Fungal Genomics

at Utrecht University

General Properties

Protein IDOphauB2|7296
Gene name
LocationContig_77:83..2273
Strand+
Gene length (bp)2190
Transcript length (bp)2016
Coding sequence length (bp)2016
Protein length (aa) 672

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PFAM Domains

PFAM Domain ID Short name Long name E-value Start End
PF00004 AAA ATPase family associated with various cellular activities (AAA) 3.6E-11 40 165

Swissprot hits

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Swissprot ID Swissprot Description Start End E-value
sp|P0C1D3|CTF18_EMENI Chromosome transmission fidelity protein 18 OS=Emericella nidulans (strain FGSC A4 / ATCC 38163 / CBS 112.46 / NRRL 194 / M139) GN=ctf18 PE=3 SV=1 2 668 3.0E-148
sp|Q9USQ1|CTF18_SCHPO Chromosome transmission fidelity protein 18 OS=Schizosaccharomyces pombe (strain 972 / ATCC 24843) GN=ctf18 PE=1 SV=1 3 670 1.0E-40
sp|Q8BIW9|CTF18_MOUSE Chromosome transmission fidelity protein 18 homolog OS=Mus musculus GN=Chtf18 PE=1 SV=2 38 668 7.0E-36
sp|Q8WVB6|CTF18_HUMAN Chromosome transmission fidelity protein 18 homolog OS=Homo sapiens GN=CHTF18 PE=1 SV=1 38 668 5.0E-34
sp|P49956|CTF18_YEAST Chromosome transmission fidelity protein 18 OS=Saccharomyces cerevisiae (strain ATCC 204508 / S288c) GN=CTF18 PE=1 SV=1 2 394 4.0E-28
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Swissprot ID Swissprot Description Start End E-value
sp|P0C1D3|CTF18_EMENI Chromosome transmission fidelity protein 18 OS=Emericella nidulans (strain FGSC A4 / ATCC 38163 / CBS 112.46 / NRRL 194 / M139) GN=ctf18 PE=3 SV=1 2 668 3.0E-148
sp|Q9USQ1|CTF18_SCHPO Chromosome transmission fidelity protein 18 OS=Schizosaccharomyces pombe (strain 972 / ATCC 24843) GN=ctf18 PE=1 SV=1 3 670 1.0E-40
sp|Q8BIW9|CTF18_MOUSE Chromosome transmission fidelity protein 18 homolog OS=Mus musculus GN=Chtf18 PE=1 SV=2 38 668 7.0E-36
sp|Q8WVB6|CTF18_HUMAN Chromosome transmission fidelity protein 18 homolog OS=Homo sapiens GN=CHTF18 PE=1 SV=1 38 668 5.0E-34
sp|P49956|CTF18_YEAST Chromosome transmission fidelity protein 18 OS=Saccharomyces cerevisiae (strain ATCC 204508 / S288c) GN=CTF18 PE=1 SV=1 2 394 4.0E-28
sp|Q6NU40|CTF18_XENLA Chromosome transmission fidelity protein 18 homolog OS=Xenopus laevis GN=chtf18 PE=2 SV=1 2 252 1.0E-26
sp|O60182|RFC1_SCHPO Replication factor C subunit 1 OS=Schizosaccharomyces pombe (strain 972 / ATCC 24843) GN=rfc1 PE=1 SV=1 2 235 3.0E-17
sp|A6UWR5|RFCL_META3 Replication factor C large subunit OS=Methanococcus aeolicus (strain Nankai-3 / ATCC BAA-1280) GN=rfcL PE=3 SV=1 38 223 7.0E-15
sp|A3MS27|RFCL_PYRCJ Replication factor C large subunit OS=Pyrobaculum calidifontis (strain JCM 11548 / VA1) GN=rfcL PE=3 SV=1 26 223 1.0E-14
sp|P35600|RFC1_DROME Replication factor C subunit 1 OS=Drosophila melanogaster GN=Gnf1 PE=1 SV=2 2 252 1.0E-14
sp|Q54MH9|RFC1_DICDI Probable replication factor C subunit 1 OS=Dictyostelium discoideum GN=rfc1 PE=3 SV=1 5 295 4.0E-14
sp|Q2R2B4|RFC1_ORYSJ Replication factor C subunit 1 OS=Oryza sativa subsp. japonica GN=RFC1 PE=2 SV=2 38 223 6.0E-14
