Fungal Genomics

at Utrecht University

General Properties

Protein IDOphio5|8313
Gene name
Locationscaffold_902:2082..5570
Strand-
Gene length (bp)3488
Transcript length (bp)3153
Coding sequence length (bp)3150
Protein length (aa) 1050

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PFAM Domains

PFAM Domain ID Short name Long name E-value Start End
PF03983 SHD1 SLA1 homology domain 1, SHD1 7.5E-33 475 539
PF00018 SH3_1 SH3 domain 2.1E-12 8 60
PF00018 SH3_1 SH3 domain 5.0E-06 86 131
PF00018 SH3_1 SH3 domain 1.4E-08 385 425
PF14604 SH3_9 Variant SH3 domain 1.8E-11 9 65
PF07653 SH3_2 Variant SH3 domain 3.7E-08 7 67

Swissprot hits

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Swissprot ID Swissprot Description Start End E-value
sp|A7E8B6|SLA1_SCLS1 Actin cytoskeleton-regulatory complex protein sla1 OS=Sclerotinia sclerotiorum (strain ATCC 18683 / 1980 / Ss-1) GN=sla1 PE=3 SV=2 1 1050 0.0E+00
sp|Q6CHN0|SLA1_YARLI Actin cytoskeleton-regulatory complex protein SLA1 OS=Yarrowia lipolytica (strain CLIB 122 / E 150) GN=SLA1 PE=3 SV=1 259 671 2.0E-92
sp|A7TKW4|SLA1_VANPO Actin cytoskeleton-regulatory complex protein SLA1 OS=Vanderwaltozyma polyspora (strain ATCC 22028 / DSM 70294) GN=SLA1 PE=3 SV=1 3 544 1.0E-82
sp|Q5ALV2|SLA1_CANAL Actin cytoskeleton-regulatory complex protein SLA1 OS=Candida albicans (strain SC5314 / ATCC MYA-2876) GN=SLA1 PE=1 SV=1 266 800 1.0E-77
sp|A6ZKU1|SLA1_YEAS7 Actin cytoskeleton-regulatory complex protein SLA1 OS=Saccharomyces cerevisiae (strain YJM789) GN=SLA1 PE=3 SV=1 3 544 2.0E-66
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Swissprot ID Swissprot Description Start End E-value
sp|A7E8B6|SLA1_SCLS1 Actin cytoskeleton-regulatory complex protein sla1 OS=Sclerotinia sclerotiorum (strain ATCC 18683 / 1980 / Ss-1) GN=sla1 PE=3 SV=2 1 1050 0.0E+00
sp|Q6CHN0|SLA1_YARLI Actin cytoskeleton-regulatory complex protein SLA1 OS=Yarrowia lipolytica (strain CLIB 122 / E 150) GN=SLA1 PE=3 SV=1 259 671 2.0E-92
sp|A7TKW4|SLA1_VANPO Actin cytoskeleton-regulatory complex protein SLA1 OS=Vanderwaltozyma polyspora (strain ATCC 22028 / DSM 70294) GN=SLA1 PE=3 SV=1 3 544 1.0E-82
sp|Q5ALV2|SLA1_CANAL Actin cytoskeleton-regulatory complex protein SLA1 OS=Candida albicans (strain SC5314 / ATCC MYA-2876) GN=SLA1 PE=1 SV=1 266 800 1.0E-77
sp|A6ZKU1|SLA1_YEAS7 Actin cytoskeleton-regulatory complex protein SLA1 OS=Saccharomyces cerevisiae (strain YJM789) GN=SLA1 PE=3 SV=1 3 544 2.0E-66
sp|P32790|SLA1_YEAST Actin cytoskeleton-regulatory complex protein SLA1 OS=Saccharomyces cerevisiae (strain ATCC 204508 / S288c) GN=SLA1 PE=1 SV=1 3 544 2.0E-66
sp|O13736|SLA1_SCHPO Actin cytoskeleton-regulatory complex protein sla1 OS=Schizosaccharomyces pombe (strain 972 / ATCC 24843) GN=sla1 PE=1 SV=1 271 638 2.0E-44
sp|Q4P3H6|SLA1_USTMA Actin cytoskeleton-regulatory complex protein SLA1 OS=Ustilago maydis (strain 521 / FGSC 9021) GN=SLA1 PE=3 SV=1 475 726 4.0E-41
