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TRANSCRIPT CARD

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  1. Clone 'cijv031c09'
  2. Transcript 'Moocul.CG.ELv1_2.S60...'

Transcript Model

Transcript Id

Moocul.CG.ELv1_2.S60205.g03794.01.t

Possible name(s)

HIP1; TLN1; TLN2

Location

S60205 [8,132 / 29,730]

Sequences

Amino acid sequence

Length: 2,596

>Moocul.CG.ELv1_2.S60205.g03794.01.p
MVNLSLKINIVHGNLMKTMQFDPACIVYDACRIIREKVPEAKTRNESAQDFSLFLSDKDP
KKGVWLESRRPLEYYLLRNGDILEYKQKQRPLKIQTLDLSVKTAMIDDSNTVSQLMVTIC
TRLGIVNHEEYSLVRDTPPEDGTGTLKKTSTTNTILRGDADRKFETLKKKLHTDDECKIN
GSVHWLNHGQTLREQGVIDDSEILILRRKYFYSDQNIDSRDPIQLNLLYVQCHDGLIKAQ
YPVNEKDATIFAALQCQLQFGAHNPQKHKPGYLELKDFLPKEYVKSRGIEKKIFAEHKNL
TQMSEIEAKVQYVKKCRGLKTYGVTFFLVKEKMQGRNKLVPRLFGVTRENVMRVDEKTKD
VMKIWPLTSVKRWAASPKSFTLDFGDYQEGFYSVQTTEGEQIAQLIAGYIDIIMGSRRAK
DTLGTDGDREGLMEEDSIAPRRGHVVSQMSGAQHQQNTGHVIVPGVMRNSTAAPDNYSMG
MVGGPSHGMKHNSLGYGGQPLTAAQQAFMGNIKLGFNACQTAQNDLDSRGDLPPLGSDAA
AKQWKQNALEENRHNIQSNLAAIDAATATVITQTSDPKSTDYTTVGSAVTTISSNLTEMT
KGLKLMAALLEDDNTGDDLLRAAKDLTNAINDLLKAAKPDSNEPRQNLLGSAGKIGDASH
DILKYIGEDGIDPAFQDKLMSLAKAVANATAALVLQSKMVAGRTEDQNTQNSVIASATHC
ALSTSQLVACTKVVAPTISNPACQEQLIEAAREVSRAVDGCVESSQLATEDPNLLNELKN
AATEVSRQLNKLIDHIKQGGEGDGGRYDEACNRILNATDHLCSSMGNAAEMVKQARVLGQ
ATSELVNMLKLEAEGESDEDGQQRLLAAAKMLADATAKMVEAAKGAASNPHDSNQQERLK
KAAENLRTATNVAAQNALKKKLMHKLESAARQAAAAATQTIAASHSAEPFNTNKASQQAL
ISQGKTLQDQIPPLVQAIRASMMDADSPLAQQQLINNSIEFIGPGKKTVVASKAVVPTIS
DQSTALQLTNFTKKLATALTELETAAIKANEFCGPSEIDAALETVKELDKQLQEYCQDAH
