Fungal Genomics

at Utrecht University

General Properties

Protein IDOphauG2|6507
Gene name
LocationContig_679:211..3486
Strand-
Gene length (bp)3275
Transcript length (bp)3159
Coding sequence length (bp)3159
Protein length (aa) 1053

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PFAM Domains

PFAM Domain ID Short name Long name E-value Start End
PF13087 AAA_12 AAA domain 5.2E-46 688 924
PF08696 Dna2 DNA replication factor Dna2 5.0E-44 1 137
PF13086 AAA_11 AAA domain 9.5E-13 512 598
PF13086 AAA_11 AAA domain 2.0E-16 614 679
PF13604 AAA_30 AAA domain 2.4E-17 512 684
PF13245 AAA_19 AAA domain 1.9E-11 516 678
PF01930 Cas_Cas4 Domain of unknown function DUF83 3.0E-08 144 247
PF05127 Helicase_RecD Helicase 5.4E-05 532 656

Swissprot hits

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Swissprot ID Swissprot Description Start End E-value
sp|P38859|DNA2_YEAST DNA replication ATP-dependent helicase/nuclease DNA2 OS=Saccharomyces cerevisiae (strain ATCC 204508 / S288c) GN=DNA2 PE=1 SV=1 1 988 2.0E-179
sp|Q9URU2|DNA2_SCHPO DNA replication ATP-dependent helicase/nuclease dna2 OS=Schizosaccharomyces pombe (strain 972 / ATCC 24843) GN=dna2 PE=1 SV=2 1 986 2.0E-179
sp|Q8QHA5|DNA2_XENLA DNA replication ATP-dependent helicase/nuclease DNA2 OS=Xenopus laevis GN=dna2 PE=1 SV=1 1 927 2.0E-166
sp|E1BMP7|DNA2_BOVIN DNA replication ATP-dependent helicase/nuclease DNA2 OS=Bos taurus GN=DNA2 PE=3 SV=3 1 928 3.0E-166
sp|P51530|DNA2_HUMAN DNA replication ATP-dependent helicase/nuclease DNA2 OS=Homo sapiens GN=DNA2 PE=1 SV=3 1 929 3.0E-163
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Swissprot ID Swissprot Description Start End E-value
sp|P38859|DNA2_YEAST DNA replication ATP-dependent helicase/nuclease DNA2 OS=Saccharomyces cerevisiae (strain ATCC 204508 / S288c) GN=DNA2 PE=1 SV=1 1 988 2.0E-179
sp|Q9URU2|DNA2_SCHPO DNA replication ATP-dependent helicase/nuclease dna2 OS=Schizosaccharomyces pombe (strain 972 / ATCC 24843) GN=dna2 PE=1 SV=2 1 986 2.0E-179
sp|Q8QHA5|DNA2_XENLA DNA replication ATP-dependent helicase/nuclease DNA2 OS=Xenopus laevis GN=dna2 PE=1 SV=1 1 927 2.0E-166
sp|E1BMP7|DNA2_BOVIN DNA replication ATP-dependent helicase/nuclease DNA2 OS=Bos taurus GN=DNA2 PE=3 SV=3 1 928 3.0E-166
sp|P51530|DNA2_HUMAN DNA replication ATP-dependent helicase/nuclease DNA2 OS=Homo sapiens GN=DNA2 PE=1 SV=3 1 929 3.0E-163
sp|Q6ZQJ5|DNA2_MOUSE DNA replication ATP-dependent helicase/nuclease DNA2 OS=Mus musculus GN=Dna2 PE=1 SV=2 1 927 1.0E-162
sp|D3ZG52|DNA2_RAT DNA replication ATP-dependent helicase/nuclease DNA2 OS=Rattus norvegicus GN=Dna2 PE=3 SV=1 1 927 1.0E-158