sp|Q5ALV2|SLA1_CANAL Actin cytoskeleton-regulatory complex protein SLA1 OS=Candida albicans (strain SC5314 / ATCC MYA-2876) GN=SLA1 PE=1 SV=1 3 139 2.0E-32
sp|A6ZKU1|SLA1_YEAS7 Actin cytoskeleton-regulatory complex protein SLA1 OS=Saccharomyces cerevisiae (strain YJM789) GN=SLA1 PE=3 SV=1 574 783 4.0E-25
sp|P32790|SLA1_YEAST Actin cytoskeleton-regulatory complex protein SLA1 OS=Saccharomyces cerevisiae (strain ATCC 204508 / S288c) GN=SLA1 PE=1 SV=1 574 783 4.0E-25
sp|A7TKW4|SLA1_VANPO Actin cytoskeleton-regulatory complex protein SLA1 OS=Vanderwaltozyma polyspora (strain ATCC 22028 / DSM 70294) GN=SLA1 PE=3 SV=1 566 775 3.0E-24
sp|Q4P3H6|SLA1_USTMA Actin cytoskeleton-regulatory complex protein SLA1 OS=Ustilago maydis (strain 521 / FGSC 9021) GN=SLA1 PE=3 SV=1 1 139 5.0E-20
sp|O13736|SLA1_SCHPO Actin cytoskeleton-regulatory complex protein sla1 OS=Schizosaccharomyces pombe (strain 972 / ATCC 24843) GN=sla1 PE=1 SV=1 3 135 3.0E-19
sp|Q9P7E8|APP1_SCHPO Protein app1 OS=Schizosaccharomyces pombe (strain 972 / ATCC 24843) GN=app1 PE=2 SV=1 10 135 9.0E-12
sp|Q15811|ITSN1_HUMAN Intersectin-1 OS=Homo sapiens GN=ITSN1 PE=1 SV=3 6 171 5.0E-11
sp|Q9Z0R4|ITSN1_MOUSE Intersectin-1 OS=Mus musculus GN=Itsn1 PE=1 SV=2 6 171 6.0E-11
sp|Q9WVE9|ITSN1_RAT Intersectin-1 OS=Rattus norvegicus GN=Itsn1 PE=1 SV=1 6 136 1.0E-10
sp|Q9Z0R6|ITSN2_MOUSE Intersectin-2 OS=Mus musculus GN=Itsn2 PE=1 SV=2 13 136 2.0E-09
sp|O42287|ITSN1_XENLA Intersectin-1 OS=Xenopus laevis GN=itsn1 PE=1 SV=1 6 136 3.0E-09
sp|Q9NZM3|ITSN2_HUMAN Intersectin-2 OS=Homo sapiens GN=ITSN2 PE=1 SV=3 13 136 1.0E-08
sp|O77774|NCF1_BOVIN Neutrophil cytosol factor 1 OS=Bos taurus GN=NCF1 PE=2 SV=1 3 152 2.0E-07
sp|Q6PFY1|FCSD1_MOUSE F-BAR and double SH3 domains protein 1 OS=Mus musculus GN=Fchsd1 PE=2 SV=1 10 135 4.0E-07
sp|Q86WN1|FCSD1_HUMAN F-BAR and double SH3 domains protein 1 OS=Homo sapiens GN=FCHSD1 PE=1 SV=1 10 110 6.0E-07
sp|Q7Z6J0|SH3R1_HUMAN E3 ubiquitin-protein ligase SH3RF1 OS=Homo sapiens GN=SH3RF1 PE=1 SV=2 4 154 2.0E-06
sp|Q7ZYG4|OSTF1_XENLA Osteoclast-stimulating factor 1 OS=Xenopus laevis GN=ostf1 PE=2 SV=1 2 64 2.0E-06
sp|A5D8S5|SH3R1_DANRE E3 ubiquitin-protein ligase SH3RF1 OS=Danio rerio GN=sh3rf1 PE=2 SV=2 4 150 2.0E-06
sp|Q5RBR0|SH3R1_PONAB E3 ubiquitin-protein ligase SH3RF1 OS=Pongo abelii GN=SH3RF1 PE=2 SV=1 4 154 2.0E-06
sp|Q92882|OSTF1_HUMAN Osteoclast-stimulating factor 1 OS=Homo sapiens GN=OSTF1 PE=1 SV=2 2 64 3.0E-06
sp|Q8MJ49|OSTF1_PIG Osteoclast-stimulating factor 1 OS=Sus scrofa GN=OSTF1 PE=2 SV=1 2 64 3.0E-06
sp|Q5ZJJ9|OSTF1_CHICK Osteoclast-stimulating factor 1 OS=Gallus gallus GN=OSTF1 PE=2 SV=1 2 64 3.0E-06
sp|Q557J6|DBNL_DICDI Drebrin-like protein OS=Dictyostelium discoideum GN=abpE-1 PE=2 SV=1 2 65 4.0E-06
sp|Q8MJ50|OSTF1_BOVIN Osteoclast-stimulating factor 1 OS=Bos taurus GN=OSTF1 PE=2 SV=1 2 64 5.0E-06
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GO