ARNLLPLPGQTMASCAQELGATSKTVGSSMAQLLTAAAQGNQDYTGSAARDTANALKTLV
GAARGVAANTDELNSQLHLLGTTRDVMEKSAQLIEETKKAVQDPENPENQKRIAQVAKAV
SQALNNCINCLPGQRDVDEALKNIAETSKKLLSNQKYVDGSIRQREFPASNKNFQETQSQ
LNKTAEDLNMAASDLVGASRSSPSELSNASNNYSTKFNDLLGAGMSMAGQANDKEDQNQV
IGNLKTVSMSSSKLLLAAKALSADPGAPNAKNQLAAAARAVTESINNLITHCTTTAPGQK
ECDNALRQLNTIRGLLENPNEPVNDFSYFDCLESVMDNSKHLGEALSGISQHAKNSQLEK
FGNSVTGAQKSLCGLTEAAAQAAYLVGISDPNSQTGTQGLVDQTQFARANQAIQMACESL
VDPSSNQSQVLSAATIVAKHTSSLCNVCRVASSKTNNTVARKHFVQSAKEVANSTANLVK
TIKALDGNFSEDNRENCAKATKPLIEAVDNLTKFASNSEFTSVPAKISAEGKEAQAPILQ
SSQQMLKSSSELIKTARKLANNPKDPPTWQVLSGHSRVVSDSIKKLIASIRNAAPGQKEC
DEAISTINNAIKDLNNASLAAMDESLPVRDDNTMKGFQEKVINTVNEIGTCIDPLVNAAK
QDAAQLGHKVLQMERYFLPLADATIGAASNSKTNQRQMDILEYSKTLAESALQLMYAAKE
GGGNPKDPELHMHNNPIGEIIEHDKNGPALIKIDFKATNTHQAIDEGAEVMREAIDDLLK
SVLEAPEALMDGMVDAINKSLNIVDEPMDDVEGGSFTTFQTRLVKTCKAIARTAQDINSN
TVRGNADALAPLAKHMTELVDQLARDGQGAVAYADSDAVAQQIKHSVHDLGKACADLVQA
AGVVQSSPNDNYSKKELIGKAKNVPEKASTWSQFDMFSYVSFVLASLQAGARGTQACINA
HTSVQGIIGDLDTMIMFATAGTLNPENDRKFADLKDEVLQRAKALVEDTKSLVSAAGGTQ
EQLARSAASASGTIQDLVESVKLGAMSLGADDPDTQVCLINAVRDVASALGDLINATKNA
SGKSADDHSVFHLKASAKTMVANVTSLLKTVKVVEDESVKGTRALETTIDAINQSARVMD
EVDEVEARATPEELIQATKPITQATAKAVAAGNSCKQQDMLGAAIVGRKAIGELLQRGRA
FAANPENADKRVQTVELCRGVSTAYITLLENIHAQSKQPQNNALKMKLVPLSKNVAVSVS
ELVHFTESTKGPDWVDPNDPNVIAEQELLAAAASIEAASKKLALLRPRKKPKQADESLNF
EEQILEAAKSIAKATTALVKAASAAQKELVLQGKVGSVPALRYDDGQWSQGLISAAQTVA
GATGNLCEAANQAVQGEASEEKLISSAKQVAASTAQLLVACKVKADPNSENMKRLQIAGT
SVNRATEMLVQAAKDTAFNEDDTTDNPWQSKGSKVGDMRAEVEFQAEILRKEKELQAARD
KLMKMRRAKYAHQSAE