sp|Q5ZKG3|DNA2_CHICK DNA replication ATP-dependent helicase/nuclease DNA2 OS=Gallus gallus GN=DNA2 PE=2 SV=2 1 927 3.0E-156
sp|F6QXW0|DNA2_XENTR DNA replication ATP-dependent helicase/nuclease DNA2 OS=Xenopus tropicalis GN=dna2 PE=3 SV=1 1 928 7.0E-102
sp|P38935|SMBP2_HUMAN DNA-binding protein SMUBP-2 OS=Homo sapiens GN=IGHMBP2 PE=1 SV=3 512 927 8.0E-38
sp|P40694|SMBP2_MOUSE DNA-binding protein SMUBP-2 OS=Mus musculus GN=Ighmbp2 PE=1 SV=1 512 927 4.0E-35
sp|Q9EQN5|SMBP2_RAT DNA-binding protein SMUBP-2 OS=Rattus norvegicus GN=Ighmbp2 PE=1 SV=1 512 927 4.0E-35
sp|Q9HEH1|RENT1_NEUCR Regulator of nonsense transcripts 1 homolog OS=Neurospora crassa (strain ATCC 24698 / 74-OR23-1A / CBS 708.71 / DSM 1257 / FGSC 987) GN=2E4.130 PE=3 SV=1 511 928 3.0E-34
sp|P30771|NAM7_YEAST ATP-dependent helicase NAM7 OS=Saccharomyces cerevisiae (strain ATCC 204508 / S288c) GN=NAM7 PE=1 SV=1 511 928 1.0E-33
sp|Q60560|SMBP2_MESAU DNA-binding protein SMUBP-2 OS=Mesocricetus auratus GN=IGHMBP2 PE=1 SV=1 512 927 1.0E-32
sp|Q9VYS3|RENT1_DROME Regulator of nonsense transcripts 1 homolog OS=Drosophila melanogaster GN=Upf1 PE=1 SV=2 511 928 6.0E-32
sp|Q9FJR0|RENT1_ARATH Regulator of nonsense transcripts 1 homolog OS=Arabidopsis thaliana GN=UPF1 PE=1 SV=2 471 928 2.0E-31
sp|O94247|HCS1_SCHPO DNA polymerase alpha-associated DNA helicase A OS=Schizosaccharomyces pombe (strain 972 / ATCC 24843) GN=hcs1 PE=3 SV=1 494 930 4.0E-31
sp|Q54I89|RENT1_DICDI Regulator of nonsense transcripts 1 OS=Dictyostelium discoideum GN=upf1 PE=3 SV=1 512 928 2.0E-30
sp|Q57568|Y104_METJA Uncharacterized ATP-dependent helicase MJ0104 OS=Methanocaldococcus jannaschii (strain ATCC 43067 / DSM 2661 / JAL-1 / JCM 10045 / NBRC 100440) GN=MJ0104 PE=3 SV=1 621 927 5.0E-27
sp|P34243|HCS1_YEAST DNA polymerase alpha-associated DNA helicase A OS=Saccharomyces cerevisiae (strain ATCC 204508 / S288c) GN=HCS1 PE=1 SV=1 481 932 6.0E-27
sp|Q09820|RENT1_SCHPO ATP-dependent helicase upf1 OS=Schizosaccharomyces pombe (strain 972 / ATCC 24843) GN=upf1 PE=3 SV=2 511 928 1.0E-26
sp|Q0VGT4|ZGRF1_MOUSE Protein ZGRF1 OS=Mus musculus GN=Zgrf1 PE=1 SV=2 530 932 2.0E-23
sp|Q98TR3|RENT1_TAKRU Putative regulator of nonsense transcripts 1 OS=Takifugu rubripes GN=rent1 PE=3 SV=1 511 928 5.0E-23
sp|B6SFA4|MAA3_ARATH Probable helicase MAGATAMA 3 OS=Arabidopsis thaliana GN=MAA3 PE=2 SV=1 558 927 1.0E-22
sp|Q86YA3|ZGRF1_HUMAN Protein ZGRF1 OS=Homo sapiens GN=ZGRF1 PE=2 SV=3 518 932 2.0E-22
