromeric cohesin from separase-mediated cleavage (By similarity). Phosphorylates CEP68 and is required for its degradation (PubMed:25503564). Regulates nuclear envelope breakdown during prophase by phosphorylating DCTN1 resulting in its localization in the nuclear envelope (PubMed:20679239). Phosphorylates the heat shock transcription factor HSF1, promoting HSF1 nuclear translocation upon heat shock (PubMed:15661742). Phosphorylates HSF1 also in the early mitotic period; this phosphorylation regulates HSF1 localization to the spindle pole, the recruitment of the SCF(BTRC) ubiquitin ligase complex induicing HSF1 degradation, and hence mitotic progression (PubMed:18794143).","idgFamily":"Kinase","idgTDL":"Tchem","novelty":-3.0961018918649352,"antibodyCount":856,"monoclonalCount":337,"pubmedCount":null,"jensenScore":1271.145831,"patentCount":74781,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":21,"knowledgeAvailability":56.48273228360455,"pubTatorScore":2.9693791295019953,"self":"https://pharos.nih.gov/idg/api/v1/targets(3786)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":1025,"href":"https://pharos.nih.gov/idg/api/v1/targets(3786)/properties"},"_links":{"count":1706,"href":"https://pharos.nih.gov/idg/api/v1/targets(3786)/links"},"_synonyms":{"count":311,"href":"https://pharos.nih.gov/idg/api/v1/targets(3786)/synonyms"},"_publications":{"count":548,"href":"https://pharos.nih.gov/idg/api/v1/targets(3786)/publications"},"_namespace":null},{"id":3787,"version":2,"created":1554880603000,"modified":1554880607000,"deprecated":false,"name":"Nuclear factor of activated T-cells, cytoplasmic 2","accession":"Q13469","gene":"NFATC2","description":"Plays a role in the inducible expression of cytokine genes in T-cells, especially in the induction of the IL-2, IL-3, IL-4, TNF-alpha or GM-CSF. 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Specifically recognizes H3 tails trimethylated on 'Lys-4' (H3K4me3), which mark transcription start sites of virtually all active genes. May also regulate transcription through direct binding to DNA or transcription factors.","idgFamily":"Epigenetic","idgTDL":"Tchem","novelty":-1.7747199307306714,"antibodyCount":68,"monoclonalCount":33,"pubmedCount":null,"jensenScore":57.98608,"patentCount":null,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":null,"knowledgeAvailability":49.732174802061074,"pubTatorScore":1.642146161689682,"self":"https://pharos.nih.gov/idg/api/v1/targets(3825)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":398,"href":"https://pharos.nih.gov/idg/api/v1/targets(3825)/properties"},"_links":{"count":1081,"href":"https://pharos.nih.gov/idg/api/v1/targets(3825)/links"},"_synonyms":{"count":149,"href":"https://pharos.nih.gov/idg/api/v1/targets(3825)/synonyms"},"_publications":{"count":56,"href":"https://pharos.nih.gov/idg/api/v1/targets(3825)/publications"},"_namespace":null},{"id":3826,"version":3,"created":1554880749000,"modified":1555035032000,"deprecated":false,"name":"Collagen alpha-2(VIII) chain","accession":"P25067","gene":"COL8A2","description":"Macromolecular component of the subendothelium. Major component of the Descemet's membrane (basement membrane) of corneal endothelial cells. Also component of the endothelia of blood vessels. Necessary for migration and proliferation of vascular smooth muscle cells and thus, has a potential role in the maintenance of vessel wall integrity and structure, in particular in atherogenesis (By similarity).","idgFamily":"Non-IDG","idgTDL":"Tbio","novelty":-1.957355194965767,"antibodyCount":93,"monoclonalCount":8,"pubmedCount":null,"jensenScore":89.481895,"patentCount":null,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":13,"knowledgeAvailability":33.4551226647167,"pubTatorScore":1.9909006140260868,"self":"https://pharos.nih.gov/idg/api/v1/targets(3826)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":272,"href":"https://pharos.nih.gov/idg/api/v1/targets(3826)/properties"},"_links":{"count":854,"href":"https://pharos.nih.gov/idg/api/v1/targets(3826)/links"},"_synonyms":{"count":92,"href":"https://pharos.nih.gov/idg/api/v1/targets(3826)/synonyms"},"_publications":{"count":38,"href":"https://pharos.nih.gov/idg/api/v1/targets(3826)/publications"},"_namespace":null},{"id":3827,"version":3,"created":1554880753000,"modified":1555035035000,"deprecated":false,"name":"Cell division cycle protein 20 homolog","accession":"Q12834","gene":"CDC20","description":"Required for full ubiquitin ligase activity of the anaphase promoting complex/cyclosome (APC/C) and may confer substrate specificity upon the complex. 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CDC20-APC/C-induced degradation of NEUROD2 induces presynaptic differentiation.","idgFamily":"Non-IDG","idgTDL":"Tbio","novelty":-2.604088533797081,"antibodyCount":393,"monoclonalCount":150,"pubmedCount":null,"jensenScore":401.481957,"patentCount":null,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":15,"knowledgeAvailability":45.76102665314212,"pubTatorScore":2.3463574816997106,"self":"https://pharos.nih.gov/idg/api/v1/targets(3827)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":533,"href":"https://pharos.nih.gov/idg/api/v1/targets(3827)/properties"},"_links":{"count":1084,"href":"https://pharos.nih.gov/idg/api/v1/targets(3827)/links"},"_synonyms":{"count":176,"href":"https://pharos.nih.gov/idg/api/v1/targets(3827)/synonyms"},"_publications":{"count":155,"href":"https://pharos.nih.gov/idg/api/v1/targets(3827)/publications"},"_namespace":null},{"id":3828,"version":2,"created":1554880760000,"modified":1554880763000,"deprecated":false,"name":"Signal transducer CD24","accession":"P25063","gene":"CD24","description":"May have a pivotal role in cell differentiation of different cell types. Signaling could be triggered by the binding of a lectin-like ligand to the CD24 carbohydrates, and transduced by the release of second messengers derived from the GPI-anchor. Modulates B-cell activation responses. Promotes AG-dependent proliferation of B-cells, and prevents their terminal differentiation into antibody-forming cells (PubMed:11313396). In association with SIGLEC10 may be involved in the selective suppression of the immune response to danger-associated molecular patterns (DAMPs) such as HMGB1, HSP70 and HSP90. Plays a role in the control of autoimmunity (By similarity).","idgFamily":"Non-IDG","idgTDL":"Tbio","novelty":null,"antibodyCount":0,"monoclonalCount":0,"pubmedCount":null,"jensenScore":0.0,"patentCount":null,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":null,"knowledgeAvailability":27.04011718678892,"pubTatorScore":2.777508591834427,"self":"https://pharos.nih.gov/idg/api/v1/targets(3828)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":361,"href":"https://pharos.nih.gov/idg/api/v1/targets(3828)/properties"},"_links":{"count":302,"href":"https://pharos.nih.gov/idg/api/v1/targets(3828)/links"},"_synonyms":{"count":58,"href":"https://pharos.nih.gov/idg/api/v1/targets(3828)/synonyms"},"_publications":{"count":242,"href":"https://pharos.nih.gov/idg/api/v1/targets(3828)/publications"},"_namespace":null},{"id":3829,"version":2,"created":1554880764000,"modified":1554880766000,"deprecated":false,"name":"POU domain, class 4, transcription factor 2","accession":"Q12837","gene":"POU4F2","description":"Isoform 2: Acts either as a transcriptional activator or repressor (PubMed:23805044). Stimulates the promoter activity of the neuronal nicotinic acetylcholine receptor alpha CHRNA2. Negatively regulates the apoptosis regulator BAX promoter activity. Inhibits promoter activity of the neuronal intermediate filament protein alpha-internexin INA gene. Plays a role in the regulation of breast cancer cell growth by promoting transcription activation as well as repression of specific target genes. Involved in tumor breast progression and invasion (By similarity). Inhibits the promoter activity of the GTP-binding protein RIT2 gene containing the octamer binding site in retinal ganglion cells (PubMed:23805044). Plays also a role either as transcriptional coactivator or corepressor. Transcriptional coactivator cooperating with transcription factors TP53 to potentiate transcriptional activation of BAX promoter activity, and hence increases neuronal cell apoptosis. Antagonizes the transcriptional stimulatory activity of POU4F1 by preventing its binding to the octamer motif. Acts also as a transcriptional coactivator via its interaction with the transcription factor ESR1 (By similarity).","idgFamily":"Transcription Factor","idgTDL":"Tbio","novelty":-1.9439672794490086,"antibodyCount":145,"monoclonalCount":0,"pubmedCount":null,"jensenScore":90.165125,"patentCount":null,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":null,"knowledgeAvailability":26.6181788215852,"pubTatorScore":1.656272191734912,"self":"https://pharos.nih.gov/idg/api/v1/targets(3829)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":224,"href":"https://pharos.nih.gov/idg/api/v1/targets(3829)/properties"},"_links":{"count":317,"href":"https://pharos.nih.gov/idg/api/v1/targets(3829)/links"},"_synonyms":{"count":96,"href":"https://pharos.nih.gov/idg/api/v1/targets(3829)/synonyms"},"_publications":{"count":29,"href":"https://pharos.nih.gov/idg/api/v1/targets(3829)/publications"},"_namespace":null},{"id":3830,"version":2,"created":1554880766000,"modified":1554880767000,"deprecated":false,"name":"Zona pellucida sperm-binding protein 4","accession":"Q12836","gene":"ZP4","description":"The mammalian zona pellucida, which mediates species-specific