Nucleotide sequence

Length: 9,827

>Moocul.CG.ELv1_2.S60205.g03794.01.t
AGGCGGCTGAACCAATATACTAAGTACTACTGAGTAACAGAGTAAGATAATGTACACACA
TTTATAAATAAAATAAGACAAACAGCCAACGAATTTCATAAGGATTTTGTTGAATAAGAT
TCAAGATGGTCAACCTCTCGTTGAAGATCAACATCGTTCATGGAAACCTCATGAAGACGA
TGCAGTTTGATCCGGCTTGCATCGTATATGATGCTTGTCGGATCATCAGGGAGAAAGTTC
CAGAAGCCAAAACTCGAAATGAATCAGCACAAGATTTCAGTTTGTTTCTGTCTGACAAAG
ACCCAAAGAAGGGAGTATGGTTGGAATCAAGGAGACCTTTGGAATATTATCTGCTACGAA
ACGGTGATATTTTGGAATACAAACAAAAGCAACGACCTCTCAAGATACAAACGCTCGATC
TCTCTGTTAAGACTGCCATGATTGATGACAGCAACACAGTCAGCCAACTTATGGTTACAA
TTTGCACTCGACTCGGAATCGTGAACCATGAAGAATACTCACTCGTGCGTGACACGCCAC
CAGAAGATGGAACCGGTACTCTTAAAAAGACTTCCACAACCAACACAATTTTAAGAGGCG
ATGCCGACCGAAAATTTGAAACATTGAAAAAGAAACTCCATACTGATGACGAATGTAAGA
TAAATGGTAGCGTGCATTGGTTGAATCATGGCCAAACATTGCGTGAACAAGGTGTAATTG
ATGACTCAGAGATACTGATATTACGAAGAAAATATTTCTACTCTGATCAGAATATTGATT
CTCGAGATCCTATTCAACTCAACCTGCTCTACGTTCAGTGTCATGACGGATTGATCAAAG
CGCAATACCCCGTCAATGAGAAGGATGCTACCATTTTCGCAGCGTTGCAATGTCAGCTGC
AGTTCGGTGCTCATAATCCACAAAAGCACAAACCAGGATATCTCGAGTTAAAAGATTTTT
TGCCAAAAGAATATGTTAAAAGTCGTGGAATTGAAAAGAAAATTTTTGCGGAACACAAAA
ACTTGACACAAATGAGCGAGATTGAAGCAAAGGTGCAATATGTGAAGAAATGTCGCGGGT
TGAAGACTTATGGTGTCACATTTTTCCTTGTCAAGGAAAAAATGCAAGGAAGAAATAAAC
TTGTTCCTCGTCTGTTCGGAGTGACCAGAGAGAATGTGATGAGAGTAGACGAGAAGACAA
AGGATGTTATGAAGATATGGCCACTTACATCGGTCAAGAGATGGGCAGCTTCACCAAAAT
CATTTACTTTGGATTTTGGAGATTATCAAGAAGGTTTTTACAGTGTACAAACAACAGAAG
GTGAACAAATTGCACAACTGATTGCTGGATACATCGATATCATCATGGGCAGTCGACGTG
CGAAGGATACTCTTGGTACTGACGGAGATCGGGAGGGATTGATGGAGGAAGACAGCATAG
CACCACGACGTGGTCATGTTGTCTCGCAAATGTCAGGTGCTCAACATCAACAAAACACAG
GTCATGTCATTGTCCCAGGCGTGATGCGAAATTCTACCGCTGCCCCGGATAACTACAGTA
TGGGTATGGTCGGTGGACCGTCTCATGGAATGAAACACAATTCTCTCGGTTACGGCGGAC
AGCCTTTGACTGCAGCACAGCAAGCATTTATGGGAAACATCAAACTTGGATTCAACGCTT
GTCAAACGGCACAGAACGATTTAGACTCTCGCGGAGATTTGCCTCCACTTGGATCTGATG
CTGCTGCGAAACAATGGAAGCAAAATGCTTTGGAAGAGAATCGACACAACATTCAATCAA
ATCTCGCTGCCATTGATGCCGCAACCGCCACCGTTATCACACAGACATCAGATCCAAAAT
CGACAGATTACACAACTGTTGGATCGGCAGTGACCACAATATCGTCCAACTTGACTGAGA