GO Term Description Terminal node
GO:0008092 cytoskeletal protein binding Yes
GO:0005515 protein binding Yes
GO:0043130 ubiquitin binding Yes
GO:0030674 protein-macromolecule adaptor activity Yes
GO:0042802 identical protein binding Yes
GO:0005488 binding No
GO:0060090 molecular adaptor activity No
GO:0032182 ubiquitin-like protein binding No
GO:0003674 molecular_function No

SignalP

[Help with interpreting these statistics]
SignalP signal predicted Location
(based on Ymax)
D score
(significance: > 0.45)
No 1 - 20 0.45

Transmembrane Domains

(None)

Transcription Factor Class

(None)

Expression data

Analysis 1: Expression analysis during behavioral modification. Published in De Bekker et al., 2017.

Click here for more information

Sequences

Type of sequenceSequence
Locus Download genbank file of locus
The gene with 5 kb flanks (if sufficient flanking sequence is available). For use in cloning design programs. NOTE: features (genes or exons) that are only partially contained within the sequence are completely excluded.
Protein >Ophio5|8313
MGFLGVFRAIYDYVPQAEGELTFADGDLLYILDKNDDDGWWKAKRKAGATDEDEPEGLVPNNYVEPVGALTPFPT
FFSASALSQARAIYEYTRQTDEELSFPEDALLQIFDTSDPDWILAGHEDEYGFVPSNYIEVHAVTSDVHTTSRPA
PPVIPDRPQHGVLEKAESAEEAGCVLPSETPVSESRGSHSRMSTSPCLLQDGTHTAQDDRMAISEVDEEDQAIQS
PSLPPRPQSRSGSQQGFHGYPQARGSVSDNTQADEPYHTPGGFHLYNVNEMVSVMGKRKKMPTTLGINLKTRTIL
IAPEHTQDDPAQEWMAAMMTHYSREGKHVFMELVRPSKSVDLHAGAKDTAEEIVAALGELAGAIRAEGLKEVIMP
ESQRPRRQGKVLYDFMAQGDDEVTVAAGDEVLILDDSKSEDWWHIHRLRNAPTGTGSRTDSIRSTIEQNRSEEIR
LTKEAVRRGRREQGRTDIVNLSKVKSRPDPSKVKTWTDRTGSFSVEAQFVGLKDGKIQLHKMNGVKIAVPIAKMS
RGDLEYVENVTGVSLDDDKPLADVKRSNKFAEKRSMEMGASAGKKEKPEYDWFQFFLSCDVSIGLCERYAQAFIR
DSMDESVLPDVNGTILRTLGLREGDIIKVMRKLDEKFGRDSSKSEVVQGDNISGGLFSGPGGALRNNTRKSRPAP
AVQMGDVVDSIAITTPAPESDVQGRISPTGTNTTTGLTGKGFEDDAWDTKPAPAMRHPPKESKQTSMTTDSAPPL
AAPAFAGSMKDLSQLAEPLEPIRIEPQSTPASNSTPATKSAQHSTTVNSSIYHSSNSPSSSPQALARQRPMPPSM
SSDQGSSKPLLLQRPSSDPQSTPQAVFVSPKASLQTPGPLQSRVAPPGHSLNDLRLQQHYATQTSQHQPPMTGYA
MLQPQAMASFSAANPGQQQQQFVQPAVTGMQRTSPFADPGQPAQFPPICSQPTGFQPSYSHSHMSSFGQNGGVNS