sperm binding, induction of the acrosome reaction and prevents post-fertilization polyspermy, is composed of three to four glycoproteins, ZP1, ZP2, ZP3, and ZP4. ZP4 may act as a sperm receptor.","idgFamily":"Non-IDG","idgTDL":"Tbio","novelty":-2.122174437699093,"antibodyCount":123,"monoclonalCount":0,"pubmedCount":null,"jensenScore":132.11768,"patentCount":null,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":null,"knowledgeAvailability":17.360705020261705,"pubTatorScore":1.6839099758537412,"self":"https://pharos.nih.gov/idg/api/v1/targets(3830)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":121,"href":"https://pharos.nih.gov/idg/api/v1/targets(3830)/properties"},"_links":{"count":151,"href":"https://pharos.nih.gov/idg/api/v1/targets(3830)/links"},"_synonyms":{"count":78,"href":"https://pharos.nih.gov/idg/api/v1/targets(3830)/synonyms"},"_publications":{"count":29,"href":"https://pharos.nih.gov/idg/api/v1/targets(3830)/publications"},"_namespace":null},{"id":3831,"version":2,"created":1554880767000,"modified":1554880790000,"deprecated":false,"name":"Angiotensin-converting enzyme 2","accession":"Q9BYF1","gene":"ACE2","description":"(Microbial infection) Acts as a receptor for SARS coronavirus/SARS-CoV and human coronavirus NL63/HCoV-NL63.","idgFamily":"Enzyme","idgTDL":"Tchem","novelty":-3.0018845781692507,"antibodyCount":720,"monoclonalCount":112,"pubmedCount":null,"jensenScore":1129.290761,"patentCount":null,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":null,"knowledgeAvailability":32.06611125884824,"pubTatorScore":2.6826468524812337,"self":"https://pharos.nih.gov/idg/api/v1/targets(3831)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":533,"href":"https://pharos.nih.gov/idg/api/v1/targets(3831)/properties"},"_links":{"count":1130,"href":"https://pharos.nih.gov/idg/api/v1/targets(3831)/links"},"_synonyms":{"count":163,"href":"https://pharos.nih.gov/idg/api/v1/targets(3831)/synonyms"},"_publications":{"count":236,"href":"https://pharos.nih.gov/idg/api/v1/targets(3831)/publications"},"_namespace":null},{"id":3832,"version":2,"created":1554880791000,"modified":1554880792000,"deprecated":false,"name":"Stress-responsive DNAJB4-interacting membrane protein 1","accession":"Q6ZPB5","gene":"SDIM1","description":"Promotes neuronal cells survival to stress conditions.","idgFamily":"Non-IDG","idgTDL":"Tbio","novelty":0.6020599913279624,"antibodyCount":0,"monoclonalCount":0,"pubmedCount":null,"jensenScore":0.5,"patentCount":null,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":null,"knowledgeAvailability":0.978454841663302,"pubTatorScore":-0.3010299956639812,"self":"https://pharos.nih.gov/idg/api/v1/targets(3832)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":26,"href":"https://pharos.nih.gov/idg/api/v1/targets(3832)/properties"},"_links":{"count":11,"href":"https://pharos.nih.gov/idg/api/v1/targets(3832)/links"},"_synonyms":{"count":20,"href":"https://pharos.nih.gov/idg/api/v1/targets(3832)/synonyms"},"_publications":{"count":3,"href":"https://pharos.nih.gov/idg/api/v1/targets(3832)/publications"},"_namespace":null},{"id":3833,"version":3,"created":1554880792000,"modified":1555035037000,"deprecated":false,"name":"MARCKS-related protein","accession":"P49006","gene":"MARCKSL1","description":"Controls cell movement by regulating actin cytoskeleton homeostasis and filopodium and lamellipodium formation. When unphosphorylated, induces cell migration. When phosphorylated by MAPK8, induces actin bundles formation and stabilization, thereby reducing actin plasticity, hence restricting cell movement, including neuronal migration. May also affect cancer cell migration. May be involved in coupling the protein kinase C and calmodulin signal transduction systems (By similarity).","idgFamily":"Non-IDG","idgTDL":"Tbio","novelty":-1.6416185165785717,"antibodyCount":171,"monoclonalCount":36,"pubmedCount":null,"jensenScore":43.579405,"patentCount":null,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":14,"knowledgeAvailability":39.41191294616781,"pubTatorScore":1.8812972697557746,"self":"https://pharos.nih.gov/idg/api/v1/targets(3833)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":372,"href":"https://pharos.nih.gov/idg/api/v1/targets(3833)/properties"},"_links":{"count":989,"href":"https://pharos.nih.gov/idg/api/v1/targets(3833)/links"},"_synonyms":{"count":85,"href":"https://pharos.nih.gov/idg/api/v1/targets(3833)/synonyms"},"_publications":{"count":37,"href":"https://pharos.nih.gov/idg/api/v1/targets(3833)/publications"},"_namespace":null},{"id":3834,"version":3,"created":1554880796000,"modified":1555035038000,"deprecated":false,"name":"DNA polymerase delta subunit 2","accession":"P49005","gene":"POLD2","description":"As a component of the trimeric and tetrameric DNA polymerase delta complexes (Pol-delta3 and Pol-delta4, respectively), plays a role in high fidelity genome replication, including in lagging strand synthesis, and repair (PubMed:12403614, PubMed:16510448, PubMed:19074196, PubMed:20334433, PubMed:24035200). Pol-delta3 and Pol-delta4 are characterized by the absence or the presence of POLD4. They exhibit differences in catalytic activity. Most notably, Pol-delta3 shows higher proofreading activity than Pol-delta4 (PubMed:19074196, PubMed:20334433). Although both Pol-delta3 and Pol-delta4 process Okazaki fragments in vitro, Pol-delta3 may also be better suited to fulfill this task, exhibiting near-absence of strand displacement activity compared to Pol-delta4 and stalling on encounter with the 5'-blocking oligonucleotides. Pol-delta3 idling process may avoid the formation of a gap, while maintaining a nick that can be readily ligated (PubMed:24035200). Along with DNA polymerase kappa, DNA polymerase delta carries out approximately half of nucleotide excision repair (NER) synthesis following UV irradiation (PubMed:20227374). Under conditions of DNA replication stress, required for the repair of broken replication forks through break-induced replication (BIR) (PubMed:24310611). Involved in the translesion synthesis (TLS) of templates carrying O6-methylguanine or abasic sites performed by Pol-delta4, independently of DNA polymerase zeta (REV3L) or eta (POLH). Facilitates abasic site bypass by DNA polymerase delta by promoting extension from the nucleotide inserted opposite the lesion. Also involved in TLS as a component of the POLZ complex. Along with POLD3, dramatically increases the efficiency and processivity of DNA synthesis of the minimal DNA polymerase zeta complex, consisting of only REV3L and REV7 (PubMed:24449906).","idgFamily":"Enzyme","idgTDL":"Tbio","novelty":-0.9522242496304052,"antibodyCount":115,"monoclonalCount":15,"pubmedCount":null,"jensenScore":8.518196,"patentCount":null,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":6,"knowledgeAvailability":40.8416603934872,"pubTatorScore":0.8646086676923714,"self":"https://pharos.nih.gov/idg/api/v1/targets(3834)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":441,"href":"https://pharos.nih.gov/idg/api/v1/targets(3834)/properties"},"_links":{"count":1049,"href":"https://pharos.nih.gov/idg/api/v1/targets(3834)/links"},"_synonyms":{"count":107,"href":"https://pharos.nih.gov/idg/api/v1/targets(3834)/synonyms"},"_publications":{"count":52,"href":"https://pharos.nih.gov/idg/api/v1/targets(3834)/publications"},"_namespace":null},{"id":3835,"version":2,"created":1554880800000,"modified":1554880803000,"deprecated":false,"name":"Kinesin heavy chain isoform 5A","accession":"Q12840","gene":"KIF5A","description":"Microtubule-dependent motor required for slow axonal transport of neurofilament proteins (NFH, NFM and NFL). Can induce formation of neurite-like membrane protrusions in non-neuronal cells in a ZFYVE27-dependent manner. The ZFYVE27-KIF5A complex contributes to the vesicular transport of VAPA, VAPB, SURF4, RAB11A, RAB11B and RTN3 proteins in neurons.","idgFamily":"Non-IDG","idgTDL":"Tbio","novelty":-1.6913052109592885,"antibodyCount":170,"monoclonalCount":0,"pubmedCount":null,"jensenScore":48.376817,"patentCount":null,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":null,"knowledgeAvailability":40.020517162676434,"pubTatorScore":1.7600863859081157,"self":"https://pharos.nih.gov/idg/api/v1/targets(3835)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":403,"href":"https://pharos.nih.gov/idg/api/v1/targets(3835)/properties"},"_links":{"count":1025,"href":"https://pharos.nih.gov/idg/api/v1/targets(3835)/links"},"_synonyms":{"count":112,"href":"https://pharos.nih.gov/idg/api/v1/targets(3835)/synonyms"},"_publications":{"count":66,"href":"https://pharos.nih.gov/idg/api/v1/targets(3835)/publications"},"_namespace":null},{"id":3836,"version":2,"created":1554880804000,"modified":1554880808000,"deprecated":false,"name":"Follistatin-related protein 1","accession":"Q12841","gene":"FSTL1","description":"May modulate the action of some growth factors on cell proliferation and differentiation. Binds heparin (By similarity).","idgFamily":"Non-IDG","idgTDL":"Tbio","novelty":-1.980381133167249,"antibodyCount":265,"monoclonalCount":23,"pubmedCount":null,"jensenScore":117.500442,"patentCount":null,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":null,"knowledgeAvailability":36.53893155379848,"pubTatorScore":1.7002240587341075,"self":"https://pharos.nih.gov/idg/api/v1/targets(3836)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":333,"href":"https://pharos.nih.gov/idg/api/v1/targets(3836)/properties"},"_links":{"count":1011,"href":"https://pharos.nih.gov/idg/api/v1/targets(3836)/links"},"_synonyms":{"count":107,"href":"https://pharos.nih.gov/idg/api/v1/targets(3836)/synonyms"},"_publications":{"count":54,"href":"https://pharos.nih.gov/idg/api/v1/targets(3836)/publications"},"_namespace":null},{"id":3837,"version":3,"created":1554880809000,"modified":1555035040000,"deprecated":false,"name":"Replication