sp|O94387|YGSA_SCHPO Uncharacterized ATP-dependent helicase C29A10.10c OS=Schizosaccharomyces pombe (strain 972 / ATCC 24843) GN=SPBC29A10.10c PE=3 SV=1 613 927 9.0E-22
sp|Q00416|SEN1_YEAST Helicase SEN1 OS=Saccharomyces cerevisiae (strain ATCC 204508 / S288c) GN=SEN1 PE=1 SV=2 621 931 2.0E-20
sp|Q9BXT6|M10L1_HUMAN Putative helicase Mov10l1 OS=Homo sapiens GN=MOV10L1 PE=2 SV=1 455 928 8.0E-19
sp|Q99MV5|M10L1_MOUSE Putative helicase Mov10l1 OS=Mus musculus GN=Mov10l1 PE=1 SV=1 503 928 9.0E-18
sp|Q9EPU0|RENT1_MOUSE Regulator of nonsense transcripts 1 OS=Mus musculus GN=Upf1 PE=1 SV=2 511 733 2.0E-17
sp|Q92900|RENT1_HUMAN Regulator of nonsense transcripts 1 OS=Homo sapiens GN=UPF1 PE=1 SV=2 511 733 3.0E-17
sp|Q86AS0|Y4399_DICDI Probable helicase DDB_G0274399 OS=Dictyostelium discoideum GN=DDB_G0274399 PE=3 SV=1 638 931 1.0E-16
sp|Q1LXK5|M10B2_DANRE Putative helicase mov-10-B.2 OS=Danio rerio GN=mov10b.2 PE=3 SV=1 511 927 2.0E-16
sp|O76512|RENT1_CAEEL Regulator of nonsense transcripts 1 OS=Caenorhabditis elegans GN=smg-2 PE=1 SV=1 814 928 4.0E-16
sp|Q8GYD9|SDE3_ARATH Probable RNA helicase SDE3 OS=Arabidopsis thaliana GN=SDE3 PE=1 SV=1 512 923 8.0E-16
sp|A2AKX3|SETX_MOUSE Probable helicase senataxin OS=Mus musculus GN=Setx PE=1 SV=1 627 927 3.0E-15
sp|Q1LXK4|M10B1_DANRE Putative helicase mov-10-B.1 OS=Danio rerio GN=mov10b.1 PE=2 SV=2 511 927 3.0E-15
sp|Q6J5K9|ARMI_DROME Probable RNA helicase armi OS=Drosophila melanogaster GN=armi PE=1 SV=4 501 928 5.0E-15
sp|Q8R151|ZNFX1_MOUSE NFX1-type zinc finger-containing protein 1 OS=Mus musculus GN=Znfx1 PE=1 SV=3 809 928 4.0E-14
sp|Q9P2E3|ZNFX1_HUMAN NFX1-type zinc finger-containing protein 1 OS=Homo sapiens GN=ZNFX1 PE=2 SV=2 809 928 1.0E-13
sp|Q92355|SEN1_SCHPO Helicase sen1 OS=Schizosaccharomyces pombe (strain 972 / ATCC 24843) GN=sen1 PE=1 SV=1 845 927 1.0E-12
sp|Q92900|RENT1_HUMAN Regulator of nonsense transcripts 1 OS=Homo sapiens GN=UPF1 PE=1 SV=2 814 928 2.0E-12
sp|Q9EPU0|RENT1_MOUSE Regulator of nonsense transcripts 1 OS=Mus musculus GN=Upf1 PE=1 SV=2 814 928 2.0E-12
sp|Q5ZKD7|MOV10_CHICK Putative helicase MOV-10 OS=Gallus gallus GN=MOV10 PE=2 SV=1 499 928 5.0E-12
sp|Q7Z333|SETX_HUMAN Probable helicase senataxin OS=Homo sapiens GN=SETX PE=1 SV=4 820 927 3.0E-11
sp|Q9BYK8|HELZ2_HUMAN Helicase with zinc finger domain 2 OS=Homo sapiens GN=HELZ2 PE=1 SV=6 643 930 6.0E-10
sp|O74465|HRR1_SCHPO Helicase required for RNAi-mediated heterochromatin assembly 1 OS=Schizosaccharomyces pombe (strain 972 / ATCC 24843) GN=hrr1 PE=1 SV=2 820 950 2.0E-09
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GO