FLQPPLQPQRTAVTSMPLRQAGNLGGFVQPLQPQKTGPAPPVRFGVSADIKGLAPQPTGRRANLAQATPDNPFGF
Coding >Ophio5|8313
ATGGGATTTTTAGGCGTGTTTCGTGCGATATACGACTACGTGCCTCAAGCAGAGGGCGAGCTGACATTTGCCGAT
GGGGATTTGCTCTACATCCTGGATAAGAATGATGACGATGGCTGGTGGAAGGCGAAGAGAAAAGCCGGTGCTACT
GACGAGGACGAGCCAGAGGGTCTCGTTCCCAACAACTACGTGGAACCTGTGGGTGCTCTCACACCTTTTCCTACT
TTCTTCTCCGCCTCGGCCCTGAGTCAAGCTCGTGCTATCTATGAGTACACTCGACAAACCGACGAGGAGCTATCG
TTTCCCGAAGATGCTCTGCTTCAAATATTCGACACCTCTGATCCGGACTGGATACTTGCCGGCCATGAAGACGAA
TATGGTTTCGTACCGTCCAATTACATCGAGGTGCATGCAGTAACATCAGACGTCCATACGACCTCTCGTCCTGCA
CCTCCAGTTATTCCAGACCGGCCGCAGCATGGTGTTTTGGAAAAGGCAGAAAGCGCCGAAGAAGCAGGCTGCGTC
TTACCCTCGGAAACTCCGGTGAGCGAAAGTCGGGGTTCACATTCGCGTATGTCAACCTCTCCATGTCTTCTTCAA
GACGGAACGCACACCGCGCAAGATGATAGGATGGCGATATCGGAAGTAGATGAGGAAGATCAAGCTATACAGTCC
CCTTCGCTCCCACCTCGGCCGCAGTCACGTTCAGGTTCTCAGCAAGGCTTTCATGGTTACCCGCAAGCCCGAGGT
TCGGTCAGCGACAATACCCAAGCGGACGAGCCTTACCACACACCGGGGGGGTTTCACCTGTACAACGTCAACGAG
ATGGTATCCGTAATGGGAAAGAGGAAGAAGATGCCTACAACCCTTGGTATTAATCTCAAGACCAGGACAATTCTC
ATCGCCCCTGAACACACGCAGGATGATCCAGCCCAGGAATGGATGGCCGCTATGATGACGCATTACTCGCGTGAA
GGCAAACATGTCTTCATGGAACTGGTTCGGCCTAGCAAGAGCGTTGATCTTCATGCTGGAGCTAAAGACACGGCC
GAGGAAATTGTCGCGGCGTTGGGAGAGCTTGCTGGCGCCATTCGCGCTGAAGGGCTGAAAGAGGTCATCATGCCT
GAGTCTCAACGGCCGCGGCGGCAAGGCAAGGTTTTGTACGACTTCATGGCTCAAGGCGATGATGAGGTGACTGTA
GCAGCAGGTGATGAGGTTTTAATCCTCGACGACTCGAAAAGTGAAGATTGGTGGCATATTCACCGTTTGAGGAAC
GCACCCACTGGTACCGGTTCAAGGACAGACTCTATCAGATCCACTATCGAGCAGAACCGGTCTGAGGAGATCAGG
CTCACGAAAGAAGCCGTCAGGCGGGGACGACGAGAACAAGGACGAACTGATATCGTCAACCTGTCAAAAGTCAAG
TCAAGACCGGACCCTTCTAAAGTAAAGACTTGGACAGACCGCACCGGCTCTTTCAGCGTGGAGGCACAGTTTGTA
GGCCTCAAGGATGGCAAAATCCAACTGCACAAGATGAATGGTGTGAAAATTGCAGTTCCTATCGCGAAAATGTCC
CGTGGCGACTTGGAGTACGTGGAGAACGTCACCGGCGTTTCCCTCGACGACGACAAGCCTTTGGCAGATGTGAAA
AGATCGAACAAGTTCGCAGAAAAGCGGTCAATGGAAATGGGGGCATCGGCGGGGAAAAAGGAAAAGCCAGAATAT
GACTGGTTCCAGTTTTTTCTGTCTTGCGATGTGTCGATTGGACTCTGCGAACGCTATGCCCAGGCGTTCATTCGA
GACTCAATGGACGAGAGCGTCCTGCCCGACGTAAACGGCACCATTTTGCGCACTTTAGGTCTCAGGGAAGGTGAC