TGACCAAAGGACTTAAACTTATGGCTGCATTACTTGAAGATGATAACACCGGAGATGATT
TGTTGAGGGCAGCAAAAGATTTGACAAATGCAATAAATGACCTTTTGAAAGCTGCAAAAC
CCGACAGCAACGAACCACGACAAAACCTGTTAGGCTCTGCTGGTAAAATCGGTGATGCGT
CCCATGATATTCTCAAGTACATCGGGGAAGACGGAATTGATCCGGCTTTCCAGGACAAAC
TCATGTCGCTTGCAAAGGCAGTCGCCAATGCTACCGCGGCGCTTGTTCTTCAATCAAAGA
TGGTTGCCGGACGTACTGAAGATCAAAACACACAGAACAGCGTCATTGCAAGTGCAACAC
ATTGTGCCTTATCCACTTCTCAACTTGTTGCCTGCACCAAGGTGGTTGCCCCAACCATCA
GCAACCCTGCATGCCAGGAACAGTTGATTGAGGCTGCCCGCGAGGTGTCACGCGCCGTGG
ACGGTTGTGTGGAATCATCACAACTTGCCACAGAGGATCCAAACTTGCTCAATGAACTGA
AGAATGCTGCAACAGAAGTTTCACGTCAACTCAACAAACTCATCGACCACATTAAACAGG
GAGGAGAAGGTGATGGTGGTCGTTATGACGAAGCATGCAACCGCATCTTGAACGCAACCG
ACCACTTGTGCAGTTCGATGGGAAATGCTGCTGAAATGGTGAAGCAGGCACGTGTGCTCG
GACAAGCAACTTCCGAACTCGTCAACATGCTCAAGCTGGAAGCAGAAGGAGAATCAGATG
AAGATGGCCAACAACGATTATTGGCAGCTGCAAAGATGCTTGCAGATGCAACTGCGAAGA
TGGTCGAGGCTGCTAAAGGAGCCGCAAGCAATCCTCATGATTCTAATCAACAAGAACGAT
TAAAGAAAGCAGCAGAGAATCTTCGAACAGCGACAAACGTTGCTGCACAGAATGCTCTCA
AGAAGAAGCTCATGCACAAGTTGGAATCGGCCGCAAGACAAGCCGCTGCCGCTGCAACAC
AAACAATTGCCGCATCGCATTCCGCTGAACCTTTCAACACCAACAAAGCAAGTCAACAAG
CACTCATCTCTCAGGGCAAGACACTGCAAGACCAAATTCCACCTCTGGTGCAAGCGATTA
GGGCCAGTATGATGGATGCGGACAGTCCGCTTGCACAACAGCAACTCATCAACAACTCAA
TTGAATTTATTGGGCCTGGAAAGAAGACAGTTGTTGCATCAAAGGCCGTTGTTCCTACAA
TCAGTGACCAGTCCACTGCATTACAACTGACTAATTTCACCAAGAAACTTGCAACTGCCC
TCACTGAACTCGAAACGGCAGCTATAAAGGCAAATGAATTTTGTGGGCCGAGTGAAATTG
ACGCAGCGTTGGAGACAGTGAAAGAACTCGACAAACAGTTACAAGAGTACTGTCAAGATG
CACATGCCAGAAACTTGCTGCCATTACCTGGTCAGACGATGGCCAGCTGCGCACAAGAAC
TTGGTGCCACATCAAAAACTGTTGGCTCTTCAATGGCACAATTATTGACTGCTGCGGCTC
AGGGCAATCAAGACTACACAGGCTCTGCAGCTCGGGACACTGCTAATGCTCTCAAGACAT
TGGTGGGTGCGGCAAGAGGTGTGGCTGCAAATACAGATGAATTAAACAGCCAACTTCATT
TACTTGGAACCACACGTGATGTGATGGAGAAATCTGCTCAACTCATCGAAGAGACCAAAA
AAGCTGTACAAGATCCTGAAAATCCCGAAAACCAAAAGAGAATTGCGCAAGTTGCAAAGG
CTGTTTCACAAGCACTTAACAACTGCATCAATTGTCTTCCCGGACAACGTGATGTGGATG
AAGCTCTCAAGAACATCGCTGAAACCAGCAAGAAACTACTTTCCAACCAAAAATATGTTG
ATGGAAGTATTCGCCAGCGCGAGTTCCCCGCAAGCAACAAAAACTTTCAAGAGACACAAT