GO Term Description Terminal node
GO:0004386 helicase activity Yes
GO:0003674 molecular_function No
GO:0140657 ATP-dependent activity No
GO:0003824 catalytic activity No
GO:0140640 catalytic activity, acting on a nucleic acid No

SignalP

[Help with interpreting these statistics]
SignalP signal predicted Location
(based on Ymax)
D score
(significance: > 0.45)
No 1 - 24 0.45

Transmembrane Domains

(None)

Transcription Factor Class

(None)

Expression data

No expression data available for this genome

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 >OphauG2|6507
MRRAVLQDRVKATSEASPPLVYGTMLHEIFQEAMMANRWDLGFLGRVIDDVIKKHIEDLYIIKVDVAAAREHLQS
KMTELSHWARAFVSVEPRPEAVVEDRNGKKANMAITKLLDVEEHVWSPMYGLKGNIDATVEVVMADGAQQRTLTV
PFEVKTGRNANSSHMAQTALYTLLLTDRYDIDVACGILYYMETSKTMRIPSVRHELRHMVMQRNHLACYIRERSV
QLPPMLKNKHLCGRCYAKATCFVYHRLADEGDGETSGMGDKFDEAVKHLTPRHRDFFLKWEKLLTLEEKEGQKTK
RELWTMTSKEREKKSRCFANVVIEPGSAWVDGDNPRINRFHYTFVKQAAQAGFSFVESELTVGEPIVVSDEQGHF
ALAIGYVTAVRAQRISVAVDRRLHNARIRQAGFDERDNQVFASIMDVGAGQGASSSSSSCSSSSSSSSSSVPVLR
YRLDQDEFSNGMATVRNNLVQLMANQVAAADKLRRLIVDLAPPRFKPGPSWDQHGEAKDEELNIDQRRAVDKVMK
AQDYALVLGMPGTGKTTTIAHIIRALTAQGKSVLLTSHTHTAVDNILLKLRADKLGILRLGAAAKVHGEVRDFAH
VAGERFDSFAQIDEAWQSTPIVATTCLGINHAVFGQRGFDYCIVDEASQITLPICAGPIRLARAFVLVGDHNQLP
PVVRNEAARAGGLDVSLFKLLSDAHPAAVVSLEHQYRMCGDVMALSNTLIYNGRLRCGYEGLRSASLHIPDMAAL
ARLHHDGASLSSASLSSASLSCSSRAVCPAPLPGLCWLHDALAPSARVRFLSTDSLLPPAREVAHGKRIVNPAEV
RVVSLLVHALVATGVPPRNIGVMTHYRAQLFLLRDALRAHANVEMHTTDRFQGRDKDVVVLSLVRANDAGCIGDL
LRDWRRINVAFTRAKTKLLVVGSAATLACARRPTGRDAEPDLATDTPADGGRPDMLARFVALMEQRQWLHGLPPH
ALESHLVHDASAASQPPSLPALAPVSNNKPKNKPRAPGKENRPPQAPKRATIGARALLQDKLITRDVLNQMTDGA
YL*
Coding >OphauG2|6507
ATGCGCCGAGCCGTGCTCCAGGACCGCGTCAAGGCAACGAGCGAGGCGTCGCCGCCGCTTGTATACGGCACCATG
CTGCACGAGATATTCCAAGAGGCCATGATGGCTAACCGCTGGGACCTGGGCTTTCTCGGCCGCGTCATTGACGAT
GTCATCAAGAAGCACATTGAGGACCTGTACATTATCAAGGTTGACGTTGCAGCTGCTCGGGAGCACTTGCAGTCA
AAGATGACGGAGTTGAGTCACTGGGCCAGGGCCTTTGTCTCTGTAGAGCCCAGGCCCGAGGCCGTCGTTGAAGAC
CGCAATGGCAAAAAGGCAAACATGGCCATTACAAAACTTCTCGACGTGGAGGAACACGTTTGGTCGCCCATGTAC
GGGCTCAAGGGCAACATTGACGCAACAGTCGAGGTTGTCATGGCAGACGGTGCGCAGCAACGGACTCTGACGGTG
CCGTTCGAGGTCAAGACGGGCCGAAACGCCAACAGCAGCCACATGGCGCAGACGGCGCTGTACACGCTCCTCTTG
ACGGACCGCTACGACATTGACGTTGCCTGTGGCATCCTGTACTACATGGAGACGTCAAAGACGATGCGCATCCCC
