ID A0A3B3ISX9_HUMAN Unreviewed; 4491 AA. AC A0A3B3ISX9; DT 05-DEC-2018, integrated into UniProtKB/TrEMBL. DT 05-DEC-2018, sequence version 1. DT 13-FEB-2019, entry version 3. DE SubName: Full=Tenascin-X {ECO:0000313|Ensembl:ENSP00000497649}; GN Name=TNXB {ECO:0000313|Ensembl:ENSP00000497649}; OS Homo sapiens (Human). OC Eukaryota; Metazoa; Chordata; Craniata; Vertebrata; Euteleostomi; OC Mammalia; Eutheria; Euarchontoglires; Primates; Haplorrhini; OC Catarrhini; Hominidae; Homo. OX NCBI_TaxID=9606 {ECO:0000313|Ensembl:ENSP00000497649, ECO:0000313|Proteomes:UP000005640}; RN [1] {ECO:0000313|Ensembl:ENSP00000497649, ECO:0000313|Proteomes:UP000005640} RP NUCLEOTIDE SEQUENCE [LARGE SCALE GENOMIC DNA]. RX PubMed=14574404; DOI=10.1038/nature02055; RA Mungall A.J., Palmer S.A., Sims S.K., Edwards C.A., Ashurst J.L., RA Wilming L., Jones M.C., Horton R., Hunt S.E., Scott C.E., RA Gilbert J.G.R., Clamp M.E., Bethel G., Milne S., Ainscough R., RA Almeida J.P., Ambrose K.D., Andrews T.D., Ashwell R.I.S., RA Babbage A.K., Bagguley C.L., Bailey J., Banerjee R., Barker D.J., RA Barlow K.F., Bates K., Beare D.M., Beasley H., Beasley O., Bird C.P., RA Blakey S.E., Bray-Allen S., Brook J., Brown A.J., Brown J.Y., RA Burford D.C., Burrill W., Burton J., Carder C., Carter N.P., RA Chapman J.C., Clark S.Y., Clark G., Clee C.M., Clegg S., Cobley V., RA Collier R.E., Collins J.E., Colman L.K., Corby N.R., Coville G.J., RA Culley K.M., Dhami P., Davies J., Dunn M., Earthrowl M.E., RA Ellington A.E., Evans K.A., Faulkner L., Francis M.D., Frankish A., RA Frankland J., French L., Garner P., Garnett J., Ghori M.J., RA Gilby L.M., Gillson C.J., Glithero R.J., Grafham D.V., Grant M., RA Gribble S., Griffiths C., Griffiths M.N.D., Hall R., Halls K.S., RA Hammond S., Harley J.L., Hart E.A., Heath P.D., Heathcott R., RA Holmes S.J., Howden P.J., Howe K.L., Howell G.R., Huckle E., RA Humphray S.J., Humphries M.D., Hunt A.R., Johnson C.M., Joy A.A., RA Kay M., Keenan S.J., Kimberley A.M., King A., Laird G.K., Langford C., RA Lawlor S., Leongamornlert D.A., Leversha M., Lloyd C.R., Lloyd D.M., RA Loveland J.E., Lovell J., Martin S., Mashreghi-Mohammadi M., RA Maslen G.L., Matthews L., McCann O.T., McLaren S.J., McLay K., RA McMurray A., Moore M.J.F., Mullikin J.C., Niblett D., Nickerson T., RA Novik K.L., Oliver K., Overton-Larty E.K., Parker A., Patel R., RA Pearce A.V., Peck A.I., Phillimore B.J.C.T., Phillips S., Plumb R.W., RA Porter K.M., Ramsey Y., Ranby S.A., Rice C.M., Ross M.T., Searle S.M., RA Sehra