CACAACTTAACAAAACAGCGGAAGATTTGAACATGGCTGCAAGTGATCTTGTAGGAGCTT
CGAGAAGTTCCCCGAGTGAACTTTCAAACGCCAGCAACAACTACAGTACCAAATTCAATG
ATTTACTTGGTGCTGGTATGAGCATGGCCGGACAAGCAAATGACAAAGAGGACCAAAACC
AAGTGATTGGAAACCTGAAAACAGTTTCCATGTCATCGAGCAAGTTGTTATTGGCAGCCA
AAGCACTCTCTGCTGATCCTGGAGCTCCAAATGCAAAGAATCAACTTGCTGCTGCTGCAA
GAGCTGTCACAGAAAGTATCAACAACCTGATCACTCACTGCACAACAACTGCTCCTGGAC
AAAAAGAATGTGATAATGCACTCAGACAGCTGAATACCATCCGAGGACTCTTGGAGAATC
CAAATGAGCCTGTCAATGACTTTTCATATTTCGACTGTTTGGAAAGTGTAATGGATAATT
CGAAACATCTCGGTGAAGCACTCAGTGGCATTTCGCAACATGCAAAGAATTCTCAACTCG
AAAAGTTTGGAAATTCCGTTACTGGTGCACAGAAATCACTCTGTGGATTAACAGAAGCTG
CTGCACAGGCTGCATACCTTGTTGGAATATCTGATCCTAACAGTCAGACGGGAACACAAG
GTCTTGTGGACCAAACACAATTCGCTCGAGCTAACCAAGCTATTCAAATGGCTTGTGAAA
GTCTGGTGGATCCATCAAGCAATCAATCACAGGTTCTGTCTGCTGCAACGATTGTTGCCA
AACACACATCTTCATTGTGCAACGTTTGCCGTGTGGCTTCATCAAAAACCAACAACACCG
TCGCTAGGAAGCACTTCGTCCAATCAGCAAAAGAAGTTGCTAACAGCACCGCCAATCTAG
TCAAGACAATTAAAGCTCTTGATGGAAACTTTTCTGAAGACAATCGTGAAAATTGTGCCA
AAGCAACAAAGCCACTTATAGAGGCTGTTGATAACTTAACTAAATTTGCTTCCAATTCTG
AATTCACAAGTGTGCCGGCAAAGATTAGTGCAGAAGGCAAAGAAGCACAAGCACCCATCC
TACAATCATCACAACAAATGCTCAAGAGCTCATCTGAACTCATAAAGACAGCTCGAAAAC
TTGCAAATAACCCAAAAGATCCACCTACATGGCAGGTTCTCAGTGGACATTCCAGAGTTG
TTTCGGATTCAATTAAAAAATTAATCGCTTCCATTAGAAATGCTGCTCCCGGCCAGAAGG
AATGTGATGAGGCAATATCTACGATCAACAATGCAATAAAAGATCTCAACAATGCCTCAT
TAGCTGCTATGGATGAAAGTCTTCCTGTGAGAGATGACAACACAATGAAAGGATTTCAGG
AGAAGGTTATCAACACTGTCAATGAAATCGGAACTTGTATCGATCCTTTGGTTAATGCTG
CTAAACAAGACGCTGCACAACTTGGACACAAGGTGTTACAAATGGAACGATATTTTCTTC
CACTTGCCGATGCCACAATCGGCGCCGCTTCAAATTCAAAGACCAACCAAAGACAAATGG
ACATATTGGAGTACAGCAAGACACTCGCTGAATCTGCGTTACAGTTGATGTACGCGGCGA
AGGAGGGTGGCGGAAATCCTAAGGACCCGGAATTGCATATGCACAATAATCCAATTGGCG
AAATTATAGAACATGACAAAAATGGCCCTGCACTGATAAAAATTGATTTTAAGGCAACCA
ACACGCACCAAGCGATTGATGAAGGTGCGGAGGTGATGAGAGAAGCCATCGACGATTTGT
TGAAATCAGTCCTCGAAGCGCCAGAGGCACTTATGGACGGAATGGTTGATGCCATTAATA
AAAGTCTTAATATCGTTGATGAGCCGATGGATGATGTCGAAGGTGGAAGTTTCACAACTT
TCCAAACACGTTTGGTGAAAACCTGTAAAGCCATCGCACGAACTGCACAAGACATCAACA