AGCGTGCGGCACGAGCTGCGGCACATGGTTATGCAGCGCAACCACTTGGCGTGCTATATTCGCGAGCGTAGCGTG
CAACTGCCGCCAATGCTCAAGAACAAGCACCTGTGCGGCAGATGCTATGCCAAGGCGACGTGCTTTGTCTACCAC
AGGCTCGCGGATGAGGGAGATGGCGAGACGAGCGGCATGGGCGACAAGTTTGACGAGGCTGTCAAGCACCTGACG
CCAAGGCACCGTGACTTTTTCCTCAAGTGGGAGAAGCTGCTGACGCTGGAGGAAAAGGAGGGCCAAAAGACGAAG
CGCGAGCTGTGGACCATGACGAGCAAAGAGCGGGAGAAGAAGTCGCGATGCTTTGCCAACGTGGTGATTGAGCCG
GGGTCGGCGTGGGTGGATGGAGACAATCCGCGCATCAACCGCTTCCACTACACCTTTGTCAAGCAGGCAGCACAG
GCGGGCTTTTCCTTTGTCGAGTCTGAGCTGACGGTCGGGGAGCCAATAGTGGTGTCGGATGAGCAGGGCCACTTT
GCGCTGGCCATTGGATATGTCACGGCTGTGCGGGCGCAGAGAATCAGCGTGGCGGTGGACCGCAGGCTGCACAAT
GCTCGCATTCGGCAGGCGGGCTTTGACGAGAGGGATAACCAAGTCTTTGCCAGCATCATGGACGTGGGGGCGGGG
CAAGGGGCGTCTTCGTCTTCCTCGTCTTGTTCCTCTTCTTCCTCTTCTTCTTCTTCTTCTGTGCCAGTGCTTCGG
TACCGGCTGGACCAGGACGAATTCAGCAACGGCATGGCAACGGTGCGCAACAATCTGGTGCAGCTCATGGCCAAC
CAAGTAGCAGCAGCAGACAAGCTACGCAGGCTCATTGTCGACTTGGCCCCTCCGCGCTTCAAGCCTGGCCCCAGC
TGGGACCAGCACGGCGAGGCCAAGGATGAAGAGCTCAACATTGACCAGCGGCGCGCCGTGGACAAGGTGATGAAG
GCGCAAGACTACGCGCTGGTGCTGGGGATGCCGGGCACGGGCAAGACGACGACGATTGCGCACATTATCCGGGCC
CTGACGGCACAGGGCAAAAGCGTGCTGCTCACGTCGCACACGCACACGGCCGTGGACAATATCCTGCTCAAGCTG
CGGGCCGACAAGCTGGGCATCCTGCGGCTTGGGGCGGCGGCAAAGGTGCACGGCGAGGTGCGCGACTTTGCGCAC
GTGGCGGGCGAGCGCTTCGACTCGTTTGCGCAGATTGACGAGGCGTGGCAAAGCACGCCCATTGTGGCGACGACG
TGTCTGGGCATCAACCACGCCGTGTTTGGGCAGCGCGGCTTTGACTACTGCATCGTGGACGAGGCGTCGCAGATC
ACGCTGCCCATCTGCGCGGGCCCCATCCGGCTGGCGCGCGCCTTTGTGCTGGTGGGCGACCACAACCAGCTGCCG
CCCGTGGTGCGCAACGAGGCGGCGCGGGCGGGCGGGCTCGACGTCAGCCTCTTCAAGCTGCTGTCCGACGCGCAC
CCCGCCGCGGTGGTGAGCCTGGAGCACCAGTACCGCATGTGCGGCGACGTCATGGCGCTGAGCAACACGCTGATT
TACAATGGCCGGCTGCGCTGCGGCTACGAGGGGCTGCGGTCGGCCAGCCTGCACATTCCCGACATGGCGGCTCTG
GCGCGCCTGCACCACGACGGCGCGTCGCTGTCGTCGGCGTCGCTGTCGTCGGCGTCGCTGTCATGCTCGTCGCGC
GCCGTCTGCCCCGCCCCCCTGCCCGGCCTCTGCTGGCTCCACGACGCCCTCGCCCCCTCGGCCCGCGTGCGCTTC
CTCAGCACCGACTCGCTGCTCCCGCCCGCCCGCGAAGTGGCCCACGGCAAACGCATCGTCAACCCCGCCGAGGTG
CGCGTCGTCTCGCTGCTCGTCCACGCCCTGGTTGCCACGGGCGTGCCGCCGCGCAACATTGGCGTCATGACGCAC
TACCGCGCCCAGCTGTTCCTGCTGCGCGACGCCCTGCGCGCCCACGCCAACGTCGAAATGCACACCACGGACCGC
TTCCAGGGCCGCGACAAGGACGTTGTCGTGCTGAGCCTGGTGCGCGCCAATGACGCCGGCTGTATCGGCGACTTG
CTGCGCGACTGGCGCCGCATCAACGTTGCCTTTACCCGCGCCAAGACGAAGCTGCTTGTTGTTGGAAGCGCCGCA
ACGCTGGCGTGTGCCCGCCGCCCAACCGGTCGCGACGCAGAGCCAGACCTCGCCACCGACACCCCGGCAGACGGC
GGCCGCCCAGACATGCTGGCGCGCTTTGTCGCCCTCATGGAGCAGCGCCAGTGGCTCCATGGCCTGCCGCCCCAT