protein A 70 kDa DNA-binding subunit","accession":"P27694","gene":"RPA1","description":"As part of the heterotrimeric replication protein A complex (RPA/RP-A), binds and stabilizes single-stranded DNA intermediates, that form during DNA replication or upon DNA stress. It prevents their reannealing and in parallel, recruits and activates different proteins and complexes involved in DNA metabolism (PubMed:27723720, PubMed:27723717). Thereby, it plays an essential role both in DNA replication and the cellular response to DNA damage (PubMed:9430682). In the cellular response to DNA damage, the RPA complex controls DNA repair and DNA damage checkpoint activation. Through recruitment of ATRIP activates the ATR kinase a master regulator of the DNA damage response (PubMed:24332808). It is required for the recruitment of the DNA double-strand break repair factors RAD51 and RAD52 to chromatin in response to DNA damage (PubMed:17765923). Also recruits to sites of DNA damage proteins like XPA and XPG that are involved in nucleotide excision repair and is required for this mechanism of DNA repair (PubMed:7697716). Plays also a role in base excision repair (BER) probably through interaction with UNG (PubMed:9765279). Also recruits SMARCAL1/HARP, which is involved in replication fork restart, to sites of DNA damage. May also play a role in telomere maintenance (PubMed:17959650). As part of the alternative replication protein A complex, aRPA, binds single-stranded DNA and probably plays a role in DNA repair. Compared to the RPA2-containing, canonical RPA complex, may not support chromosomal DNA replication and cell cycle progression through S-phase. The aRPA may not promote efficient priming by DNA polymerase alpha but could support DNA synthesis by polymerase delta in presence of PCNA and replication factor C (RFC), the dual incision/excision reaction of nucleotide excision repair and RAD51-dependent strand exchange (PubMed:19996105).","idgFamily":"Non-IDG","idgTDL":"Tchem","novelty":-2.4827697822616424,"antibodyCount":350,"monoclonalCount":115,"pubmedCount":null,"jensenScore":297.924695,"patentCount":null,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":3,"knowledgeAvailability":51.55511973571242,"pubTatorScore":2.5856927511057703,"self":"https://pharos.nih.gov/idg/api/v1/targets(3837)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":729,"href":"https://pharos.nih.gov/idg/api/v1/targets(3837)/properties"},"_links":{"count":1335,"href":"https://pharos.nih.gov/idg/api/v1/targets(3837)/links"},"_synonyms":{"count":216,"href":"https://pharos.nih.gov/idg/api/v1/targets(3837)/synonyms"},"_publications":{"count":215,"href":"https://pharos.nih.gov/idg/api/v1/targets(3837)/publications"},"_namespace":null},{"id":3838,"version":3,"created":1554880831000,"modified":1555035042000,"deprecated":false,"name":"DNA-(apurinic or apyrimidinic site) lyase","accession":"P27695","gene":"APEX1","description":"Multifunctional protein that plays a central role in the cellular response to oxidative stress. The two major activities of APEX1 in DNA repair and redox regulation of transcriptional factors. Functions as a apurinic/apyrimidinic (AP) endodeoxyribonuclease in the DNA base excision repair (BER) pathway of DNA lesions induced by oxidative and alkylating agents. Initiates repair of AP sites in DNA by catalyzing hydrolytic incision of the phosphodiester backbone immediately adjacent to the damage, generating a single-strand break with 5'-deoxyribose phosphate and 3'-hydroxyl ends. Does also incise at AP sites in the DNA strand of DNA/RNA hybrids, single-stranded DNA regions of R-loop structures, and single-stranded RNA molecules. Has a 3'-5' exoribonuclease activity on mismatched deoxyribonucleotides at the 3' termini of nicked or gapped DNA molecules during short-patch BER. Possesses a DNA 3' phosphodiesterase activity capable of removing lesions (such as phosphoglycolate) blocking the 3' side of DNA strand breaks. May also play a role in the epigenetic regulation of gene expression by participating in DNA demethylation. Acts as a loading factor for POLB onto non-incised AP sites in DNA and stimulates the 5'-terminal deoxyribose 5'-phosphate (dRp) excision activity of POLB. Plays a role in the protection from granzymes-mediated cellular repair leading to cell death. Also involved in the DNA cleavage step of class switch recombination (CSR). On the other hand, APEX1 also exerts reversible nuclear redox activity to regulate DNA binding affinity and transcriptional activity of transcriptional factors by controlling the redox status of their DNA-binding domain, such as the FOS/JUN AP-1 complex after exposure to IR. Involved in calcium-dependent down-regulation of parathyroid hormone (PTH) expression by binding to negative calcium response elements (nCaREs). Together with HNRNPL or the dimer XRCC5/XRCC6, associates with nCaRE, acting as an activator of transcriptional repression. Stimulates the YBX1-mediated MDR1 promoter activity, when acetylated at Lys-6 and Lys-7, leading to drug resistance. Acts also as an endoribonuclease involved in the control of single-stranded RNA metabolism. Plays a role in regulating MYC mRNA turnover by preferentially cleaving in between UA and CA dinucleotides of the MYC coding region determinant (CRD). In association with NMD1, plays a role in the rRNA quality control process during cell cycle progression. Associates, together with YBX1, on the MDR1 promoter. Together with NPM1, associates with rRNA. Binds DNA and RNA.","idgFamily":"Enzyme","idgTDL":"Tchem","novelty":-3.4774644829533763,"antibodyCount":646,"monoclonalCount":152,"pubmedCount":null,"jensenScore":2988.977491,"patentCount":null,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":1,"knowledgeAvailability":49.738231689575386,"pubTatorScore":3.0769839006505904,"self":"https://pharos.nih.gov/idg/api/v1/targets(3838)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":1018,"href":"https://pharos.nih.gov/idg/api/v1/targets(3838)/properties"},"_links":{"count":1755,"href":"https://pharos.nih.gov/idg/api/v1/targets(3838)/links"},"_synonyms":{"count":221,"href":"https://pharos.nih.gov/idg/api/v1/targets(3838)/synonyms"},"_publications":{"count":527,"href":"https://pharos.nih.gov/idg/api/v1/targets(3838)/publications"},"_namespace":null},{"id":3839,"version":3,"created":1554880842000,"modified":1555035046000,"deprecated":false,"name":"Cadherin-related family member 2","accession":"Q9BYE9","gene":"CDHR2","description":"Intermicrovillar adhesion molecule that forms, via its extracellular domain, calcium-dependent heterophilic complexes with CDHR5 on adjacent microvilli. Thereby, controls the packing of microvilli at the apical membrane of epithelial cells. Through its cytoplasmic domain, interacts with microvillus cytoplasmic proteins to form the intermicrovillar adhesion complex/IMAC. This complex plays a central role in microvilli and epithelial brush border differentiation (PubMed:24725409). May also play a role in cell-cell adhesion and contact inhibition in epithelial cells (PubMed:12117771).","idgFamily":"Non-IDG","idgTDL":"Tbio","novelty":-0.7236901795289912,"antibodyCount":30,"monoclonalCount":6,"pubmedCount":null,"jensenScore":6.090013,"patentCount":null,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":9,"knowledgeAvailability":31.2564381999471,"pubTatorScore":0.7403626894942439,"self":"https://pharos.nih.gov/idg/api/v1/targets(3839)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":289,"href":"https://pharos.nih.gov/idg/api/v1/targets(3839)/properties"},"_links":{"count":839,"href":"https://pharos.nih.gov/idg/api/v1/targets(3839)/links"},"_synonyms":{"count":87,"href":"https://pharos.nih.gov/idg/api/v1/targets(3839)/synonyms"},"_publications":{"count":21,"href":"https://pharos.nih.gov/idg/api/v1/targets(3839)/publications"},"_namespace":null},{"id":3840,"version":2,"created":1554880845000,"modified":1554880848000,"deprecated":false,"name":"G-rich sequence factor 1","accession":"Q12849","gene":"GRSF1","description":"Regulator of post-transcriptional mitochondrial gene expression, required for assembly of the mitochondrial ribosome and for recruitment of mRNA and lncRNA. Binds RNAs containing the 14 base G-rich element. Preferentially binds RNAs transcribed from three contiguous genes on the light strand of mtDNA, the ND6 mRNA, and the long non-coding RNAs for MT-CYB and MT-ND5, each of which contains multiple consensus binding sequences.","idgFamily":"Non-IDG","idgTDL":"Tbio","novelty":-1.0558528018184767,"antibodyCount":138,"monoclonalCount":0,"pubmedCount":null,"jensenScore":11.95564,"patentCount":null,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":null,"knowledgeAvailability":41.56006171290958,"pubTatorScore":1.0848739982192874,"self":"https://pharos.nih.gov/idg/api/v1/targets(3840)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":405,"href":"https://pharos.nih.gov/idg/api/v1/targets(3840)/properties"},"_links":{"count":1124,"href":"https://pharos.nih.gov/idg/api/v1/targets(3840)/links"},"_synonyms":{"count":106,"href":"https://pharos.nih.gov/idg/api/v1/targets(3840)/synonyms"},"_publications":{"count":25,"href":"https://pharos.nih.gov/idg/api/v1/targets(3840)/publications"},"_namespace":null},{"id":3841,"version":3,"created":1554880849000,"modified":1555035049000,"deprecated":false,"name":"Polycomb