ATCATCAAAGTTATGCGCAAACTGGATGAGAAATTTGGCCGCGATTCAAGCAAATCTGAAGTCGTCCAAGGCGAT
AATATCTCTGGAGGCCTCTTTTCAGGTCCTGGCGGGGCTCTTCGAAACAATACGCGCAAGTCGAGACCAGCCCCG
GCCGTGCAGATGGGTGACGTTGTTGACTCCATTGCAATAACCACGCCAGCCCCGGAGTCGGATGTCCAGGGGCGC
ATCTCACCCACCGGAACAAACACAACCACCGGCTTGACCGGAAAGGGATTCGAAGATGATGCATGGGATACAAAG
CCGGCACCCGCCATGAGACACCCGCCAAAGGAATCAAAACAAACCTCGATGACGACAGATTCAGCTCCGCCTCTG
GCGGCTCCAGCGTTCGCGGGCTCCATGAAGGATCTTTCACAATTAGCGGAACCACTGGAACCCATCCGGATTGAG
CCGCAGTCAACGCCAGCTTCTAATTCGACCCCGGCAACCAAGAGCGCTCAACATTCTACGACCGTCAATTCGTCC
ATCTACCACTCCTCCAACTCGCCATCATCGTCTCCGCAGGCTCTAGCTAGGCAACGGCCAATGCCTCCATCGATG
TCATCGGATCAGGGATCCTCGAAGCCTTTACTTTTGCAGAGACCTTCATCCGATCCTCAGTCGACCCCGCAAGCC
GTGTTCGTTTCCCCGAAGGCATCACTGCAGACGCCGGGTCCTTTGCAGTCCCGGGTAGCTCCGCCAGGCCACAGC
TTGAATGACCTTCGGTTACAGCAACATTATGCAACGCAGACATCGCAACATCAACCCCCGATGACTGGCTATGCC
ATGCTTCAGCCTCAGGCAATGGCTTCCTTTTCGGCGGCCAACCCTGGCCAGCAGCAACAGCAGTTTGTGCAGCCC
GCTGTGACTGGCATGCAACGCACCAGCCCATTTGCAGACCCGGGCCAGCCTGCTCAATTCCCGCCGATTTGTAGT
CAGCCCACCGGATTCCAGCCTTCCTACTCGCATAGCCATATGTCTTCATTTGGTCAAAACGGTGGTGTCAACAGC
TTCTTACAGCCGCCTCTGCAACCCCAGCGGACAGCTGTGACCAGCATGCCTCTACGACAGGCTGGCAACTTAGGC
GGCTTCGTTCAACCACTACAACCACAAAAGACTGGCCCCGCGCCTCCTGTTCGGTTTGGAGTTTCTGCGGATATA
AAGGGGTTGGCACCTCAACCTACCGGGCGCAGAGCCAACTTGGCTCAGGCCACTCCAGATAATCCCTTCGGCTTC
Transcript >Ophio5|8313
ATGGGATTTTTAGGCGTGTTTCGTGCGATATACGACTACGTGCCTCAAGCAGAGGGCGAGCTGACATTTGCCGAT
GGGGATTTGCTCTACATCCTGGATAAGAATGATGACGATGGCTGGTGGAAGGCGAAGAGAAAAGCCGGTGCTACT
GACGAGGACGAGCCAGAGGGTCTCGTTCCCAACAACTACGTGGAACCTGTGGGTGCTCTCACACCTTTTCCTACT
TTCTTCTCCGCCTCGGCCCTGAGTCAAGCTCGTGCTATCTATGAGTACACTCGACAAACCGACGAGGAGCTATCG
TTTCCCGAAGATGCTCTGCTTCAAATATTCGACACCTCTGATCCGGACTGGATACTTGCCGGCCATGAAGACGAA
TATGGTTTCGTACCGTCCAATTACATCGAGGTGCATGCAGTAACATCAGACGTCCATACGACCTCTCGTCCTGCA
CCTCCAGTTATTCCAGACCGGCCGCAGCATGGTGTTTTGGAAAAGGCAGAAAGCGCCGAAGAAGCAGGCTGCGTC
TTACCCTCGGAAACTCCGGTGAGCGAAAGTCGGGGTTCACATTCGCGTATGTCAACCTCTCCATGTCTTCTTCAA
GACGGAACGCACACCGCGCAAGATGATAGGATGGCGATATCGGAAGTAGATGAGGAAGATCAAGCTATACAGTCC