H.K., Sheridan E., Skuce C.D., Smith S., Smith M., Spraggon L., RA Squares S.L., Steward C.A., Sycamore N., Tamlyn-Hall G., Tester J., RA Theaker A.J., Thomas D.W., Thorpe A., Tracey A., Tromans A., Tubby B., RA Wall M., Wallis J.M., West A.P., White S.S., Whitehead S.L., RA Whittaker H., Wild A., Willey D.J., Wilmer T.E., Wood J.M., Wray P.W., RA Wyatt J.C., Young L., Younger R.M., Bentley D.R., Coulson A., RA Durbin R., Hubbard T., Sulston J.E., Dunham I., Rogers J., Beck S.; RT "The DNA sequence and analysis of human chromosome 6."; RL Nature 425:805-811(2003). RN [2] {ECO:0000213|PubMed:24275569} RP IDENTIFICATION BY MASS SPECTROMETRY [LARGE SCALE ANALYSIS]. RX PubMed=24275569; DOI=10.1016/j.jprot.2013.11.014; RA Bian Y., Song C., Cheng K., Dong M., Wang F., Huang J., Sun D., RA Wang L., Ye M., Zou H.; RT "An enzyme assisted RP-RPLC approach for in-depth analysis of human RT liver phosphoproteome."; RL J. Proteomics 96:253-262(2014). RN [3] {ECO:0000313|Ensembl:ENSP00000497649} RP IDENTIFICATION. RG Ensembl; RL Submitted (OCT-2018) to UniProtKB. CC -!- CAUTION: Lacks conserved residue(s) required for the propagation CC of feature annotation. {ECO:0000256|PROSITE-ProRule:PRU00076}. CC ----------------------------------------------------------------------- CC Copyrighted by the UniProt Consortium, see https://www.uniprot.org/terms CC Distributed under the Creative Commons Attribution (CC BY 4.0) License CC ----------------------------------------------------------------------- DR EMBL; AL645922; -; NOT_ANNOTATED_CDS; Genomic_DNA. DR EMBL; AL662884; -; NOT_ANNOTATED_CDS; Genomic_DNA. DR EMBL; AL772248; -; NOT_ANNOTATED_CDS; Genomic_DNA. DR Ensembl; ENST00000647633; ENSP00000497649; ENSG00000168477. DR HGNC; HGNC:11976; TNXB. DR OpenTargets; ENSG00000168477; -. DR GeneTree; ENSGT00940000155565; -. DR Proteomes; UP000005640; Chromosome 6. DR GO; GO:0062023; C:collagen-containing extracellular matrix; IEA:InterPro. DR GO; GO:0030199; P:collagen fibril organization; IEA:InterPro. DR CDD; cd00063; FN3; 31. DR CDD; cd00087; FReD; 1. DR Gene3D; 2.60.40.10; -; 32. DR InterPro; IPR013032; EGF-like_CS. DR InterPro; IPR000742; EGF-like_dom. DR InterPro; IPR013111; EGF_extracell. DR InterPro; IPR036056; Fibrinogen-like_C. DR InterPro; IPR002181; Fibrinogen_a/b/g_C_dom. DR InterPro; IPR020837; Fibrinogen_CS. DR InterPro; IPR003961; FN3_dom. DR InterPro; IPR036116; FN3_sf. DR InterPro; IPR013783; Ig-like_fold. DR InterPro; IPR033081; TNX. DR PANTHER; PTHR19143:SF244; PTHR19143:SF244; 20. DR