group RING finger protein 6","accession":"Q9BYE7","gene":"PCGF6","description":"Transcriptional repressor (PubMed:12167161). May modulate the levels of histone H3K4Me3 by activating KDM5D histone demethylase (PubMed:17320162). Component of a Polycomb group (PcG) multiprotein PRC1-like complex, a complex class required to maintain the transcriptionally repressive state of many genes, including Hox genes, throughout development. PcG PRC1 complex acts via chromatin remodeling and modification of histones; it mediates monoubiquitination of histone H2A 'Lys-119', rendering chromatin heritably changed in its expressibility (PubMed:12167161). Within the PRC1-like complex, regulates RNF2 ubiquitin ligase activity (PubMed:26151332).","idgFamily":"Non-IDG","idgTDL":"Tbio","novelty":-0.8267967682016752,"antibodyCount":112,"monoclonalCount":7,"pubmedCount":null,"jensenScore":8.452229,"patentCount":null,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":23,"knowledgeAvailability":32.38121829621317,"pubTatorScore":0.3708545435793626,"self":"https://pharos.nih.gov/idg/api/v1/targets(3841)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":267,"href":"https://pharos.nih.gov/idg/api/v1/targets(3841)/properties"},"_links":{"count":837,"href":"https://pharos.nih.gov/idg/api/v1/targets(3841)/links"},"_synonyms":{"count":91,"href":"https://pharos.nih.gov/idg/api/v1/targets(3841)/synonyms"},"_publications":{"count":25,"href":"https://pharos.nih.gov/idg/api/v1/targets(3841)/publications"},"_namespace":null},{"id":3842,"version":3,"created":1554880851000,"modified":1555035050000,"deprecated":false,"name":"Syntaxin-4","accession":"Q12846","gene":"STX4","description":"Plasma membrane t-SNARE that mediates docking of transport vesicles. Necessary for the translocation of SLC2A4 from intracellular vesicles to the plasma membrane. Together with STXB3 and VAMP2, may also play a role in docking/fusion of intracellular GLUT4-containing vesicles with the cell surface in adipocytes (By similarity). May also play a role in docking of synaptic vesicles at presynaptic active zones.","idgFamily":"Non-IDG","idgTDL":"Tbio","novelty":-1.9529472053968262,"antibodyCount":207,"monoclonalCount":50,"pubmedCount":null,"jensenScore":84.172062,"patentCount":null,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":5,"knowledgeAvailability":44.57656170840945,"pubTatorScore":1.8746923328128302,"self":"https://pharos.nih.gov/idg/api/v1/targets(3842)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":508,"href":"https://pharos.nih.gov/idg/api/v1/targets(3842)/properties"},"_links":{"count":1158,"href":"https://pharos.nih.gov/idg/api/v1/targets(3842)/links"},"_synonyms":{"count":110,"href":"https://pharos.nih.gov/idg/api/v1/targets(3842)/synonyms"},"_publications":{"count":77,"href":"https://pharos.nih.gov/idg/api/v1/targets(3842)/publications"},"_namespace":null},{"id":3843,"version":2,"created":1554880856000,"modified":1554880857000,"deprecated":false,"name":"Transcription factor HES-7","accession":"Q9BYE0","gene":"HES7","description":"Transcriptional repressor. Represses transcription from both N box- and E box-containing promoters. May with HES1, cooperatively regulate somite formation in the presomitic mesoderm (PSM). May function as a segmentation clock, which is essential for coordinated somite segmentation (By similarity).","idgFamily":"Transcription Factor","idgTDL":"Tbio","novelty":-1.3604699838556964,"antibodyCount":144,"monoclonalCount":0,"pubmedCount":null,"jensenScore":22.625486,"patentCount":null,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":null,"knowledgeAvailability":28.004540012882845,"pubTatorScore":1.1937814172577421,"self":"https://pharos.nih.gov/idg/api/v1/targets(3843)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":238,"href":"https://pharos.nih.gov/idg/api/v1/targets(3843)/properties"},"_links":{"count":786,"href":"https://pharos.nih.gov/idg/api/v1/targets(3843)/links"},"_synonyms":{"count":80,"href":"https://pharos.nih.gov/idg/api/v1/targets(3843)/synonyms"},"_publications":{"count":15,"href":"https://pharos.nih.gov/idg/api/v1/targets(3843)/publications"},"_namespace":null},{"id":3844,"version":2,"created":1554880858000,"modified":1554880861000,"deprecated":false,"name":"Nuclear receptor subfamily 2 group C member 1","accession":"P13056","gene":"NR2C1","description":"Orphan nuclear receptor. Binds the IR7 element in the promoter of its own gene in an autoregulatory negative feedback mechanism. Primarily repressor of a broad range of genes. Binds to hormone response elements (HREs) consisting of two 5'-AGGTCA-3' half site direct repeat consensus sequences. Together with NR2C2, forms the core of the DRED (direct repeat erythroid-definitive) complex that represses embryonic and fetal globin transcription. Also activator of OCT4 gene expression. May be involved in stem cell proliferation and differentiation. Mediator of retinoic acid-regulated preadipocyte proliferation.","idgFamily":"Nuclear Receptor","idgTDL":"Tbio","novelty":-1.391823896267129,"antibodyCount":294,"monoclonalCount":99,"pubmedCount":null,"jensenScore":24.356992,"patentCount":15193,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":null,"knowledgeAvailability":39.72387488611102,"pubTatorScore":1.9394325398147267,"self":"https://pharos.nih.gov/idg/api/v1/targets(3844)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":379,"href":"https://pharos.nih.gov/idg/api/v1/targets(3844)/properties"},"_links":{"count":949,"href":"https://pharos.nih.gov/idg/api/v1/targets(3844)/links"},"_synonyms":{"count":107,"href":"https://pharos.nih.gov/idg/api/v1/targets(3844)/synonyms"},"_publications":{"count":24,"href":"https://pharos.nih.gov/idg/api/v1/targets(3844)/publications"},"_namespace":null},{"id":3845,"version":3,"created":1554880861000,"modified":1555035051000,"deprecated":false,"name":"Serine/threonine-protein kinase receptor R3","accession":"P37023","gene":"ACVRL1","description":"Type I receptor for TGF-beta family ligands BMP9/GDF2 and BMP10 and important regulator of normal blood vessel development. On ligand binding, forms a receptor complex consisting of two type II and two type I transmembrane serine/threonine kinases. Type II receptors phosphorylate and activate type I receptors which autophosphorylate, then bind and activate SMAD transcriptional regulators. May bind activin as well.","idgFamily":"Kinase","idgTDL":"Tchem","novelty":-2.9837022431853213,"antibodyCount":432,"monoclonalCount":103,"pubmedCount":null,"jensenScore":969.840322,"patentCount":38459,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":2,"knowledgeAvailability":43.15884508689677,"pubTatorScore":2.4093319006630884,"self":"https://pharos.nih.gov/idg/api/v1/targets(3845)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":550,"href":"https://pharos.nih.gov/idg/api/v1/targets(3845)/properties"},"_links":{"count":1116,"href":"https://pharos.nih.gov/idg/api/v1/targets(3845)/links"},"_synonyms":{"count":150,"href":"https://pharos.nih.gov/idg/api/v1/targets(3845)/synonyms"},"_publications":{"count":143,"href":"https://pharos.nih.gov/idg/api/v1/targets(3845)/publications"},"_namespace":null},{"id":3846,"version":3,"created":1554880887000,"modified":1555035053000,"deprecated":false,"name":"Carboxypeptidase M","accession":"P14384","gene":"CPM","description":"Specifically removes C-terminal basic residues (Arg or Lys) from peptides and proteins. It is believed to play important roles in the control of peptide hormone and growth factor activity at the cell surface, and in the membrane-localized degradation of extracellular proteins.","idgFamily":"Enzyme","idgTDL":"Tchem","novelty":-2.144740165864397,"antibodyCount":196,"monoclonalCount":33,"pubmedCount":null,"jensenScore":133.188197,"patentCount":null,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":1,"knowledgeAvailability":38.377709575265975,"pubTatorScore":1.7888751087137178,"self":"https://pharos.nih.gov/idg/api/v1/targets(3846)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":326,"href":"https://pharos.nih.gov/idg/api/v1/targets(3846)/properties"},"_links":{"count":967,"href":"https://pharos.nih.gov/idg/api/v1/targets(3846)/links"},"_synonyms":{"count":103,"href":"https://pharos.nih.gov/idg/api/v1/targets(3846)/synonyms"},"_publications":{"count":43,"href":"https://pharos.nih.gov/idg/api/v1/targets(3846)/publications"},"_namespace":null},{"id":3847,"version":2,"created":1554880892000,"modified":1554880896000,"deprecated":false,"name":"Acidic leucine-rich nuclear phosphoprotein 32 family member A","accession":"P39687","gene":"ANP32A","description":"Implicated in a number of cellular processes, including proliferation, differentiation, caspase-dependent and caspase-independent apoptosis, suppression of transformation (tumor suppressor), inhibition of protein phosphatase 2A, regulation of mRNA trafficking and stability in association with ELAVL1, and inhibition of acetyltransferases as part of the INHAT (inhibitor of histone acetyltransferases) complex. Plays a role in E4F1-mediated transcriptional