sp|Q58294|RFCL_METJA Replication factor C large subunit OS=Methanocaldococcus jannaschii (strain ATCC 43067 / DSM 2661 / JAL-1 / JCM 10045 / NBRC 100440) GN=rfcL PE=1 SV=1 2 223 8.0E-14
sp|P38630|RFC1_YEAST Replication factor C subunit 1 OS=Saccharomyces cerevisiae (strain ATCC 204508 / S288c) GN=RFC1 PE=1 SV=1 41 223 1.0E-13
sp|A9A6N2|RFCL_METM6 Replication factor C large subunit OS=Methanococcus maripaludis (strain C6 / ATCC BAA-1332) GN=rfcL PE=3 SV=1 38 223 3.0E-13
sp|A1RSA3|RFCL_PYRIL Replication factor C large subunit OS=Pyrobaculum islandicum (strain DSM 4184 / JCM 9189 / GEO3) GN=rfcL PE=3 SV=1 37 223 5.0E-13
sp|Q975D4|RFCL_SULTO Replication factor C large subunit OS=Sulfolobus tokodaii (strain DSM 16993 / JCM 10545 / NBRC 100140 / 7) GN=rfcL PE=3 SV=2 38 237 6.0E-13
sp|A4WGV3|RFCL_PYRAR Replication factor C large subunit OS=Pyrobaculum arsenaticum (strain DSM 13514 / JCM 11321) GN=rfcL PE=3 SV=1 37 223 7.0E-13
sp|P35601|RFC1_MOUSE Replication factor C subunit 1 OS=Mus musculus GN=Rfc1 PE=1 SV=2 38 208 1.0E-12
sp|A1RWU6|RFCL_THEPD Replication factor C large subunit OS=Thermofilum pendens (strain Hrk 5) GN=rfcL PE=3 SV=1 38 242 2.0E-12
sp|O29072|RFCL_ARCFU Replication factor C large subunit OS=Archaeoglobus fulgidus (strain ATCC 49558 / VC-16 / DSM 4304 / JCM 9628 / NBRC 100126) GN=rfcL PE=1 SV=1 37 223 2.0E-12
sp|A6VIW1|RFCL_METM7 Replication factor C large subunit OS=Methanococcus maripaludis (strain C7 / ATCC BAA-1331) GN=rfcL PE=3 SV=1 38 223 3.0E-12
sp|A4FZL6|RFCL_METM5 Replication factor C large subunit OS=Methanococcus maripaludis (strain C5 / ATCC BAA-1333) GN=rfcL PE=3 SV=1 38 223 3.0E-12
sp|B1YC69|RFCL_PYRNV Replication factor C large subunit OS=Pyrobaculum neutrophilum (strain DSM 2338 / JCM 9278 / V24Sta) GN=rfcL PE=3 SV=1 37 223 4.0E-12
sp|Q4JAB1|RFCL_SULAC Replication factor C large subunit OS=Sulfolobus acidocaldarius (strain ATCC 33909 / DSM 639 / JCM 8929 / NBRC 15157 / NCIMB 11770) GN=rfcL PE=3 SV=1 34 223 5.0E-12
sp|Q8ZYK3|RFCL_PYRAE Replication factor C large subunit OS=Pyrobaculum aerophilum (strain ATCC 51768 / IM2 / DSM 7523 / JCM 9630 / NBRC 100827) GN=rfcL PE=3 SV=1 37 223 5.0E-12
sp|P35251|RFC1_HUMAN Replication factor C subunit 1 OS=Homo sapiens GN=RFC1 PE=1 SV=4 2 209 9.0E-12
sp|A6URV8|RFCL_METVS Replication factor C large subunit OS=Methanococcus vannielii (strain SB / ATCC 35089 / DSM 1224) GN=rfcL PE=3 SV=1 25 223 1.0E-11
sp|Q6M0E9|RFCL_METMP Replication factor C large subunit OS=Methanococcus maripaludis (strain S2 / LL) GN=rfcL PE=3 SV=1 38 223 2.0E-11
sp|A5UMF4|RFCL_METS3 Replication factor C large subunit OS=Methanobrevibacter smithii (strain PS / ATCC 35061 / DSM 861) GN=rfcL PE=3 SV=1 38 223 3.0E-11
sp|Q2NH88|RFCL_METST Replication factor C large subunit OS=Methanosphaera stadtmanae (strain ATCC 43021 / DSM 3091 / JCM 11832 / MCB-3) GN=rfcL PE=3 SV=1 38 240 3.0E-11
sp|Q8TZC5|RFCL_METKA Replication factor C large subunit OS=Methanopyrus kandleri (strain AV19 / DSM 6324 / JCM 9639 / NBRC 100938) GN=rfcL PE=3 SV=1 38 223 4.0E-11