GCAACACTGTTCGTGGCAATGCTGATGCGCTGGCACCACTGGCCAAACACATGACTGAAC
TTGTTGACCAATTGGCAAGAGACGGTCAAGGGGCAGTTGCCTATGCTGACTCTGATGCTG
TTGCACAACAAATCAAACACAGTGTCCATGATCTTGGTAAAGCATGTGCTGACCTTGTAC
AAGCTGCTGGAGTCGTCCAAAGCAGTCCAAATGACAATTACTCCAAGAAAGAACTTATTG
GAAAAGCCAAAAATGTTCCTGAGAAGGCGAGTACCTGGTCACAATTTGATATGTTCTCTT
ATGTATCCTTTGTGCTTGCATCATTGCAAGCAGGAGCACGTGGTACACAGGCATGCATCA
ACGCACACACAAGTGTCCAAGGTATCATTGGTGATCTTGACACGATGATCATGTTTGCGA
CAGCTGGAACTCTTAACCCTGAAAACGACAGGAAGTTTGCTGATCTCAAGGATGAAGTAC
TACAAAGAGCAAAGGCTTTGGTTGAAGACACAAAAAGTCTTGTATCAGCAGCTGGTGGAA
CACAAGAACAACTTGCTCGTTCTGCTGCATCTGCTTCCGGTACAATCCAAGACCTTGTTG
AAAGTGTGAAGCTTGGAGCAATGAGTTTGGGAGCAGACGATCCAGACACACAGGTTTGCC
TGATAAACGCTGTACGAGATGTTGCAAGTGCTCTCGGTGATCTCATCAACGCCACAAAGA
ATGCATCAGGAAAATCCGCCGATGATCATTCCGTCTTCCATCTAAAGGCATCAGCTAAGA
CTATGGTTGCAAATGTGACATCTTTGTTGAAGACTGTGAAGGTTGTAGAAGACGAATCTG
TGAAGGGAACTCGAGCACTCGAAACCACCATTGATGCCATCAATCAATCTGCACGAGTTA
TGGATGAAGTTGATGAAGTGGAAGCTCGTGCCACACCGGAAGAACTGATCCAAGCAACTA
AACCGATCACCCAGGCAACCGCTAAAGCTGTCGCAGCTGGTAACTCATGTAAACAGCAAG
ATATGCTCGGTGCTGCCATCGTTGGTAGAAAAGCCATTGGAGAATTGTTGCAGAGAGGAA
GAGCATTTGCTGCAAATCCAGAGAATGCTGACAAGCGAGTACAGACGGTGGAGTTGTGTC
GTGGTGTGTCAACTGCTTACATCACGCTGCTCGAAAACATCCATGCGCAAAGCAAACAAC
CGCAGAACAACGCACTCAAGATGAAGTTAGTTCCACTTTCAAAGAATGTTGCCGTGTCCG
TCAGCGAACTTGTACACTTCACAGAATCAACGAAAGGACCAGACTGGGTTGATCCAAATG
ATCCTAATGTTATTGCGGAACAAGAGTTGTTAGCAGCAGCTGCATCTATTGAAGCAGCCA
GTAAAAAACTTGCTCTCTTGCGACCCCGTAAAAAGCCCAAGCAAGCAGATGAAAGCCTTA
ACTTTGAAGAACAAATTCTCGAAGCGGCAAAGTCGATTGCAAAAGCAACTACTGCTCTTG
TAAAAGCAGCATCAGCTGCACAGAAAGAATTGGTGCTACAAGGAAAGGTTGGATCTGTAC
CGGCATTACGATATGACGACGGTCAATGGTCTCAAGGTTTGATTTCGGCCGCACAGACTG
TTGCTGGAGCAACCGGCAACTTATGTGAAGCTGCTAATCAAGCTGTGCAAGGTGAAGCAA
GTGAAGAGAAACTTATCAGTTCCGCAAAACAAGTGGCAGCTTCAACCGCACAATTGTTGG
TCGCATGCAAAGTTAAAGCCGACCCGAACAGTGAAAACATGAAGCGTTTACAGATTGCTG
GCACGAGTGTTAATCGTGCCACTGAAATGCTTGTACAAGCTGCAAAAGATACTGCTTTTA
ACGAGGATGATACAACTGATAATCCCTGGCAATCCAAGGGTAGTAAAGTGGGTGACATGC
GGGCCGAGGTGGAATTCCAAGCCGAGATATTGCGAAAAGAAAAAGAGTTGCAAGCAGCGC