repression.","idgFamily":"Non-IDG","idgTDL":"Tbio","novelty":-2.1609891804207404,"antibodyCount":382,"monoclonalCount":58,"pubmedCount":null,"jensenScore":153.605903,"patentCount":null,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":null,"knowledgeAvailability":40.4173501199152,"pubTatorScore":1.918781058975526,"self":"https://pharos.nih.gov/idg/api/v1/targets(3847)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":452,"href":"https://pharos.nih.gov/idg/api/v1/targets(3847)/properties"},"_links":{"count":1149,"href":"https://pharos.nih.gov/idg/api/v1/targets(3847)/links"},"_synonyms":{"count":120,"href":"https://pharos.nih.gov/idg/api/v1/targets(3847)/synonyms"},"_publications":{"count":68,"href":"https://pharos.nih.gov/idg/api/v1/targets(3847)/publications"},"_namespace":null},{"id":3848,"version":2,"created":1554880897000,"modified":1554880902000,"deprecated":false,"name":"Uracil-DNA glycosylase","accession":"P13051","gene":"UNG","description":"Excises uracil residues from the DNA which can arise as a result of misincorporation of dUMP residues by DNA polymerase or due to deamination of cytosine.","idgFamily":"Enzyme","idgTDL":"Tbio","novelty":-2.8295681214594923,"antibodyCount":352,"monoclonalCount":119,"pubmedCount":null,"jensenScore":680.854469,"patentCount":null,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":null,"knowledgeAvailability":49.303815537405676,"pubTatorScore":2.6683525707268707,"self":"https://pharos.nih.gov/idg/api/v1/targets(3848)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":403,"href":"https://pharos.nih.gov/idg/api/v1/targets(3848)/properties"},"_links":{"count":1085,"href":"https://pharos.nih.gov/idg/api/v1/targets(3848)/links"},"_synonyms":{"count":170,"href":"https://pharos.nih.gov/idg/api/v1/targets(3848)/synonyms"},"_publications":{"count":131,"href":"https://pharos.nih.gov/idg/api/v1/targets(3848)/publications"},"_namespace":null},{"id":3849,"version":2,"created":1554880903000,"modified":1554880904000,"deprecated":false,"name":"Small proline-rich protein 2G","accession":"Q9BYE4","gene":"SPRR2G","description":"Cross-linked envelope protein of keratinocytes. It is a keratinocyte protein that first appears in the cell cytosol, but ultimately becomes cross-linked to membrane proteins by transglutaminase. All that results in the formation of an insoluble envelope beneath the plasma membrane (By similarity).","idgFamily":"Non-IDG","idgTDL":"Tbio","novelty":0.39222014925042364,"antibodyCount":1,"monoclonalCount":1,"pubmedCount":null,"jensenScore":0.305195,"patentCount":null,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":null,"knowledgeAvailability":11.15302796143528,"pubTatorScore":-0.0917708076503444,"self":"https://pharos.nih.gov/idg/api/v1/targets(3849)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":133,"href":"https://pharos.nih.gov/idg/api/v1/targets(3849)/properties"},"_links":{"count":559,"href":"https://pharos.nih.gov/idg/api/v1/targets(3849)/links"},"_synonyms":{"count":55,"href":"https://pharos.nih.gov/idg/api/v1/targets(3849)/synonyms"},"_publications":{"count":8,"href":"https://pharos.nih.gov/idg/api/v1/targets(3849)/publications"},"_namespace":null},{"id":3850,"version":2,"created":1554880904000,"modified":1554880906000,"deprecated":false,"name":"Late cornified envelope protein 3D","accession":"Q9BYE3","gene":"LCE3D","description":"Precursors of the cornified envelope of the stratum corneum.","idgFamily":"Non-IDG","idgTDL":"Tdark","novelty":-0.13175072010915284,"antibodyCount":0,"monoclonalCount":0,"pubmedCount":null,"jensenScore":1.113967,"patentCount":null,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":null,"knowledgeAvailability":12.116187403946512,"pubTatorScore":0.06356264493942214,"self":"https://pharos.nih.gov/idg/api/v1/targets(3850)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":119,"href":"https://pharos.nih.gov/idg/api/v1/targets(3850)/properties"},"_links":{"count":223,"href":"https://pharos.nih.gov/idg/api/v1/targets(3850)/links"},"_synonyms":{"count":57,"href":"https://pharos.nih.gov/idg/api/v1/targets(3850)/synonyms"},"_publications":{"count":8,"href":"https://pharos.nih.gov/idg/api/v1/targets(3850)/publications"},"_namespace":null},{"id":3851,"version":2,"created":1554880906000,"modified":1554880908000,"deprecated":false,"name":"Transmembrane protease serine 13","accession":"Q9BYE2","gene":"TMPRSS13","description":null,"idgFamily":"Enzyme","idgTDL":"Tbio","novelty":-1.7763426239123632,"antibodyCount":71,"monoclonalCount":6,"pubmedCount":null,"jensenScore":56.800298,"patentCount":null,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":null,"knowledgeAvailability":22.53831260571199,"pubTatorScore":1.5429439147012267,"self":"https://pharos.nih.gov/idg/api/v1/targets(3851)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":259,"href":"https://pharos.nih.gov/idg/api/v1/targets(3851)/properties"},"_links":{"count":848,"href":"https://pharos.nih.gov/idg/api/v1/targets(3851)/links"},"_synonyms":{"count":101,"href":"https://pharos.nih.gov/idg/api/v1/targets(3851)/synonyms"},"_publications":{"count":10,"href":"https://pharos.nih.gov/idg/api/v1/targets(3851)/publications"},"_namespace":null},{"id":3852,"version":3,"created":1554880908000,"modified":1554881052000,"deprecated":false,"name":"C-X-C chemokine receptor type 2","accession":"P25025","gene":"CXCR2","description":"Receptor for interleukin-8 which is a powerful neutrophil chemotactic factor. Binding of IL-8 to the receptor causes activation of neutrophils. This response is mediated via a G-protein that activates a phosphatidylinositol-calcium second messenger system. Binds to IL-8 with high affinity. Also binds with high affinity to CXCL3, GRO/MGSA and NAP-2.","idgFamily":"GPCR","idgTDL":"Tchem","novelty":-2.8731318593663167,"antibodyCount":643,"monoclonalCount":288,"pubmedCount":null,"jensenScore":723.905403,"patentCount":57672,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":null,"knowledgeAvailability":39.614421934844756,"pubTatorScore":2.665099198225467,"self":"https://pharos.nih.gov/idg/api/v1/targets(3852)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":633,"href":"https://pharos.nih.gov/idg/api/v1/targets(3852)/properties"},"_links":{"count":1490,"href":"https://pharos.nih.gov/idg/api/v1/targets(3852)/links"},"_synonyms":{"count":111,"href":"https://pharos.nih.gov/idg/api/v1/targets(3852)/synonyms"},"_publications":{"count":316,"href":"https://pharos.nih.gov/idg/api/v1/targets(3852)/publications"},"_namespace":null},{"id":3853,"version":2,"created":1554881055000,"modified":1554881064000,"deprecated":false,"name":"DNA (cytosine-5)-methyltransferase 1","accession":"P26358","gene":"DNMT1","description":"Methylates CpG residues. Preferentially methylates hemimethylated DNA. Associates with DNA replication sites in S phase maintaining the methylation pattern in the newly synthesized strand, that is essential for epigenetic inheritance. Associates with chromatin during G2 and M phases to maintain DNA methylation independently of replication. It is responsible for maintaining methylation patterns established in development. DNA methylation is coordinated with methylation of histones. Mediates transcriptional repression by direct binding to HDAC2. In association with DNMT3B and via the recruitment of CTCFL/BORIS, involved in activation of BAG1 gene expression by modulating dimethylation of promoter histone H3 at H3K4 and H3K9. Probably forms a corepressor complex required for activated KRAS-mediated promoter hypermethylation and transcriptional silencing of tumor suppressor genes (TSGs) or other tumor-related genes in colorectal cancer (CRC) cells (PubMed:24623306). Also required to maintain a transcriptionally repressive state of genes in undifferentiated embryonic stem cells (ESCs) (PubMed:24623306). Associates at promoter regions of tumor suppressor genes (TSGs) leading to their gene silencing (PubMed:24623306). 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Mediates also the SAP/JNK signaling pathway and the p38 MAPKs signaling pathway through activation of the MAP3Ks MAP3K10/MLK2 and MAP3K11/MLK3. May play a role in the regulation of vesicle targeting or fusion. regulation of vesicle targeting or fusion.","idgFamily":"Kinase","idgTDL":"Tchem","novelty":-1.6042301015965006,"antibodyCount":193,"monoclonalCount":3,"pubmedCount":null,"jensenScore":35.275727,"patentCount":9397,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":null,"knowledgeAvailability":41.31730898005464,"pubTatorScore":0.8687423346143607,"self":"https://pharos.nih.gov/idg/api/v1/targets(3854)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":407,"href":"https://pharos.nih.gov/idg/api/v1/targets(3854)/properties"},"_links":{"count":986,"href":"https://pharos.nih.gov/idg/api/v1/targets(3854)/links"},"_synonyms":{"count":93,"href":"https://pharos.nih.gov/idg/api/v1/targets(3854)/synonyms"},"_publications":{"count":31,"href":"https://pharos.nih.gov/idg/api/v1/targets(3854)/publications"},"_namespace":null},{"id":3855,"version":2,"created":1554881072000,"modified":1554881074000,"deprecated":false,"name":"Rab proteins geranylgeranyltransferase component A 2","accession":"P26374","gene":"CHML","description":"Substrate-binding subunit (component A) of the Rab geranylgeranyltransferase (GGTase) complex. 