sp|Q9YBS5|RFCL_AERPE Replication factor C large subunit OS=Aeropyrum pernix (strain ATCC 700893 / DSM 11879 / JCM 9820 / NBRC 100138 / K1) GN=rfcL PE=3 SV=2 41 252 6.0E-11
sp|A2SQR6|RFCL_METLZ Replication factor C large subunit OS=Methanocorpusculum labreanum (strain ATCC 43576 / DSM 4855 / Z) GN=rfcL PE=3 SV=1 40 239 3.0E-10
sp|P60373|RFCL_NANEQ Replication factor C large subunit OS=Nanoarchaeum equitans (strain Kin4-M) GN=rfcL PE=3 SV=1 38 246 1.0E-09
sp|Q6NU40|CTF18_XENLA Chromosome transmission fidelity protein 18 homolog OS=Xenopus laevis GN=chtf18 PE=2 SV=1 342 668 2.0E-09
sp|Q8TPU4|RFCL_METAC Replication factor C large subunit OS=Methanosarcina acetivorans (strain ATCC 35395 / DSM 2834 / JCM 12185 / C2A) GN=rfcL PE=3 SV=1 3 223 3.0E-09
sp|A8AC24|RFCL_IGNH4 Replication factor C large subunit OS=Ignicoccus hospitalis (strain KIN4/I / DSM 18386 / JCM 14125) GN=rfcL PE=3 SV=1 41 242 6.0E-09
sp|Q18GQ9|RFCL_HALWD Replication factor C large subunit OS=Haloquadratum walsbyi (strain DSM 16790 / HBSQ001) GN=rfcL PE=3 SV=1 40 255 6.0E-09
sp|A2BL93|RFCL_HYPBU Replication factor C large subunit OS=Hyperthermus butylicus (strain DSM 5456 / JCM 9403 / PLM1-5) GN=rfcL PE=3 SV=1 38 237 6.0E-09
sp|Q9UXF6|RFCL_SULSO Replication factor C large subunit OS=Sulfolobus solfataricus (strain ATCC 35092 / DSM 1617 / JCM 11322 / P2) GN=rfcL PE=1 SV=1 38 237 8.0E-09
sp|A3DNV8|RFCL_STAMF Replication factor C large subunit OS=Staphylothermus marinus (strain ATCC 43588 / DSM 3639 / JCM 9404 / F1) GN=rfcL PE=3 SV=1 38 241 8.0E-09
sp|O26342|RFCL_METTH Replication factor C large subunit OS=Methanothermobacter thermautotrophicus (strain ATCC 29096 / DSM 1053 / JCM 10044 / NBRC 100330 / Delta H) GN=rfcL PE=1 SV=1 38 240 8.0E-09
sp|B9LPV1|RFCL_HALLT Replication factor C large subunit OS=Halorubrum lacusprofundi (strain ATCC 49239 / DSM 5036 / JCM 8891 / ACAM 34) GN=rfcL PE=3 SV=1 34 239 8.0E-09
sp|Q8Q084|RFCL_METMA Replication factor C large subunit OS=Methanosarcina mazei (strain ATCC BAA-159 / DSM 3647 / Goe1 / Go1 / JCM 11833 / OCM 88) GN=rfcL PE=3 SV=1 3 239 1.0E-08
sp|C3MVD2|RFCL_SULIM Replication factor C large subunit OS=Sulfolobus islandicus (strain M.14.25 / Kamchatka #1) GN=rfcL PE=3 SV=1 37 237 2.0E-08
sp|C3N5N1|RFCL_SULIA Replication factor C large subunit OS=Sulfolobus islandicus (strain M.16.27) GN=rfcL PE=3 SV=1 37 237 2.0E-08
sp|C3NHF4|RFCL_SULIN Replication factor C large subunit OS=Sulfolobus islandicus (strain Y.N.15.51 / Yellowstone #2) GN=rfcL PE=3 SV=1 37 237 3.0E-08
sp|C3NE95|RFCL_SULIY Replication factor C large subunit OS=Sulfolobus islandicus (strain Y.G.57.14 / Yellowstone #1) GN=rfcL PE=3 SV=1 37 237 4.0E-08
sp|C3MQ13|RFCL_SULIL Replication factor C large subunit OS=Sulfolobus islandicus (strain L.S.2.15 / Lassen #1) GN=rfcL PE=3 SV=1 37 237 4.0E-08
sp|C4KHA7|RFCL_SULIK Replication factor C large subunit OS=Sulfolobus islandicus (strain M.16.4 / Kamchatka #3) GN=rfcL PE=3 SV=1 37 237 5.0E-08