CCTTCGCTCCCACCTCGGCCGCAGTCACGTTCAGGTTCTCAGCAAGGCTTTCATGGTTACCCGCAAGCCCGAGGT
TCGGTCAGCGACAATACCCAAGCGGACGAGCCTTACCACACACCGGGGGGGTTTCACCTGTACAACGTCAACGAG
ATGGTATCCGTAATGGGAAAGAGGAAGAAGATGCCTACAACCCTTGGTATTAATCTCAAGACCAGGACAATTCTC
ATCGCCCCTGAACACACGCAGGATGATCCAGCCCAGGAATGGATGGCCGCTATGATGACGCATTACTCGCGTGAA
GGCAAACATGTCTTCATGGAACTGGTTCGGCCTAGCAAGAGCGTTGATCTTCATGCTGGAGCTAAAGACACGGCC
GAGGAAATTGTCGCGGCGTTGGGAGAGCTTGCTGGCGCCATTCGCGCTGAAGGGCTGAAAGAGGTCATCATGCCT
GAGTCTCAACGGCCGCGGCGGCAAGGCAAGGTTTTGTACGACTTCATGGCTCAAGGCGATGATGAGGTGACTGTA
GCAGCAGGTGATGAGGTTTTAATCCTCGACGACTCGAAAAGTGAAGATTGGTGGCATATTCACCGTTTGAGGAAC
GCACCCACTGGTACCGGTTCAAGGACAGACTCTATCAGATCCACTATCGAGCAGAACCGGTCTGAGGAGATCAGG
CTCACGAAAGAAGCCGTCAGGCGGGGACGACGAGAACAAGGACGAACTGATATCGTCAACCTGTCAAAAGTCAAG
TCAAGACCGGACCCTTCTAAAGTAAAGACTTGGACAGACCGCACCGGCTCTTTCAGCGTGGAGGCACAGTTTGTA
GGCCTCAAGGATGGCAAAATCCAACTGCACAAGATGAATGGTGTGAAAATTGCAGTTCCTATCGCGAAAATGTCC
CGTGGCGACTTGGAGTACGTGGAGAACGTCACCGGCGTTTCCCTCGACGACGACAAGCCTTTGGCAGATGTGAAA
AGATCGAACAAGTTCGCAGAAAAGCGGTCAATGGAAATGGGGGCATCGGCGGGGAAAAAGGAAAAGCCAGAATAT
GACTGGTTCCAGTTTTTTCTGTCTTGCGATGTGTCGATTGGACTCTGCGAACGCTATGCCCAGGCGTTCATTCGA
GACTCAATGGACGAGAGCGTCCTGCCCGACGTAAACGGCACCATTTTGCGCACTTTAGGTCTCAGGGAAGGTGAC
ATCATCAAAGTTATGCGCAAACTGGATGAGAAATTTGGCCGCGATTCAAGCAAATCTGAAGTCGTCCAAGGCGAT
AATATCTCTGGAGGCCTCTTTTCAGGTCCTGGCGGGGCTCTTCGAAACAATACGCGCAAGTCGAGACCAGCCCCG
GCCGTGCAGATGGGTGACGTTGTTGACTCCATTGCAATAACCACGCCAGCCCCGGAGTCGGATGTCCAGGGGCGC
ATCTCACCCACCGGAACAAACACAACCACCGGCTTGACCGGAAAGGGATTCGAAGATGATGCATGGGATACAAAG
CCGGCACCCGCCATGAGACACCCGCCAAAGGAATCAAAACAAACCTCGATGACGACAGATTCAGCTCCGCCTCTG
GCGGCTCCAGCGTTCGCGGGCTCCATGAAGGATCTTTCACAATTAGCGGAACCACTGGAACCCATCCGGATTGAG
CCGCAGTCAACGCCAGCTTCTAATTCGACCCCGGCAACCAAGAGCGCTCAACATTCTACGACCGTCAATTCGTCC
ATCTACCACTCCTCCAACTCGCCATCATCGTCTCCGCAGGCTCTAGCTAGGCAACGGCCAATGCCTCCATCGATG
TCATCGGATCAGGGATCCTCGAAGCCTTTACTTTTGCAGAGACCTTCATCCGATCCTCAGTCGACCCCGCAAGCC
GTGTTCGTTTCCCCGAAGGCATCACTGCAGACGCCGGGTCCTTTGCAGTCCCGGGTAGCTCCGCCAGGCCACAGC
TTGAATGACCTTCGGTTACAGCAACATTATGCAACGCAGACATCGCAACATCAACCCCCGATGACTGGCTATGCC