GCCCTCGAGAGCCACTTGGTCCACGACGCGAGCGCTGCCTCGCAGCCGCCGTCTCTGCCAGCCCTAGCCCCCGTA
AGCAACAACAAGCCCAAGAATAAGCCGCGCGCCCCAGGCAAGGAAAACCGTCCGCCCCAGGCCCCCAAGCGCGCC
ACCATTGGGGCGCGGGCCTTGCTGCAAGACAAGCTCATTACACGAGATGTTTTGAATCAAATGACGGACGGAGCA
TATCTCTAA
Transcript >OphauG2|6507
ATGCGCCGAGCCGTGCTCCAGGACCGCGTCAAGGCAACGAGCGAGGCGTCGCCGCCGCTTGTATACGGCACCATG
CTGCACGAGATATTCCAAGAGGCCATGATGGCTAACCGCTGGGACCTGGGCTTTCTCGGCCGCGTCATTGACGAT
GTCATCAAGAAGCACATTGAGGACCTGTACATTATCAAGGTTGACGTTGCAGCTGCTCGGGAGCACTTGCAGTCA
AAGATGACGGAGTTGAGTCACTGGGCCAGGGCCTTTGTCTCTGTAGAGCCCAGGCCCGAGGCCGTCGTTGAAGAC
CGCAATGGCAAAAAGGCAAACATGGCCATTACAAAACTTCTCGACGTGGAGGAACACGTTTGGTCGCCCATGTAC
GGGCTCAAGGGCAACATTGACGCAACAGTCGAGGTTGTCATGGCAGACGGTGCGCAGCAACGGACTCTGACGGTG
CCGTTCGAGGTCAAGACGGGCCGAAACGCCAACAGCAGCCACATGGCGCAGACGGCGCTGTACACGCTCCTCTTG
ACGGACCGCTACGACATTGACGTTGCCTGTGGCATCCTGTACTACATGGAGACGTCAAAGACGATGCGCATCCCC
AGCGTGCGGCACGAGCTGCGGCACATGGTTATGCAGCGCAACCACTTGGCGTGCTATATTCGCGAGCGTAGCGTG
CAACTGCCGCCAATGCTCAAGAACAAGCACCTGTGCGGCAGATGCTATGCCAAGGCGACGTGCTTTGTCTACCAC
AGGCTCGCGGATGAGGGAGATGGCGAGACGAGCGGCATGGGCGACAAGTTTGACGAGGCTGTCAAGCACCTGACG
CCAAGGCACCGTGACTTTTTCCTCAAGTGGGAGAAGCTGCTGACGCTGGAGGAAAAGGAGGGCCAAAAGACGAAG
CGCGAGCTGTGGACCATGACGAGCAAAGAGCGGGAGAAGAAGTCGCGATGCTTTGCCAACGTGGTGATTGAGCCG
GGGTCGGCGTGGGTGGATGGAGACAATCCGCGCATCAACCGCTTCCACTACACCTTTGTCAAGCAGGCAGCACAG
GCGGGCTTTTCCTTTGTCGAGTCTGAGCTGACGGTCGGGGAGCCAATAGTGGTGTCGGATGAGCAGGGCCACTTT
GCGCTGGCCATTGGATATGTCACGGCTGTGCGGGCGCAGAGAATCAGCGTGGCGGTGGACCGCAGGCTGCACAAT
GCTCGCATTCGGCAGGCGGGCTTTGACGAGAGGGATAACCAAGTCTTTGCCAGCATCATGGACGTGGGGGCGGGG
CAAGGGGCGTCTTCGTCTTCCTCGTCTTGTTCCTCTTCTTCCTCTTCTTCTTCTTCTTCTGTGCCAGTGCTTCGG
TACCGGCTGGACCAGGACGAATTCAGCAACGGCATGGCAACGGTGCGCAACAATCTGGTGCAGCTCATGGCCAAC
CAAGTAGCAGCAGCAGACAAGCTACGCAGGCTCATTGTCGACTTGGCCCCTCCGCGCTTCAAGCCTGGCCCCAGC
TGGGACCAGCACGGCGAGGCCAAGGATGAAGAGCTCAACATTGACCAGCGGCGCGCCGTGGACAAGGTGATGAAG
GCGCAAGACTACGCGCTGGTGCTGGGGATGCCGGGCACGGGCAAGACGACGACGATTGCGCACATTATCCGGGCC
CTGACGGCACAGGGCAAAAGCGTGCTGCTCACGTCGCACACGCACACGGCCGTGGACAATATCCTGCTCAAGCTG
CGGGCCGACAAGCTGGGCATCCTGCGGCTTGGGGCGGCGGCAAAGGTGCACGGCGAGGTGCGCGACTTTGCGCAC
GTGGCGGGCGAGCGCTTCGACTCGTTTGCGCAGATTGACGAGGCGTGGCAAAGCACGCCCATTGTGGCGACGACG
TGTCTGGGCATCAACCACGCCGTGTTTGGGCAGCGCGGCTTTGACTACTGCATCGTGGACGAGGCGTCGCAGATC
ACGCTGCCCATCTGCGCGGGCCCCATCCGGCTGGCGCGCGCCTTTGTGCTGGTGGGCGACCACAACCAGCTGCCG