GTGACAAATTGATGAAAATGCGCAGAGCAAAATACGCACACCAATCGGCAGAATAAATAC
CCACTTACCTCTGCTTGCCTTGCCTGAATATTTGTCGTCTCCCAAATTATTTTACAAATT
TTTGTTACTCTTATTATTTTATTTTTCTTTTGCCATGGGATGCAGGAATGAGCAATGTGT
GTTTAATTTAAACCATTAATTTTTATCATTTCATTTATTCAAGTTTCAATTTCTTTGTTT
TTTGTTTGCATGAGCAGATCGCCGGAAACGCTGTAAAACATGCCAGTGAAAGCTTGGTTG
GTGCTGCACGTGAAGCAGCAAGCTTCCAAGATGAAGAGGGAGAGGTTGTCATCAATGAAA
GGAGGGTTGGAGGAATTGCACAAGAGATGATGGCACAGGAGGAGATTCTACGGAAGGAAC
GTGAATTGCAAGTTGCTCGAGAAAAACTTGCACAAATACGAAAATGGAGATATAAAGATG
AATCGGAATCCGATGATGAATGACATTTATAAACTAATTATCGAAGTTTTGTTGAAAACT
TGCGAAATGTTAAACCATGAAATTCGATCACTATTTTTCTCATGAAGTGTTTGAGGCATT
ATTTTACTAACGTTGGGCCAAAGCTAGTATTTTATAAACTGTTGTATATAGGCATGTTTT
GTTTTCACTTTGCTTTGTAACAAATTATGTTGTTTTAAGTTGGCATGGAGATAACAAGAT
AAGCATGGATATACTGCCTTAACATAACAAATAAAATATGCTTTTGTGTATTGCAATATT
CTATATCATCAGTACTCAGTATCTTTGTACCATATTTAAAATCGCTCACAGACAAAATAA
AATATATCACTTTATTATAAACGGTCCAAATAAATTCCATTTTTCATAGAAAATGTTTGC
ACTGCTTTACATATGCTTGATTAGCTTTATTTAACATTTATAGTAGAGTATAGCCTTAGT
TGATTAAATCAAGCAAATTTATTTGACAAAGAACATGTCAACACTGACGGCAAATCATAA
AGATTTAAAACACAAATAATAACAGAAAAGATAAATGTACAAAAAGGATCAACATGTGCA
ATTACAAATAATTAATATTAAAATAGAATGAAATCGAGTCCATGTTCTAACTTCAGTTTT
TTAACAAGTTTACAATGGTGGCGAATTGTATCTTTCTTTCATCTTTGCAATCCATTCTGC
CATTTTGATTGGTTTGCATTTCTTCCATTGACGAGCGAAATAAAACGAACAAAAATGATG
GGGCAGCACCATTATCTCATTCATGTATCTTGAATTCAAACTGGAACTTCCACATTTTAC
GGTTTTCCCTCCAACGGCCCATTGTTCGCTGCATCCACACTTTTTAGGTTTCACGTTACA
CACAGCTGTTGGGTATCCAAGACATGTGTTGCCTTTTGTGCATGCATCGCATTTTAAACA
GCGTTTTCGTTTTACTTTAGTTTTGTTGATTGTCCTCATTGTATCTTCTTCATTTACATT
CACCTGTTCTGAGCAGTTGGCTCCAGAATATTGGATCGTGCATGTGCAGTTGAATTCATC
ATTGACCACTGCACAAGTCCCGTTGTTCCCACAAGGATTCGGACTGCAAAGGTCTAAAAT
GTTAATAATTGGCTTAATCTCAACGCAGCCGGAAAAATTCGCTGTCTGGAGTTTGGATCC
TACTCTGAATTATAACTGCAGTTACAATGATTTCGCGATCAAATCAAACCATCGGGCATC
AAAACCATCGGGATCAAATCACTGTGACTGATAAAAAACTGCTATTTCACCGACTTTGAT
CAAAATACATAATCCCCAGTGTCGGGCTGTGAAGGATGTGTTTCTTTCAGACCATTTTGA
TATCTTGACCATTTTGATAAATAAAATATCTACAGCTTTCTCTTCACTATGTCCCAACAA
AATTATATTGCTTAATAATGCAACTCAAACCTTTCCAGGCAATTCTG