ATGCTTCAGCCTCAGGCAATGGCTTCCTTTTCGGCGGCCAACCCTGGCCAGCAGCAACAGCAGTTTGTGCAGCCC
GCTGTGACTGGCATGCAACGCACCAGCCCATTTGCAGACCCGGGCCAGCCTGCTCAATTCCCGCCGATTTGTAGT
CAGCCCACCGGATTCCAGCCTTCCTACTCGCATAGCCATATGTCTTCATTTGGTCAAAACGGTGGTGTCAACAGC
TTCTTACAGCCGCCTCTGCAACCCCAGCGGACAGCTGTGACCAGCATGCCTCTACGACAGGCTGGCAACTTAGGC
GGCTTCGTTCAACCACTACAACCACAAAAGACTGGCCCCGCGCCTCCTGTTCGGTTTGGAGTTTCTGCGGATATA
AAGGGGTTGGCACCTCAACCTACCGGGCGCAGAGCCAACTTGGCTCAGGCCACTCCAGATAATCCCTTCGGCTTC
TGA
Gene >Ophio5|8313
ATGGGATTTTTAGGCGTGTTTCGTGCGATATACGACTACGTGCCTCAAGCAGAGGGCGAGCTGACATTTGCCGAT
GGGGATTTGCTCTACATCCTGGATAAGAATGATGACGATGGCTGGTGGAAGGCGAAGAGAAAAGCCGGTGCTACT
GACGAGGACGAGCCAGAGGGTCTCGTTCCCAACAACTACGTGGAACCTGTGGGTGCTCTCACACCTTTTCCTACT
TTCTTCTCCGTCAACGATTCATGAGCTAAACTAGTCCGCGTATGCTAATGTTCACTATTTTCTGTCTGCCACAAG
GCCTCGGCCCTGAGTCAAGCTCGTGCTATCTATGAGTACACTCGACAAACCGACGAGGAGCTATCGTTTCCCGAA
GATGCTCTGCTTCAAATATTCGACACCTCTGATCCGGACTGGATACTTGCCGGCCATGAAGACGAATATGGTTTC
GTACCGTCCAATTACATCGAGGTGCATGCAGTAACATCAGACGTCCATACGACCTCTCGTCCTGCACCTCCAGTT
ATTCCAGACCGGCCGCAGCATGGTGTTTTGGAAAAGGCAGAAAGCGCCGAAGAAGCAGGCTGCGTCTTACCCTCG
GAAACTCCGGTGAGCGAAAGTCGGGGTTCACATTCGCGTATGTCAACCTCTCCATGTCTTCTTCAAGACGGAACG
CACACCGCGCAAGATGATAGGATGGCGATATCGGAAGTAGATGAGGAAGATCAAGCTATACAGTCCCCTTCGCTC
CCACCTCGGCCGCAGTCACGTTCAGGTTCTCAGCAAGGCTTTCATGGTTACCCGCAAGCCCGAGGTTCGGTCAGC
GACAATACCCAAGCGGACGAGCCTTACCACACACCGGGGGGGTTTCACCTGTACAACGTCAACGAGATGGTATCC
GTAATGGGAAAGAGGAAGAAGATGCCTACAACCCTTGGTATTAATCTCAAGACCAGGACAATTCTCATCGCCCCT
GAACACACGCAGGATGATCCAGCCCAGGAATGGATGGCCGCTATGATGACGCATTACTCGCGTGAAGGCAAACAT
GTCTTCATGGAACTGGTTCGGCCTAGCAAGAGCGTTGATCTTCATGCTGGAGCTAAAGACACGGCCGAGGAAATT
GTCGCGGCGTTGGGAGAGCTTGCTGGCGCCATTCGCGCTGAAGGGCTGAAAGAGGTCATCATGCCTGAGTCTCAA
CGGCCGCGGCGGCAAGGCAAGGTTTTGTACGACTTCATGGCTCAAGGCGATGATGAGGTGACTGTAGCAGCAGGT
GATGAGGTTTTAATCCTCGACGACTCGAAAAGTGAAGATTGGTGGCATATTCACCGTTTGAGGAACGGTAAGGAA
GGAGTTGTGCCTAGCAGCTATATTGAAGTGACGGAAACTATCTCGCTAGCACCCACTGGTACCGGTTCAAGGACA
GACTCTATCAGATCCACTATCGAGCAGAACCGGTCTGAGGAGATCAGGCTCACGAAAGAAGCCGTCAGGGTGAGC
AAGCAGCCACACCAGGTAGCATCACAGTGTCTCCTGGAAGATGTTGAACGTGACCAAGCATGATATTGACCTATA