CCCGTGGTGCGCAACGAGGCGGCGCGGGCGGGCGGGCTCGACGTCAGCCTCTTCAAGCTGCTGTCCGACGCGCAC
CCCGCCGCGGTGGTGAGCCTGGAGCACCAGTACCGCATGTGCGGCGACGTCATGGCGCTGAGCAACACGCTGATT
TACAATGGCCGGCTGCGCTGCGGCTACGAGGGGCTGCGGTCGGCCAGCCTGCACATTCCCGACATGGCGGCTCTG
GCGCGCCTGCACCACGACGGCGCGTCGCTGTCGTCGGCGTCGCTGTCGTCGGCGTCGCTGTCATGCTCGTCGCGC
GCCGTCTGCCCCGCCCCCCTGCCCGGCCTCTGCTGGCTCCACGACGCCCTCGCCCCCTCGGCCCGCGTGCGCTTC
CTCAGCACCGACTCGCTGCTCCCGCCCGCCCGCGAAGTGGCCCACGGCAAACGCATCGTCAACCCCGCCGAGGTG
CGCGTCGTCTCGCTGCTCGTCCACGCCCTGGTTGCCACGGGCGTGCCGCCGCGCAACATTGGCGTCATGACGCAC
TACCGCGCCCAGCTGTTCCTGCTGCGCGACGCCCTGCGCGCCCACGCCAACGTCGAAATGCACACCACGGACCGC
TTCCAGGGCCGCGACAAGGACGTTGTCGTGCTGAGCCTGGTGCGCGCCAATGACGCCGGCTGTATCGGCGACTTG
CTGCGCGACTGGCGCCGCATCAACGTTGCCTTTACCCGCGCCAAGACGAAGCTGCTTGTTGTTGGAAGCGCCGCA
ACGCTGGCGTGTGCCCGCCGCCCAACCGGTCGCGACGCAGAGCCAGACCTCGCCACCGACACCCCGGCAGACGGC
GGCCGCCCAGACATGCTGGCGCGCTTTGTCGCCCTCATGGAGCAGCGCCAGTGGCTCCATGGCCTGCCGCCCCAT
GCCCTCGAGAGCCACTTGGTCCACGACGCGAGCGCTGCCTCGCAGCCGCCGTCTCTGCCAGCCCTAGCCCCCGTA
AGCAACAACAAGCCCAAGAATAAGCCGCGCGCCCCAGGCAAGGAAAACCGTCCGCCCCAGGCCCCCAAGCGCGCC
ACCATTGGGGCGCGGGCCTTGCTGCAAGACAAGCTCATTACACGAGATGTTTTGAATCAAATGACGGACGGAGCA
TATCTCTAA
Gene >OphauG2|6507
ATGCGCCGAGCCGTGCTCCAGGACCGCGTCAAGGCAACGAGCGAGGCGTCGCCGCCGCTTGTATACGGCACCATG
CTGCACGAGATATTCCAAGAGGCCATGATGGCTAACCGCTGGGACCTGGGCTTTCTCGGCCGCGTCATTGACGAT
GTCATCAAGAAGCACATTGAGGACCTGTACATTATCAAGGTTGACGTTGCAGCTGCTCGGGAGCACTTGCAGTCA
AAGATGACGGAGTTGAGTCACTGGGCCAGGGCCTTTGTCTCTGTAGAGCCCAGGGTAAGTTTTTTTTTTTTTTCC
TTTTCTTTCTTTTTCCTTTTTTTCCCCTTTTTTTTAATCCTTGATGGCGTTGAAAGACTACGACTCTTGTTTTAC
TGACGCAAAAACATGTCTAGCCCGAGGCCGTCGTTGAAGACCGCAATGGCAAAAAGGCAAACATGGCCATTACAA
AACTTCTCGACGTGGAGGAACACGTTTGGTCGCCCATGTACGGGCTCAAGGGCAACATTGACGCAACAGTCGAGG
TTGTCATGGCAGACGGTGCGCAGCAACGGACTCTGACGGTGCCGTTCGAGGTCAAGACGGGCCGAAACGCCAACA
GCAGCCACATGGCGCAGACGGCGCTGTACACGCTCCTCTTGACGGACCGCTACGACATTGACGTTGCCTGTGGCA
TCCTGTACTACATGGAGACGTCAAAGACGATGCGCATCCCCAGCGTGCGGCACGAGCTGCGGCACATGGTTATGC
AGCGCAACCACTTGGCGTGCTATATTCGCGAGCGTAGCGTGCAACTGCCGCCAATGCTCAAGAACAAGCACCTGT
GCGGCAGATGCTATGCCAAGGCGACGTGCTTTGTCTACCACAGGCTCGCGGATGAGGGAGATGGCGAGACGAGCG
GCATGGGCGACAAGTTTGACGAGGCTGTCAAGCACCTGACGCCAAGGCACCGTGACTTTTTCCTCAAGTGGGAGA
AGCTGCTGACGCTGGAGGAAAAGGAGGGCCAAAAGACGAAGCGCGAGCTGTGGACCATGACGAGCAAAGAGCGGG
AGAAGAAGTCGCGATGCTTTGCCAACGTGGTGATTGAGCCGGGGTCGGCGTGGGTGGATGGAGACAATCCGCGCA