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Less effective than CHM in supporting prenylation of Rab3 family.","idgFamily":"Enzyme","idgTDL":"Tbio","novelty":-1.9013739231619304,"antibodyCount":126,"monoclonalCount":12,"pubmedCount":null,"jensenScore":73.297913,"patentCount":null,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":null,"knowledgeAvailability":31.56396952166738,"pubTatorScore":1.5624653581411643,"self":"https://pharos.nih.gov/idg/api/v1/targets(3855)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":330,"href":"https://pharos.nih.gov/idg/api/v1/targets(3855)/properties"},"_links":{"count":932,"href":"https://pharos.nih.gov/idg/api/v1/targets(3855)/links"},"_synonyms":{"count":82,"href":"https://pharos.nih.gov/idg/api/v1/targets(3855)/synonyms"},"_publications":{"count":24,"href":"https://pharos.nih.gov/idg/api/v1/targets(3855)/publications"},"_namespace":null},{"id":3856,"version":3,"created":1554881075000,"modified":1554881214000,"deprecated":false,"name":"Mitogen-activated protein kinase kinase kinase 12","accession":"Q12852","gene":"MAP3K12","description":"May be an activator of the JNK/SAPK pathway. 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The matrix proteins include the high-sulfur and high-glycine-tyrosine keratins.","idgFamily":"Non-IDG","idgTDL":"Tbio","novelty":-0.4393326981732075,"antibodyCount":0,"monoclonalCount":0,"pubmedCount":null,"jensenScore":2.916667,"patentCount":null,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":null,"knowledgeAvailability":14.112572776527776,"pubTatorScore":0.0,"self":"https://pharos.nih.gov/idg/api/v1/targets(3858)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":179,"href":"https://pharos.nih.gov/idg/api/v1/targets(3858)/properties"},"_links":{"count":680,"href":"https://pharos.nih.gov/idg/api/v1/targets(3858)/links"},"_synonyms":{"count":58,"href":"https://pharos.nih.gov/idg/api/v1/targets(3858)/synonyms"},"_publications":{"count":13,"href":"https://pharos.nih.gov/idg/api/v1/targets(3858)/publications"},"_namespace":null},{"id":3859,"version":3,"created":1554881221000,"modified":1555035055000,"deprecated":false,"name":"60S ribosomal protein L13","accession":"P26373","gene":"RPL13","description":null,"idgFamily":"Non-IDG","idgTDL":"Tbio","novelty":-1.5533149867260796,"antibodyCount":96,"monoclonalCount":12,"pubmedCount":null,"jensenScore":34.990386,"patentCount":null,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":26,"knowledgeAvailability":42.694659989651264,"pubTatorScore":1.2968218808842387,"self":"https://pharos.nih.gov/idg/api/v1/targets(3859)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":428,"href":"https://pharos.nih.gov/idg/api/v1/targets(3859)/properties"},"_links":{"count":1157,"href":"https://pharos.nih.gov/idg/api/v1/targets(3859)/links"},"_synonyms":{"count":125,"href":"https://pharos.nih.gov/idg/api/v1/targets(3859)/synonyms"},"_publications":{"count":38,"href":"https://pharos.nih.gov/idg/api/v1/targets(3859)/publications"},"_namespace":null},{"id":3860,"version":2,"created":1554881225000,"modified":1554881227000,"deprecated":false,"name":"39S ribosomal protein L1, mitochondrial","accession":"Q9BYD6","gene":"MRPL1","description":null,"idgFamily":"Non-IDG","idgTDL":"Tdark","novelty":-0.7444817778719438,"antibodyCount":128,"monoclonalCount":12,"pubmedCount":null,"jensenScore":4.180123,"patentCount":null,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":null,"knowledgeAvailability":32.11503667096846,"pubTatorScore":0.08184901334835865,"self":"https://pharos.nih.gov/idg/api/v1/targets(3860)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":372,"href":"https://pharos.nih.gov/idg/api/v1/targets(3860)/properties"},"_links":{"count":1032,"href":"https://pharos.nih.gov/idg/api/v1/targets(3860)/links"},"_synonyms":{"count":94,"href":"https://pharos.nih.gov/idg/api/v1/targets(3860)/synonyms"},"_publications":{"count":20,"href":"https://pharos.nih.gov/idg/api/v1/targets(3860)/publications"},"_namespace":null},{"id":3861,"version":2,"created":1554881228000,"modified":1554881232000,"deprecated":false,"name":"Nuclear factor 1 A-type","accession":"Q12857","gene":"NFIA","description":"Recognizes and binds the palindromic sequence 5'-TTGGCNNNNNGCCAA-3' present in viral and cellular promoters and in the origin of replication of adenovirus type 2. 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May also be involved in the assembly of the 'E' complex.","idgFamily":"Non-IDG","idgTDL":"Tbio","novelty":-1.295176590782753,"antibodyCount":78,"monoclonalCount":11,"pubmedCount":null,"jensenScore":20.117023,"patentCount":null,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":2,"knowledgeAvailability":39.122804151794085,"pubTatorScore":0.9540981066472801,"self":"https://pharos.nih.gov/idg/api/v1/targets(3887)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":440,"href":"https://pharos.nih.gov/idg/api/v1/targets(3887)/properties"},"_links":{"count":1146,"href":"https://pharos.nih.gov/idg/api/v1/targets(3887)/links"},"_synonyms":{"count":90,"href":"https://pharos.nih.gov/idg/api/v1/targets(3887)/synonyms"},"_publications":{"count":46,"href":"https://pharos.nih.gov/idg/api/v1/targets(3887)/publications"},"_namespace":null},{"id":3888,"version":3,"created":1554881398000,"modified":1555035080000,"deprecated":false,"name":"Splicing factor, suppressor of white-apricot homolog","accession":"Q12872","gene":"SFSWAP","description":"Plays a role as an alternative splicing regulator. Regulate its own expression at the level of RNA processing. Also regulates the splicing of fibronectin and CD45 genes. May act, at least in part, by interaction with other R/S-containing splicing factors. Represses the splicing of MAPT/Tau exon 10.","idgFamily":"Non-IDG","idgTDL":"Tdark","novelty":-0.3979400086720376,"antibodyCount":147,"monoclonalCount":0,"pubmedCount":null,"jensenScore":2.818507,"patentCount":null,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":9,"knowledgeAvailability":40.46794380182579,"pubTatorScore":1.2409650483752852,"self":"https://pharos.nih.gov/idg/api/v1/targets(3888)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":400,"href":"https://pharos.nih.gov/idg/api/v1/targets(3888)/properties"},"_links":{"count":1037,"href":"https://pharos.nih.gov/idg/api/v1/targets(3888)/links"},"_synonyms":{"count":98,"href":"https://pharos.nih.gov/idg/api/v1/targets(3888)/synonyms"},"_publications":{"count":21,"href":"https://pharos.nih.gov/idg/api/v1/targets(3888)/publications"},"_namespace":null},{"id":3889,"version":2,"created":1554881401000,"modified":1554881404000,"deprecated":false,"name":"Ral GTPase-activating protein subunit alpha-1","accession":"Q6GYQ0","gene":"RALGAPA1","description":"Catalytic subunit of the heterodimeric RalGAP1 complex which acts as a GTPase activator for the Ras-like small GTPases RALA and RALB.","idgFamily":"Enzyme","idgTDL":"Tbio","novelty":-1.56324247486823,"antibodyCount":56,"monoclonalCount":12,"pubmedCount":null,"jensenScore":36.816583,"patentCount":null,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":null,"knowledgeAvailability":35.06571876803404,"pubTatorScore":1.0380900628690395,"self":"https://pharos.nih.gov/idg/api/v1/targets(3889)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":350,"href":"https://pharos.nih.gov/idg/api/v1/targets(3889)/properties"},"_links":{"count":1006,"href":"https://pharos.nih.gov/idg/api/v1/targets(3889)/links"},"_synonyms":{"count":126,"href":"https://pharos.nih.gov/idg/api/v1/targets(3889)/synonyms"},"_publications":{"count":25,"href":"https://pharos.nih.gov/idg/api/v1/targets(3889)/publications"},"_namespace":null},{"id":3890,"version":2,"created":1554881405000,"modified":1554881408000,"deprecated":false,"name":"Telomere repeats-binding bouquet formation protein 1","accession":"Q8NA31","gene":"TERB1","description":"Meiosis-specific telomere-associated protein involved in meiotic telomere attachment to the nucleus inner membrane, a crucial step for homologous pairing and synapsis. Component of the MAJIN-TERB1-TERB2 complex, which promotes telomere cap exchange by mediating attachment of telomeric DNA to the inner nuclear membrane and replacement of the protective cap of telomeric chromosomes: in early meiosis, the MAJIN-TERB1-TERB2 complex associates with telomeric DNA and the shelterin/telosome complex. During prophase, the complex matures and promotes release of the shelterin/telosome complex from telomeric DNA. In the MAJIN-TERB1-TERB2 complex, TERB1 probably mediates association with the shelterin/telosome complex via interaction with TERF1, promoting priming telomeric DNA attachment'. Promotes telomere association with the nuclear envelope and deposition of the SUN-KASH/LINC complex. Also recruits cohesin to telomeres to develop structural rigidity.","idgFamily":"Transcription Factor","idgTDL":"Tdark","novelty":-0.45229766665168547,"antibodyCount":26,"monoclonalCount":0,"pubmedCount":null,"jensenScore":3.562467,"patentCount":null,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":null,"knowledgeAvailability":0.0,"pubTatorScore":null,"self":"https://pharos.nih.gov/idg/api/v1/targets(3890)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":218,"href":"https://pharos.nih.gov/idg/api/v1/targets(3890)/properties"},"_links":{"count":712,"href":"https://pharos.nih.gov/idg/api/v1/targets(3890)/links"},"_synonyms":{"count":81,"href":"https://pharos.nih.gov/idg/api/v1/targets(3890)/synonyms"},"_publications":{"count":5,"href":"https://pharos.nih.gov/idg/api/v1/targets(3890)/publications"},"_namespace":null},{"id":3891,"version":3,"created":1554881408000,"modified":1555035083000,"deprecated":false,"name":"Glutamate receptor ionotropic, NMDA 2A","accession":"Q12879","gene":"GRIN2A","description":"Component of NMDA receptor complexes that function as heterotetrameric, ligand-gated ion channels with high calcium permeability and voltage-dependent sensitivity to magnesium. Channel activation requires binding of the neurotransmitter glutamate to the epsilon subunit, glycine binding to the zeta subunit, plus membrane depolarization