sp|Q46AT6|RFCL_METBF Replication factor C large subunit OS=Methanosarcina barkeri (strain Fusaro / DSM 804) GN=rfcL PE=3 SV=1 38 239 5.0E-08
sp|Q0W3P4|RFCL_METAR Replication factor C large subunit OS=Methanocella arvoryzae (strain DSM 22066 / NBRC 105507 / MRE50) GN=rfcL PE=3 SV=1 5 219 5.0E-08
sp|A1RV38|RFCS2_PYRIL Replication factor C small subunit 2 OS=Pyrobaculum islandicum (strain DSM 4184 / JCM 9189 / GEO3) GN=rfcS2 PE=3 SV=1 40 223 8.0E-08
sp|Q5V1F7|RFCL_HALMA Replication factor C large subunit OS=Haloarcula marismortui (strain ATCC 43049 / DSM 3752 / JCM 8966 / VKM B-1809) GN=rfcL PE=3 SV=1 34 219 1.0E-07
sp|A7I781|RFCL_METB6 Replication factor C large subunit OS=Methanoregula boonei (strain 6A8) GN=rfcL PE=3 SV=1 37 234 1.0E-07
sp|Q9D0F6|RFC5_MOUSE Replication factor C subunit 5 OS=Mus musculus GN=Rfc5 PE=1 SV=1 40 114 2.0E-07
sp|Q12TX1|RFCL_METBU Replication factor C large subunit OS=Methanococcoides burtonii (strain DSM 6242 / NBRC 107633 / OCM 468 / ACE-M) GN=rfcL PE=3 SV=1 3 223 3.0E-07
sp|P40937|RFC5_HUMAN Replication factor C subunit 5 OS=Homo sapiens GN=RFC5 PE=1 SV=1 40 114 3.0E-07
sp|Q8ZWS2|RFCS2_PYRAE Replication factor C small subunit 2 OS=Pyrobaculum aerophilum (strain ATCC 51768 / IM2 / DSM 7523 / JCM 9630 / NBRC 100827) GN=rfcS2 PE=3 SV=1 40 223 3.0E-07
sp|A4WLY0|RFCS2_PYRAR Replication factor C small subunit 2 OS=Pyrobaculum arsenaticum (strain DSM 13514 / JCM 11321) GN=rfcS2 PE=3 SV=1 3 223 4.0E-07
sp|Q8ZYK4|RFCS1_PYRAE Replication factor C small subunit 1 OS=Pyrobaculum aerophilum (strain ATCC 51768 / IM2 / DSM 7523 / JCM 9630 / NBRC 100827) GN=rfcS1 PE=3 SV=1 40 119 6.0E-07
sp|A1RSA2|RFCS1_PYRIL Replication factor C small subunit 1 OS=Pyrobaculum islandicum (strain DSM 4184 / JCM 9189 / GEO3) GN=rfcS1 PE=3 SV=1 40 119 7.0E-07
sp|A4WGV2|RFCS1_PYRAR Replication factor C small subunit 1 OS=Pyrobaculum arsenaticum (strain DSM 13514 / JCM 11321) GN=rfcS1 PE=3 SV=1 40 119 8.0E-07
sp|A3CTR4|RFCL_METMJ Replication factor C large subunit OS=Methanoculleus marisnigri (strain ATCC 35101 / DSM 1498 / JR1) GN=rfcL PE=3 SV=1 38 239 8.0E-07
sp|Q2FQR4|RFCL_METHJ Replication factor C large subunit OS=Methanospirillum hungatei JF-1 (strain ATCC 27890 / DSM 864 / NBRC 100397 / JF-1) GN=rfcL PE=3 SV=1 40 223 9.0E-07
sp|Q7XRX1|RFC4_ORYSJ Replication factor C subunit 4 OS=Oryza sativa subsp. japonica GN=RFC4 PE=2 SV=2 40 119 2.0E-06
sp|Q9C587|RFC1_ARATH Replication factor C subunit 1 OS=Arabidopsis thaliana GN=RFC1 PE=2 SV=1 38 118 6.0E-06
sp|Q96QE3|ATAD5_HUMAN ATPase family AAA domain-containing protein 5 OS=Homo sapiens GN=ATAD5 PE=1 SV=4 25 104 6.0E-06
sp|P37476|FTSH_BACSU ATP-dependent zinc metalloprotease FtsH OS=Bacillus subtilis (strain 168) GN=ftsH PE=1 SV=1 38 146 8.0E-06
sp|Q9HPI4|RFCL_HALSA Replication factor C large subunit OS=Halobacterium salinarum (strain ATCC 700922 / JCM 11081 / NRC-1) GN=rfcL PE=3 SV=2 38 219 8.0E-06
sp|B0R601|RFCL_HALS3 Replication factor C large subunit OS=Halobacterium salinarum (strain ATCC 29341 / DSM 671 / R1) GN=rfcL PE=3 SV=1 38 219 8.0E-06
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GO