TCAACCGCTTCCACTACACCTTTGTCAAGCAGGCAGCACAGGCGGGCTTTTCCTTTGTCGAGTCTGAGCTGACGG
TCGGGGAGCCAATAGTGGTGTCGGATGAGCAGGGCCACTTTGCGCTGGCCATTGGATATGTCACGGCTGTGCGGG
CGCAGAGAATCAGCGTGGCGGTGGACCGCAGGCTGCACAATGCTCGCATTCGGCAGGCGGGCTTTGACGAGAGGG
ATAACCAAGTCTTTGCCAGCATCATGGACGTGGGGGCGGGGCAAGGGGCGTCTTCGTCTTCCTCGTCTTGTTCCT
CTTCTTCCTCTTCTTCTTCTTCTTCTGTGCCAGTGCTTCGGTACCGGCTGGACCAGGACGAATTCAGCAACGGCA
TGGCAACGGTGCGCAACAATCTGGTGCAGCTCATGGCCAACCAAGTAGCAGCAGCAGACAAGCTACGCAGGCTCA
TTGTCGACTTGGCCCCTCCGCGCTTCAAGCCTGGCCCCAGCTGGGACCAGCACGGCGAGGCCAAGGATGAAGAGC
TCAACATTGACCAGCGGCGCGCCGTGGACAAGGTGATGAAGGCGCAAGACTACGCGCTGGTGCTGGGGATGCCGG
GCACGGGCAAGACGACGACGATTGCGCACATTATCCGGGCCCTGACGGCACAGGGCAAAAGCGTGCTGCTCACGT
CGCACACGCACACGGCCGTGGACAATATCCTGCTCAAGCTGCGGGCCGACAAGCTGGGCATCCTGCGGCTTGGGG
CGGCGGCAAAGGTGCACGGCGAGGTGCGCGACTTTGCGCACGTGGCGGGCGAGCGCTTCGACTCGTTTGCGCAGA
TTGACGAGGCGTGGCAAAGCACGCCCATTGTGGCGACGACGTGTCTGGGCATCAACCACGCCGTGTTTGGGCAGC
GCGGCTTTGACTACTGCATCGTGGACGAGGCGTCGCAGATCACGCTGCCCATCTGCGCGGGCCCCATCCGGCTGG
CGCGCGCCTTTGTGCTGGTGGGCGACCACAACCAGCTGCCGCCCGTGGTGCGCAACGAGGCGGCGCGGGCGGGCG
GGCTCGACGTCAGCCTCTTCAAGCTGCTGTCCGACGCGCACCCCGCCGCGGTGGTGAGCCTGGAGCACCAGTACC
GCATGTGCGGCGACGTCATGGCGCTGAGCAACACGCTGATTTACAATGGCCGGCTGCGCTGCGGCTACGAGGGGC
TGCGGTCGGCCAGCCTGCACATTCCCGACATGGCGGCTCTGGCGCGCCTGCACCACGACGGCGCGTCGCTGTCGT
CGGCGTCGCTGTCGTCGGCGTCGCTGTCATGCTCGTCGCGCGCCGTCTGCCCCGCCCCCCTGCCCGGCCTCTGCT
GGCTCCACGACGCCCTCGCCCCCTCGGCCCGCGTGCGCTTCCTCAGCACCGACTCGCTGCTCCCGCCCGCCCGCG
AAGTGGCCCACGGCAAACGCATCGTCAACCCCGCCGAGGTGCGCGTCGTCTCGCTGCTCGTCCACGCCCTGGTTG
CCACGGGCGTGCCGCCGCGCAACATTGGCGTCATGACGCACTACCGCGCCCAGCTGTTCCTGCTGCGCGACGCCC
TGCGCGCCCACGCCAACGTCGAAATGCACACCACGGACCGCTTCCAGGGCCGCGACAAGGACGTTGTCGTGCTGA
GCCTGGTGCGCGCCAATGACGCCGGCTGTATCGGCGACTTGCTGCGCGACTGGCGCCGCATCAACGTTGCCTTTA
CCCGCGCCAAGACGAAGCTGCTTGTTGTTGGAAGCGCCGCAACGCTGGCGTGTGCCCGCCGCCCAACCGGTCGCG
ACGCAGAGCCAGACCTCGCCACCGACACCCCGGCAGACGGCGGCCGCCCAGACATGCTGGCGCGCTTTGTCGCCC
TCATGGAGCAGCGCCAGTGGCTCCATGGCCTGCCGCCCCATGCCCTCGAGAGCCACTTGGTCCACGACGCGAGCG
CTGCCTCGCAGCCGCCGTCTCTGCCAGCCCTAGCCCCCGTAAGCAACAACAAGCCCAAGAATAAGCCGCGCGCCC
CAGGCAAGGAAAACCGTCCGCCCCAGGCCCCCAAGCGCGCCACCATTGGGGCGCGGGCCTTGCTGCAAGACAAGC
TCATTACACGAGATGTTTTGAATCAAATGACGGACGGAGCATATCTCTAA

© 2022 - Robin Ohm - Utrecht University - The Netherlands

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