to eliminate channel inhibition by Mg(2+) (PubMed:8768735, PubMed:26919761, PubMed:26875626, PubMed:28105280). Sensitivity to glutamate and channel kinetics depend on the subunit composition; channels containing GRIN1 and GRIN2A have higher sensitivity to glutamate and faster kinetics than channels formed by GRIN1 and GRIN2B (PubMed:26919761, PubMed:26875626). Contributes to the slow phase of excitatory postsynaptic current, long-term synaptic potentiation, and learning (By similarity).","idgFamily":"Ion Channel","idgTDL":"Tclin","novelty":-3.0982801998050182,"antibodyCount":555,"monoclonalCount":164,"pubmedCount":null,"jensenScore":1158.102031,"patentCount":14768,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":33,"knowledgeAvailability":51.94187303312502,"pubTatorScore":2.6031651262019975,"self":"https://pharos.nih.gov/idg/api/v1/targets(3891)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":558,"href":"https://pharos.nih.gov/idg/api/v1/targets(3891)/properties"},"_links":{"count":1005,"href":"https://pharos.nih.gov/idg/api/v1/targets(3891)/links"},"_synonyms":{"count":173,"href":"https://pharos.nih.gov/idg/api/v1/targets(3891)/synonyms"},"_publications":{"count":171,"href":"https://pharos.nih.gov/idg/api/v1/targets(3891)/publications"},"_namespace":null},{"id":3892,"version":2,"created":1554881416000,"modified":1554881418000,"deprecated":false,"name":"Tripartite motif-containing protein 34","accession":"Q9BYJ4","gene":"TRIM34","description":"May function as antiviral protein and may contribute to the defense against retroviral infections.","idgFamily":"Non-IDG","idgTDL":"Tbio","novelty":-1.2018520875422818,"antibodyCount":78,"monoclonalCount":4,"pubmedCount":null,"jensenScore":9.984038,"patentCount":null,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":null,"knowledgeAvailability":21.164050739322487,"pubTatorScore":0.2632413558119412,"self":"https://pharos.nih.gov/idg/api/v1/targets(3892)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":236,"href":"https://pharos.nih.gov/idg/api/v1/targets(3892)/properties"},"_links":{"count":727,"href":"https://pharos.nih.gov/idg/api/v1/targets(3892)/links"},"_synonyms":{"count":105,"href":"https://pharos.nih.gov/idg/api/v1/targets(3892)/synonyms"},"_publications":{"count":13,"href":"https://pharos.nih.gov/idg/api/v1/targets(3892)/publications"},"_namespace":null},{"id":3893,"version":2,"created":1554881419000,"modified":1554881421000,"deprecated":false,"name":"Sodium-dependent lysophosphatidylcholine symporter 1","accession":"Q8NA29","gene":"MFSD2A","description":"Sodium-dependent lysophosphatidylcholine (LPC) symporter, which plays an essential role for blood-brain barrier formation and function (By similarity). Specifically expressed in endothelium of the blood-brain barrier of micro-vessels and transports LPC into the brain (By similarity). Transport of LPC is essential because it constitutes the major mechanism by which docosahexaenoic acid (DHA), an omega-3 fatty acid that is essential for normal brain growth and cognitive function, enters the brain (PubMed:26005868). Transports LPC carrying long-chain fatty acids such LPC oleate and LPC palmitate with a minimum acyl chain length of 14 carbons (By similarity). Does not transport docosahexaenoic acid in unesterified fatty acid (By similarity). Specifically required for blood-brain barrier formation and function, probably by mediating lipid transport (By similarity). Not required for central nervous system vascular morphogenesis (By similarity). Acts as a transporter for tunicamycin, an inhibitor of asparagine-linked glycosylation (PubMed:21677192). In placenta, acts as a receptor for ERVFRD-1/syncytin-2 and is required for trophoblast fusion (PubMed:18988732, PubMed:23177091).","idgFamily":"Non-IDG","idgTDL":"Tbio","novelty":-1.4017514413102814,"antibodyCount":73,"monoclonalCount":2,"pubmedCount":null,"jensenScore":26.333181,"patentCount":null,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":null,"knowledgeAvailability":34.08957126560373,"pubTatorScore":1.562670393734591,"self":"https://pharos.nih.gov/idg/api/v1/targets(3893)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":288,"href":"https://pharos.nih.gov/idg/api/v1/targets(3893)/properties"},"_links":{"count":921,"href":"https://pharos.nih.gov/idg/api/v1/targets(3893)/links"},"_synonyms":{"count":97,"href":"https://pharos.nih.gov/idg/api/v1/targets(3893)/synonyms"},"_publications":{"count":26,"href":"https://pharos.nih.gov/idg/api/v1/targets(3893)/publications"},"_namespace":null},{"id":3894,"version":3,"created":1554881422000,"modified":1555035084000,"deprecated":false,"name":"YTH domain-containing family protein 1","accession":"Q9BYJ9","gene":"YTHDF1","description":"Specifically recognizes and binds N6-methyladenosine (m6A)-containing mRNAs, and promotes mRNA translation efficiency (PubMed:24284625, PubMed:26046440, PubMed:26318451). M6A is a modification present at internal sites of mRNAs and some non-coding RNAs and plays a role in the efficiency of mRNA splicing, processing and stability (PubMed:24284625). Acts as a regulator of mRNA translation efficiency: promotes ribosome loading to m6A-containing mRNAs and interacts with translation initiation factors eIF3 (EIF3A or EIF3B) to facilitate translation initiation (PubMed:26046440).","idgFamily":"Non-IDG","idgTDL":"Tbio","novelty":-0.7648519040170976,"antibodyCount":78,"monoclonalCount":2,"pubmedCount":null,"jensenScore":3.255195,"patentCount":null,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":3,"knowledgeAvailability":30.36241041882738,"pubTatorScore":-0.07918141976545234,"self":"https://pharos.nih.gov/idg/api/v1/targets(3894)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":263,"href":"https://pharos.nih.gov/idg/api/v1/targets(3894)/properties"},"_links":{"count":929,"href":"https://pharos.nih.gov/idg/api/v1/targets(3894)/links"},"_synonyms":{"count":88,"href":"https://pharos.nih.gov/idg/api/v1/targets(3894)/synonyms"},"_publications":{"count":23,"href":"https://pharos.nih.gov/idg/api/v1/targets(3894)/publications"},"_namespace":null},{"id":3895,"version":3,"created":1554881425000,"modified":1555035086000,"deprecated":false,"name":"Hydroperoxide isomerase ALOXE3","accession":"Q9BYJ1","gene":"ALOXE3","description":"Non-heme iron-containing lipoxygenase which is atypical in that it displays a prominent hydroperoxide isomerase activity and a reduced dioxygenase activity compared to other lipoxygenases. The hydroperoxide isomerase activity catalyzes the isomerization of hydroperoxides, derived from arachidonic and linoleic acid by ALOX12B, into hepoxilin-type epoxyalcohols. The dioxygenase activity requires a step of activation of the enzyme by molecular oxygen. In presence of oxygen, oxygenates polyunsaturated fatty acids, including arachidonic acid, to produce fatty acid hydroperoxides. In the skin, acts downstream of ALOX12B on the linoleate moiety of esterified omega-hydroxyacyl-sphingosine (EOS) ceramides to produce an epoxy-ketone derivative, a crucial step in the conjugation of omega-hydroxyceramide to membrane proteins. Therefore plays a crucial role in the synthesis of corneocytes lipid envelope and the establishment of the skin barrier to water loss. In parallel, it may have a signaling function in barrier formation through the production of hepoxilins metabolites. Plays also a role in adipocyte differentiation through hepoxilin A3 and hepoxilin B3 production which in turn activate PPARG. Through the production of hepoxilins in the spinal cord, it may regulate inflammatory tactile allodynia.","idgFamily":"Enzyme","idgTDL":"Tbio","novelty":-1.511199213168452,"antibodyCount":118,"monoclonalCount":2,"pubmedCount":null,"jensenScore":32.190304,"patentCount":null,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":9,"knowledgeAvailability":31.75114930771382,"pubTatorScore":1.3855566039117873,"self":"https://pharos.nih.gov/idg/api/v1/targets(3895)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":257,"href":"https://pharos.nih.gov/idg/api/v1/targets(3895)/properties"},"_links":{"count":824,"href":"https://pharos.nih.gov/idg/api/v1/targets(3895)/links"},"_synonyms":{"count":117,"href":"https://pharos.nih.gov/idg/api/v1/targets(3895)/synonyms"},"_publications":{"count":27,"href":"https://pharos.nih.gov/idg/api/v1/targets(3895)/publications"},"_namespace":null},{"id":3896,"version":2,"created":1554881428000,"modified":1554881430000,"deprecated":false,"name":"Fibroblast growth factor-binding protein 2","accession":"Q9BYJ0","gene":"FGFBP2","description":null,"idgFamily":"Non-IDG","idgTDL":"Tbio","novelty":-0.8021720520296401,"antibodyCount":63,"monoclonalCount":4,"pubmedCount":null,"jensenScore":7.36045,"patentCount":null,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":null,"knowledgeAvailability":13.524781665224467,"pubTatorScore":0.9022941192927291,"self":"https://pharos.nih.gov/idg/api/v1/targets(3896)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":186,"href":"https://pharos.nih.gov/idg/api/v1/targets(3896)/properties"},"_links":{"count":761,"href":"https://pharos.nih.gov/idg/api/v1/targets(3896)/links"},"_synonyms":{"count":63,"href":"https://pharos.nih.gov/idg/api/v1/targets(3896)/synonyms"},"_publications":{"count":10,"href":"https://pharos.nih.gov/idg/api/v1/targets(3896)/publications"},"_namespace":null},{"id":3897,"version":2,"created":1554881430000,"modified":1554881460000,"deprecated":false,"name":"Prolyl endopeptidase FAP","accession":"Q12884","gene":"FAP","description":"Cell surface