Pfam; PF07974; EGF_2; 2. DR Pfam; PF00147; Fibrinogen_C; 1. DR Pfam; PF00041; fn3; 32. DR SMART; SM00181; EGF; 18. DR SMART; SM00186; FBG; 1. DR SMART; SM00060; FN3; 33. DR SUPFAM; SSF49265; SSF49265; 30. DR SUPFAM; SSF56496; SSF56496; 1. DR PROSITE; PS00022; EGF_1; 6. DR PROSITE; PS01186; EGF_2; 6. DR PROSITE; PS50026; EGF_3; 8. DR PROSITE; PS00514; FIBRINOGEN_C_1; 1. DR PROSITE; PS51406; FIBRINOGEN_C_2; 1. DR PROSITE; PS50853; FN3; 33. PE 1: Evidence at protein level; KW Coiled coil {ECO:0000256|SAM:Coils}; KW Complete proteome {ECO:0000313|Proteomes:UP000005640}; KW Disulfide bond {ECO:0000256|PROSITE-ProRule:PRU00076, KW ECO:0000256|SAAS:SAAS00730685}; KW EGF-like domain {ECO:0000256|PROSITE-ProRule:PRU00076}; KW Proteomics identification {ECO:0000213|MaxQB:A0A3B3ISX9, KW ECO:0000213|PeptideAtlas:A0A3B3ISX9}; KW Reference proteome {ECO:0000313|Proteomes:UP000005640}; KW Signal {ECO:0000256|SAM:SignalP}. FT SIGNAL 1 23 {ECO:0000256|SAM:SignalP}. FT CHAIN 24 4491 {ECO:0000256|SAM:SignalP}. FT /FTId=PRO_5017314822. FT DOMAIN 214 245 EGF-like. {ECO:0000259|PROSITE:PS50026}. FT DOMAIN 276 307 EGF-like. {ECO:0000259|PROSITE:PS50026}. FT DOMAIN 338 369 EGF-like. {ECO:0000259|PROSITE:PS50026}. FT DOMAIN 400 431 EGF-like. {ECO:0000259|PROSITE:PS50026}. FT DOMAIN 462 493 EGF-like. {ECO:0000259|PROSITE:PS50026}. FT DOMAIN 524 555 EGF-like. {ECO:0000259|PROSITE:PS50026}. FT DOMAIN 617 648 EGF-like. {ECO:0000259|PROSITE:PS50026}. FT DOMAIN 715 746 EGF-like. {ECO:0000259|PROSITE:PS50026}. FT DOMAIN 751 841 Fibronectin type-III. FT {ECO:0000259|PROSITE:PS50853}. FT DOMAIN 842 929 Fibronectin type-III. FT {ECO:0000259|PROSITE:PS50853}. FT DOMAIN 1083 1178 Fibronectin type-III. FT {ECO:0000259|PROSITE:PS50853}. FT DOMAIN 1206 1298 Fibronectin type-III. FT {ECO:0000259|PROSITE:PS50853}. FT DOMAIN 1311 1400 Fibronectin type-III. FT {ECO:0000259|PROSITE:PS50853}. FT DOMAIN 1408 1496 Fibronectin type-III. FT {ECO:0000259|PROSITE:PS50853}. FT DOMAIN 1510 1599 Fibronectin type-III. FT {ECO:0000259|PROSITE:PS50853}. FT DOMAIN 1621 1715 Fibronectin type-III. FT {ECO:0000259|PROSITE:PS50853}. FT DOMAIN 1723 1813 Fibronectin type-III. FT {ECO:0000259|PROSITE:PS50853}. FT DOMAIN 1821 1916 Fibronectin type-III. FT {ECO:0000259|PROSITE:PS50853}. FT DOMAIN 1921 2011 Fibronectin type-III. FT {ECO:0000259|PROSITE:PS50853}. FT DOMAIN 2025 2115 Fibronectin type-III. FT {ECO:0000259|PROSITE:PS50853}. FT DOMAIN 2130 2218 Fibronectin type-III. FT {ECO:0000259|PROSITE:PS50853}. FT DOMAIN 2236 2329 Fibronectin