InterProScan

Pfam
FERM_f0 (IPR032425) - T[4-87] 4.8E-31
SMART
Band_41_domain (IPR019749) - T[86-327] 8.6E-60
ProSiteProfiles
FERM_domain (IPR000299) - T[90-417] 51.33
Pfam
FERM_N (IPR018979) - T[94-197] 7.6E-16
SUPERFAMILY
FERM_2 (IPR035963) - T[208-322] 7.2E-31
Gene3D
FERM/acyl-CoA-bd_prot_sf (IPR014352) - T[214-321] 1.2E-42
Pfam
FERM_central (IPR019748) - T[220-327] 7.7E-26
CDD
FERM_central (IPR019748) - T[224-319] 1.10001E-25
ProSitePatterns
FERM_CS (IPR019747) - T[297-326] .
Gene3D
PH-like_dom_sf (IPR011993) - T[322-419] 8.7E-35
SUPERFAMILY
Talin_cent_sf (IPR036476) - T[501-664] 1.2E-53
Pfam
Talin_cent (IPR015224) - T[504-663] 2.5E-54
SUPERFAMILY
I/LWEQ_dom_sf (IPR035964) - T[672-792] 8.04E-45 - T[765-897] 2.35E-42 - T[1487-1574] 2.75E-12 - T[2354-2543] 4.45E-50
SUPERFAMILY
Alpha-catenin/vinculin-like_sf (IPR036723) - T[1083-1215] 8.32E-23 - T[1245-1380] 4.39E-37 - T[1602-1678] 1.52E-5 - T[1709-1809] 1.57E-5 - T[1893-2010] 7.85E-24 - T[2062-2190] 1.73E-6
Pfam
Vinculin-bd_dom (IPR015009) - T[1254-1368] 4.7E-5 - T[1895-2032] 1.1E-28
CDD
Talin1/2-RS (IPR037438) - T[1673-1868] 3.25576E-64
ProSiteProfiles
ILWEQ_dom (IPR002558) - T[2352-2593] 52.958
ProDom
ILWEQ_dom (IPR002558) - T[2393-2590] 4.0E-57
SMART
ILWEQ_dom (IPR002558) - T[2395-2593] 4.2E-83
Pfam
ILWEQ_dom (IPR002558) - T[2445-2590] 6.8E-49

Best Blast Hits in UniProt
Protein Name Identity Bit Score e-value
TLN1_HUMAN 57.176 % 2796 0
TLN2_HUMAN 58.093 % 2808 0
HIP1_HUMAN 32.751 % 108 1.82E-23