glycoprotein serine protease that participates in extracellular matrix degradation and involved in many cellular processes including tissue remodeling, fibrosis, wound healing, inflammation and tumor growth. Both plasma membrane and soluble forms exhibit post-proline cleaving endopeptidase activity, with a marked preference for Ala/Ser-Gly-Pro-Ser/Asn/Ala consensus sequences, on substrate such as alpha-2-antiplasmin SERPINF2 and SPRY2 (PubMed:14751930, PubMed:16223769, PubMed:16480718, PubMed:16410248, PubMed:17381073, PubMed:18095711, PubMed:21288888, PubMed:24371721). Degrade also gelatin, heat-denatured type I collagen, but not native collagen type I and IV, vibronectin, tenascin, laminin, fibronectin, fibrin or casein (PubMed:9065413, PubMed:2172980, PubMed:7923219, PubMed:10347120, PubMed:10455171, PubMed:12376466, PubMed:16223769, PubMed:16651416, PubMed:18095711). Have also dipeptidyl peptidase activity, exhibiting the ability to hydrolyze the prolyl bond two residues from the N-terminus of synthetic dipeptide substrates provided that the penultimate residue is proline, with a preference for Ala-Pro, Ile-Pro, Gly-Pro, Arg-Pro and Pro-Pro (PubMed:10347120, PubMed:10593948, PubMed:16175601, PubMed:16223769, PubMed:16651416, PubMed:16410248, PubMed:17381073, PubMed:21314817, PubMed:24371721, PubMed:24717288). Natural neuropeptide hormones for dipeptidyl peptidase are the neuropeptide Y (NPY), peptide YY (PYY), substance P (TAC1) and brain natriuretic peptide 32 (NPPB) (PubMed:21314817). The plasma membrane form, in association with either DPP4, PLAUR or integrins, is involved in the pericellular proteolysis of the extracellular matrix (ECM), and hence promotes cell adhesion, migration and invasion through the ECM. Plays a role in tissue remodeling during development and wound healing. Participates in the cell invasiveness towards the ECM in malignant melanoma cancers. Enhances tumor growth progression by increasing angiogenesis, collagen fiber degradation and apoptosis and by reducing antitumor response of the immune system. Promotes glioma cell invasion through the brain parenchyma by degrading the proteoglycan brevican. Acts as a tumor suppressor in melanocytic cells through regulation of cell proliferation and survival in a serine protease activity-independent manner.","idgFamily":"Enzyme","idgTDL":"Tchem","novelty":-2.3768644682926006,"antibodyCount":406,"monoclonalCount":70,"pubmedCount":null,"jensenScore":226.211055,"patentCount":null,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":null,"knowledgeAvailability":34.204481222187184,"pubTatorScore":2.4180636158279176,"self":"https://pharos.nih.gov/idg/api/v1/targets(3897)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":465,"href":"https://pharos.nih.gov/idg/api/v1/targets(3897)/properties"},"_links":{"count":1132,"href":"https://pharos.nih.gov/idg/api/v1/targets(3897)/links"},"_synonyms":{"count":100,"href":"https://pharos.nih.gov/idg/api/v1/targets(3897)/synonyms"},"_publications":{"count":121,"href":"https://pharos.nih.gov/idg/api/v1/targets(3897)/publications"},"_namespace":null},{"id":3898,"version":2,"created":1554881461000,"modified":1554881469000,"deprecated":false,"name":"Dihydropyrimidine dehydrogenase [NADP(+)]","accession":"Q12882","gene":"DPYD","description":"Involved in pyrimidine base degradation. Catalyzes the reduction of uracil and thymine. Also involved the degradation of the chemotherapeutic drug 5-fluorouracil.","idgFamily":"Enzyme","idgTDL":"Tclin","novelty":-2.6243181003406253,"antibodyCount":159,"monoclonalCount":28,"pubmedCount":null,"jensenScore":395.040854,"patentCount":null,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":null,"knowledgeAvailability":48.82179117493261,"pubTatorScore":2.9352470056604907,"self":"https://pharos.nih.gov/idg/api/v1/targets(3898)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":528,"href":"https://pharos.nih.gov/idg/api/v1/targets(3898)/properties"},"_links":{"count":1197,"href":"https://pharos.nih.gov/idg/api/v1/targets(3898)/links"},"_synonyms":{"count":152,"href":"https://pharos.nih.gov/idg/api/v1/targets(3898)/synonyms"},"_publications":{"count":217,"href":"https://pharos.nih.gov/idg/api/v1/targets(3898)/publications"},"_namespace":null},{"id":3899,"version":2,"created":1554881471000,"modified":1554881472000,"deprecated":false,"name":"Aminopeptidase Q","accession":"Q6Q4G3","gene":"LVRN","description":"Metalloprotease which may be important for placentation by regulating biological activity of key peptides at the embryo-maternal interface. On synthetic substrates it shows a marked preference for Leu-4-methylcoumaryl-7-amide (Leu-MCA) over Met-MCA, Arg-LCA and Lys-LCA. Cleaves the N-terminal amino acid of several peptides such as angiotensin-3, kisspeptin-10 and endokinin C.","idgFamily":"Enzyme","idgTDL":"Tbio","novelty":-1.9310783172933055,"antibodyCount":15,"monoclonalCount":1,"pubmedCount":null,"jensenScore":81.302588,"patentCount":null,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":null,"knowledgeAvailability":22.687432273123182,"pubTatorScore":1.1865207778526312,"self":"https://pharos.nih.gov/idg/api/v1/targets(3899)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":208,"href":"https://pharos.nih.gov/idg/api/v1/targets(3899)/properties"},"_links":{"count":773,"href":"https://pharos.nih.gov/idg/api/v1/targets(3899)/links"},"_synonyms":{"count":100,"href":"https://pharos.nih.gov/idg/api/v1/targets(3899)/synonyms"},"_publications":{"count":16,"href":"https://pharos.nih.gov/idg/api/v1/targets(3899)/publications"},"_namespace":null},{"id":3900,"version":2,"created":1554881473000,"modified":1554881478000,"deprecated":false,"name":"TP53-binding protein 1","accession":"Q12888","gene":"TP53BP1","description":"Double-strand break (DSB) repair protein involved in response to DNA damage, telomere dynamics and class-switch recombination (CSR) during antibody genesis (PubMed:12364621, PubMed:22553214, PubMed:23333306, PubMed:17190600, PubMed:21144835, PubMed:28241136). Plays a key role in the repair of double-strand DNA breaks (DSBs) in response to DNA damage by promoting non-homologous end joining (NHEJ)-mediated repair of DSBs and specifically counteracting the function of the homologous recombination (HR) repair protein BRCA1 (PubMed:22553214, PubMed:23727112, PubMed:23333306). In response to DSBs, phosphorylation by ATM promotes interaction with RIF1 and dissociation from NUDT16L1/TIRR, leading to recruitment to DSBs sites (PubMed:28241136). Recruited to DSBs sites by recognizing and binding histone H2A monoubiquitinated at 'Lys-15' (H2AK15Ub) and histone H4 dimethylated at 'Lys-20' (H4K20me2), two histone marks that are present at DSBs sites (PubMed:23760478, PubMed:28241136, PubMed:17190600). Required for immunoglobulin class-switch recombination (CSR) during antibody genesis, a process that involves the generation of DNA DSBs (PubMed:23345425). Participates to the repair and the orientation of the broken DNA ends during CSR (By similarity). In contrast, it is not required for classic NHEJ and V(D)J recombination (By similarity). Promotes NHEJ of dysfunctional telomeres via interaction with PAXIP1 (PubMed:23727112).","idgFamily":"Epigenetic","idgTDL":"Tbio","novelty":-2.694850775022812,"antibodyCount":577,"monoclonalCount":104,"pubmedCount":null,"jensenScore":464.845443,"patentCount":null,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":null,"knowledgeAvailability":53.04183098347208,"pubTatorScore":2.4859846370241807,"self":"https://pharos.nih.gov/idg/api/v1/targets(3900)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":689,"href":"https://pharos.nih.gov/idg/api/v1/targets(3900)/properties"},"_links":{"count":1363,"href":"https://pharos.nih.gov/idg/api/v1/targets(3900)/links"},"_synonyms":{"count":182,"href":"https://pharos.nih.gov/idg/api/v1/targets(3900)/synonyms"},"_publications":{"count":232,"href":"https://pharos.nih.gov/idg/api/v1/targets(3900)/publications"},"_namespace":null},{"id":3901,"version":3,"created":1554881479000,"modified":1555035087000,"deprecated":false,"name":"Radial spoke head protein 4 homolog A","accession":"Q5TD94","gene":"RSPH4A","description":"Probable component of the axonemal radial spoke head. Radial spokes are regularly spaced along cilia, sperm and flagella axonemes. 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May also have a role in the beta-catenin/Lef signaling pathway (Probable).","idgFamily":"Non-IDG","idgTDL":"Tbio","novelty":-0.9530920424361135,"antibodyCount":51,"monoclonalCount":2,"pubmedCount":null,"jensenScore":9.494372,"patentCount":null,"grantCount":null,"grantTotalCost":null,"r01Count":null,"ppiCount":4,"knowledgeAvailability":32.708085849395026,"pubTatorScore":1.136984645678016,"self":"https://pharos.nih.gov/idg/api/v1/targets(3911)?view=full","kind":"ix.idg.models.Target","_organism":null,"_properties":{"count":354,"href":"https://pharos.nih.gov/idg/api/v1/targets(3911)/properties"},"_links":{"count":965,"href":"https://pharos.nih.gov/idg/api/v1/targets(3911)/links"},"_synonyms":{"count":103,"href":"https://pharos.nih.gov/idg/api/v1/targets(3911)/synonyms"},"_publications":{"count":23,"href":"https://pharos.nih.gov/idg/api/v1/targets(3911)/publications"},"_namespace":null},{"id":3912,"version":3,"created":1554881614000,"modified":1555035108000,"deprecated":false,"name":"Four and a half LIM domains protein 5","accession":"Q5TD97","gene":"FHL5","description":"May be involved in the regulation of spermatogenesis. 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