type-III. FT {ECO:0000259|PROSITE:PS50853}. FT DOMAIN 2344 2432 Fibronectin type-III. FT {ECO:0000259|PROSITE:PS50853}. FT DOMAIN 2443 2533 Fibronectin type-III. FT {ECO:0000259|PROSITE:PS50853}. FT DOMAIN 2552 2645 Fibronectin type-III. FT {ECO:0000259|PROSITE:PS50853}. FT DOMAIN 2655 2749 Fibronectin type-III. FT {ECO:0000259|PROSITE:PS50853}. FT DOMAIN 2766 2864 Fibronectin type-III. FT {ECO:0000259|PROSITE:PS50853}. FT DOMAIN 2872 2970 Fibronectin type-III. FT {ECO:0000259|PROSITE:PS50853}. FT DOMAIN 2980 3073 Fibronectin type-III. FT {ECO:0000259|PROSITE:PS50853}. FT DOMAIN 3088 3186 Fibronectin type-III. FT {ECO:0000259|PROSITE:PS50853}. FT DOMAIN 3196 3289 Fibronectin type-III. FT {ECO:0000259|PROSITE:PS50853}. FT DOMAIN 3309 3400 Fibronectin type-III. FT {ECO:0000259|PROSITE:PS50853}. FT DOMAIN 3415 3507 Fibronectin type-III. FT {ECO:0000259|PROSITE:PS50853}. FT DOMAIN 3511 3602 Fibronectin type-III. FT {ECO:0000259|PROSITE:PS50853}. FT DOMAIN 3604 3693 Fibronectin type-III. FT {ECO:0000259|PROSITE:PS50853}. FT DOMAIN 3698 3791 Fibronectin type-III. FT {ECO:0000259|PROSITE:PS50853}. FT DOMAIN 3800 3894 Fibronectin type-III. FT {ECO:0000259|PROSITE:PS50853}. FT DOMAIN 3904 4001 Fibronectin type-III. FT {ECO:0000259|PROSITE:PS50853}. FT DOMAIN 4005 4094 Fibronectin type-III. FT {ECO:0000259|PROSITE:PS50853}. FT DOMAIN 4095 4181 Fibronectin type-III. FT {ECO:0000259|PROSITE:PS50853}. FT DOMAIN 4182 4272 Fibronectin type-III. FT {ECO:0000259|PROSITE:PS50853}. FT DOMAIN 4268 4483 Fibrinogen C-terminal. FT {ECO:0000259|PROSITE:PS51406}. FT COILED 100 120 {ECO:0000256|SAM:Coils}. FT DISULFID 218 228 {ECO:0000256|PROSITE-ProRule:PRU00076}. FT DISULFID 235 244 {ECO:0000256|PROSITE-ProRule:PRU00076}. FT DISULFID 280 290 {ECO:0000256|PROSITE-ProRule:PRU00076}. FT DISULFID 297 306 {ECO:0000256|PROSITE-ProRule:PRU00076}. FT DISULFID 342 352 {ECO:0000256|PROSITE-ProRule:PRU00076}. FT DISULFID 359 368 {ECO:0000256|PROSITE-ProRule:PRU00076}. FT DISULFID 404 414 {ECO:0000256|PROSITE-ProRule:PRU00076}. FT DISULFID 421 430 {ECO:0000256|PROSITE-ProRule:PRU00076}. FT DISULFID 466 476 {ECO:0000256|PROSITE-ProRule:PRU00076}. FT DISULFID 483 492 {ECO:0000256|PROSITE-ProRule:PRU00076}. FT DISULFID 528 538 {ECO:0000256|PROSITE-ProRule:PRU00076}. FT DISULFID 545 554 {ECO:0000256|PROSITE-ProRule:PRU00076}. FT DISULFID 621 631 {ECO:0000256|PROSITE-ProRule:PRU00076}. FT DISULFID 638 647 {ECO:0000256|PROSITE-ProRule:PRU00076}. FT DISULFID 719 729 {ECO:0000256|PROSITE-ProRule:PRU00076}. FT DISULFID 736 