TTGATAGCGGGGACGACGAGAACAAGGACGAACTGATATCGTCAACCTGTCAAAAGTCAAGTCAAGTAAGCCTAA
ATTTGTCGCTGGCGCTGGCAATGTGGCGCGAAGATTTGACCTGACACTGTTATTCAACAGGACCGGACCCTTCTA
AAGTAAAGACTTGGACAGACCGCACCGGCTCTTTCAGCGTGGAGGCACAGTTTGTAGGCCTCAAGGATGGCAAAA
TCCAACTGCACAAGATGAATGGTGTGAAAATTGCAGTTCCTATCGCGAAAATGTCCCGTGGCGACTTGGAGTACG
TGGAGAACGTCACCGGCGTTTCCCTCGACGACGACAAGCCTTTGGCAGATGTGAAAAGATCGAACAAGTTCGCAG
AAAAGCGGTCAATGGAAATGGGGGCATCGGCGGGGAAAAAGGAAAAGCCAGAATATGACTGGTTCCAGTTTTTTC
TGTCTTGCGATGTGTCGATTGGACTCTGCGAACGCTATGCCCAGGCGTTCATTCGAGACTCAATGGACGAGAGCG
TCCTGCCCGACGTAAACGGCACCATTTTGCGCACTTTAGGTCTCAGGGAAGGTGACATCATCAAAGTTATGCGCA
AACTGGATGAGAAATTTGGCCGCGATTCAAGCAAATCTGAAGTCGTCCAAGGCGATAATATCTCTGGAGGCCTCT
TTTCAGGTCCTGGCGGGGCTCTTCGAAACAATACGCGCAAGTCGAGACCAGCCCCGGCCGTGCAGATGGGTGACG
TTGTTGACTCCATTGCAATAACCACGCCAGCCCCGGAGTCGGATGTCCAGGGGCGCATCTCACCCACCGGAACAA
ACACAACCACCGGCTTGACCGGAAAGGGATTCGAAGATGATGCATGGGATACAAAGCCGGCACCCGCCATGAGAC
ACCCGCCAAAGGAATCAAAACAAACCTCGATGACGACAGATTCAGCTCCGCCTCTGGCGGCTCCAGCGTTCGCGG
GCTCCATGAAGGATCTTTCACAATTAGCGGAACCACTGGAACCCATCCGGATTGAGCCGCAGTCAACGCCAGCTT
CTAATTCGACCCCGGCAACCAAGAGCGCTCAACATTCTACGACCGTCAATTCGTCCATCTACCACTCCTCCAACT
CGCCATCATCGTCTCCGCAGGCTCTAGCTAGGCAACGGCCAATGCCTCCATCGATGTCATCGGATCAGGGATCCT
CGAAGCCTTTACTTTTGCAGAGACCTTCATCCGATCCTCAGTCGACCCCGCAAGCCGTGTTCGTTTCCCCGAAGG
CATCACTGCAGACGCCGGGTCCTTTGCAGTCCCGGGTAGCTCCGCCAGGCCACAGCTTGAATGACCTTCGGTTAC
AGCAACATTATGCAACGCAGACATCGCAACATCAACCCCCGATGACTGGCTATGCCATGCTTCAGCCTCAGGCAA
TGGCTTCCTTTTCGGCGGCCAACCCTGGCCAGCAGCAACAGCAGTTTGTGCAGCCCGCTGTGACTGGCATGCAAC
GCACCAGCCCATTTGCAGACCCGGGCCAGCCTGCTCAATTCCCGCCGATTTGTAGTCAGCCCACCGGATTCCAGC
CTTCCTACTCGCATAGCCATATGTCTTCATTTGGTCAAAACGGTGGTGTCAACAGCTTCTTACAGCCGCCTCTGC
AACCCCAGCGGACAGCTGTGACCAGCATGCCTCTACGACAGGCTGGCAACTTAGGCGGCTTCGTTCAACCACTAC
AACCACAAAAGACTGGCCCCGCGCCTCCTGTTCGGTTTGGAGTTTCTGCGGATATAAAGGGGTTGGCACCTCAAC
CTACCGGGCGCAGAGCCAACTTGGCTCAGGCCAGTGAGTCTACCATCACGTGAATTAAATCACCTCTGATTACTA
ACGATTCCTCAGCTCCAGATAATCCCTTCGGCTTCTGA

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