745 {ECO:0000256|PROSITE-ProRule:PRU00076}. SQ SEQUENCE 4491 AA; 485423 MW; B719188AA4C7D49C CRC64; MMPAQYALTS SLVLLVLLST ARAGPFSSRS NVTLPAPRPP PQPGGHTVGA GVGSPSSQLY EHTVEGGEKQ VVFTHRINLP PSTGCGCPPG TEPPVLASEV QALRVRLEIL EELVKGLKEQ CTGGCCPASA QAGTGQTDVR TLCSLHGVFD LSRCTCSCEP GWGGPTCSDP TDAEIPPSSP PSASGSCPDD CNDQGRCVRG RCVCFPGYTG PSCGWPSCPG DCQGRGRCVQ GVCVCRAGFS GPDCSQRSCP RGCSQRGRCE GGRCVCDPGY TGDDCGMRSC PRGCSQRGRC ENGRCVCNPG YTGEDCGVRS CPRGCSQRGR CKDGRCVCDP GYTGEDCGTR SCPWDCGEGG RCVDGRCVCW PGYTGEDCST RTCPRDCRGR GRCEDGECIC DTGYSGDDCG VRSCPGDCNQ RGRCEDGRCV CWPGYTGTDC GSRACPRDCR GRGRCENGVC VCNAGYSGED CGVRSCPGDC RGRGRCESGR CMCWPGYTGR DCGTRACPGD CRGRGRCVDG RCVCNPGFTG EDCGSRRCPG DCRGHGLCED GVCVCDAGYS GEDCSTRSCP GGCRGRGQCL DGRCVCEDGY SGEDCGVRQC PNDCSQHGVC QDGVCICWEG YVSEDCSIRT CPSNCHGRGR CEEGRCLCDP GYTGPTCATR MCPADCRGRG RCVQGVCLCH VGYGGEDCGQ EEPPASACPG GCGPRELCRA GQCVCVEGFR GPDCAIQTCP GDCRGRGECH DGSCVCKDGY AGEDCGEEVP TIEGMRMHLL EETTVRTEWT PAPGPVDAYE IQFIPTTEGA SPPFTARVPS SASAYDQRGL APGQEYQVTV RALRGTSWGL PASKTITTMI DGPQDLRVVA VTPTTLELGW LRPQAEVDRF VVSYVSAGNQ RVRLEVPPEA DGTLLTDLMP GVEYVVTVTA ERGRAVSYPA SVRANTAPGH YSYPEVRPPA PPPKSRPRPA PAPRPPRPPW PSRPAEEREE ESPPRPSLSQ PPRRPWGNLT AELSRFRGTV QDLERHLRAH GYPLRANQTY TSVARHIHEY LQRRLLAAAP AGSPAPPPRH PRPTASPDPG TRKRDSNQGI YGLSPEGVDR VAASRHPKPE VLGSSADGAL LVSLDGLRGQ FERVVLRWRP QPPAEGPGGE LTVPGTTRTV SLPDLRPGTT YHVEVHGVRA GQTSKSYAFI TTTGSSPLGL LGTTDEPPPS GPSTTQGAQA PLLQQRPQEL GELRVLGRDE TGRLRVVWTA QPDTFAYFQL RMRVPEGPGA HEEVLPGDVR QALVPPPPPG TPYELSLHGV PPGGKPSDPI IYQGIMDKDE EKPGKSSGPP RLGELTVTDR TSDSLLLRWT VPEGEFDSFV IQYKDRDGQP QVVPVEGPQR SAVITSLDPG RKYKFVLYGF VGKKRHGPLV AEAKILPQSD PSPGTPPHLG NLWVTDPTPD SLHLSWTVPE GQFDTFMVQY RDRDGRPQVV PVEGPERSFV VSSLDPDHKY RFTLFGIANK KRYGPLTADG TTAPERKEEP PRPEFLEQPL LGELTVTGVT PDSLRLSWTV AQGPFDSFMV QYKDAQGQPQ AVPVAGDENE VTVPGLDPDR KYKMNLYGLR GRQRVGPESV VAKTAPQEDV DETPSPTELG TEAPESPEEP LLGELTVTGS SPDSLSLFWT VPQGSFDSFT VQYKDRDGRP RAVRVGGKES EVTVGGLEPG HKYKMHLYGL HEGQRVGPVS AVGVTAPQQE ETPPATESPL EPRLGELTVT DVTPNSVGLS WTVPEGQFDS FIVQYKDKDG QPQVVPVAAD QREVTVYNLE PERKYKMNMY GLHDGQRMGP LSVVIVTAPL PPAPATEASK PPLEPRLGEL TVTDITPDSV GLSWTVPEGE FDSFVVQYKD RDGQPQVVPV AADQREVTIP DLEPSRKYKF LLFGIQDGKR RSPVSVEAKT VARGDASPGA PPRLGELWVT DPTPDSLRLS WTVPEGQFDS FVVQFKDKDG PQVVPVEGHE RSVTVTPLDA GRKYRFLLYG LLGKKRHGPL TADGTTEARS AMDDTGTKRP PKPRLGEELQ VTTVTQNSVG LSWTVPEGQF DSFVVQYKDR DGQPQVVPVE GSLREVSVPG LDPAHRYKLL LYGLHHGKRV GPISAVAITA GREETETETT APTPPAPEPH LGELTVEEAT SHTLHLSWMV TEGEFDSFEI QYTDRDGQLQ MVRIGGDRND ITLSGLESDH RYLVTLYGFS DGKHVGPVHV EALTVPEEEK PSEPPTATPE PPIKPRLGEL TVTDATPDSL SLSWTVPEGQ FDHFLVQYRN GDGQPKAVRV PGHEEGVTIS GLEPDHKYKM NLYGFHGGQR MGPVSVVGVT AAEEETPSPT EPSMEAPEPA EEPLLGELTV TGSSPDSLSL SWTVPQGRFD SFTVQYKDRD GRPQVVRVGG EESEVTVGGL EPGRKYKMHL YGLHEGRRVG PVSAVGVTAP EEESPDAPLA KLRLGQMTVR DITSDSLSLS WTVPEGQFDH FLVQFKNGDG QPKAVRVPGH EDGVTISGLE PDHKYKMNLY GFHGGQRVGP VSAVGLTAPG KDEEMAPAST EPPTPEPPIK PRLEELTVTD ATPDSLSLSW TVPEGQFDHF LVQYKNGDGQ PKATRVPGHE DRVTISGLEP DNKYKMNLYG FHGGQRVGPV SAIGVTAAEE ETPSPTEPSM EAPEPPEEPL LGELTVTGSS PDSLSLSWTV PQGRFDSFTV QYKDRDGRPQ VVRVGGEESE VTVGGLEPGR KYKMHLYGLH EGRRVGPVST VGVTAPQEDV DETPSPTEPG TEAPGPPEEP LLGELTVTGS SPDSLSLSWT VPQGRFDSFT VQYKDRDGRP QAVRVGGQES KVTVRGLEPG RKYKMHLYGL HEGRRLGPVS AVGVTEDEAE TTQAVPTMTP EPPIKPRLGE LTMTDATPDS LSLSWTVPEG QFDHFLVQYR NGDGQPKAVR VPGHEDGVTI SGLEPDHKYK MNLYGFHGGQ RVGPISVIGV TAAEEETPSP TELSTEAPEP PEEPLLGELT VTGSSPDSLS LSWTIPQGHF DSFTVQYKDR DGRPQVMRVR GEESEVTVGG LEPGRKYKMH LYGLHEGRRV GPVSTVGVTA PEDEAETTQA VPTTTPEPPN KPRLGELTVT DATPDSLSLS WMVPEGQFDH FLVQYRNGDG QPKVVRVPGH EDGVTISGLE PDHKYKMNLY GFHGGQRVGP ISVIGVTAAE EETPAPTEPS TEAPEPPEEP LLGELTVTGS SPDSLSLSWT IPQGRFDSFT VQYKDRDGRP QVVRVRGEES EVTVGGLEPG CKYKMHLYGL HEGQRVGPVS AVGVTAPKDE AETTQAVPTM TPEPPIKPRL GELTVTDATP DSLSLSWMVP EGQFDHFLVQ YRNGDGQPKA VRVPGHEDGV TISGLEPDHK YKMNLYGFHG GQRVGPVSAI GVTEEETPSP TEPSTEAPEA PEEPLLGELT VTGSSPDSLS LSWTVPQGRF DSFTVQYKDR DGQPQVVRVR GEESEVTVGG LEPGRKYKMH LYGLHEGQRV GPVSTVGITA PLPTPLPVEP RLGELAVAAV TSDSVGLSWT VAQGPFDSFL VQYRDAQGQP QAVPVSGDLR AVAVSGLDPA RKYKFLLFGL QNGKRHGPVP VEARTAPDTK PSPRLGELTV TDATPDSVGL SWTVPEGEFD SFVVQYKDKD GRLQVVPVAA NQREVTVQGL EPSRKYRFLL YGLSGRKRLG PISADSTTAP LEKELPPHLG ELTVAEETSS SLRLSWTVAQ GPFDSFVVQY RDTDGQPRAV PVAADQRTVT VEDLEPGKKY KFLLYGLLGG KRLGPVSALG MTAPEEDTPA PELAPEAPEP PEEPRLGVLT VTDTTPDSMR LSWSVAQGPF DSFVVQYEDT NGQPQALLVD GDQSKILISG LEPSTPYRFL LYGLHEGKRL GPLSAEGTTG LAPAGQTSEE SRPRLSQLSV TDVTTSSLRL NWEAPPGAFD SFLLRFGVPS PSTLEPHPRP LLQRELMVPG TRHSAVLRDL RSGTLYSLTL YGLRGPHKAD SIQGTARTLS PVLESPRDLQ FSEIRETSAK VNWMPPPSRA DSFKVSYQLA DGGEPQSVQV DGQARTQKLQ GLIPGARYEV TVVSVRGFEE SEPLTGFLTT VPDGPTQLRA LNLTEGFAVL HWKPPQNPVD TYDVQVTAPG APPLQAETPG SAVDYPLHDL VLHTNYTATV RGLRGPNLTS PASITFTTGL EAPRDLEAKE VTPRTALLTW TEPPVRPAGY LLSFHTPGGQ NQEILLPGGI TSHQLLGLFP STSYNARLQA MWGQSLLPPV STSFTTGGLR IPFPRDCGEE MQNGAGASRT STIFLNGNRE RPLNVFCDME TDGGGWLVFQ RRMDGQTDFW RDWEDYAHGF GNISGEFWLG NEALHSLTQA GDYSMRVDLR AGDEAVFAQY DSFHVDSAAE YYRLHLEGYH GTAGDSMSYH SGSVFSARDR DPNSLLISCA VSYRGAWWYR NCHYANLNGL YGSTVDHQGV SWYHWKGFEF SVPFTEMKLR PRNFRSPAGG G //