GO Term Description Terminal node
GO:0005524 ATP binding Yes
GO:0016887 ATP hydrolysis activity Yes
GO:0017076 purine nucleotide binding No
GO:0005488 binding No
GO:0016787 hydrolase activity No
GO:0003674 molecular_function No
GO:0035639 purine ribonucleoside triphosphate binding No
GO:0000166 nucleotide binding No
GO:0043167 ion binding No
GO:0032553 ribonucleotide binding No
GO:0097367 carbohydrate derivative binding No
GO:0016817 hydrolase activity, acting on acid anhydrides No
GO:0017111 nucleoside-triphosphatase activity No
GO:0003824 catalytic activity No
GO:0097159 organic cyclic compound binding No
GO:1901265 nucleoside phosphate binding No
GO:0016818 hydrolase activity, acting on acid anhydrides, in phosphorus-containing anhydrides No
GO:0032555 purine ribonucleotide binding No
GO:1901363 heterocyclic compound binding No
GO:0032559 adenyl ribonucleotide binding No
GO:0036094 small molecule binding No
GO:0016462 pyrophosphatase activity No
GO:0030554 adenyl nucleotide binding No
GO:0043168 anion binding No

SignalP

[Help with interpreting these statistics]
SignalP signal predicted Location
(based on Ymax)
D score
(significance: > 0.45)
No 1 - 25 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 >OphauB2|7296
MVLGWLKKWDALVFPDMARRRKRARGNRHDAEPETYAKVLLLTGPPGLGKTTLAHVCARQAGYEVLEINASDDRG
RNVVNGQIRSCLGTQSIRTVSQGSKPARPVCVVVDEVDGAVSGSAASGEGGFISALVNLVVEGDSFAGGKGRSRA
SDGFEQKRPLILICNDLYHVSLRRLRQAGVAEIIHVGRPSLDAVVARLVSVFEREGIRCEKGAARKLCEAAWGME
SSSRGRASLVEGDLRAIMVVGEWVAGRLRATAGTVLTRQWVEAYLAADLACSGGARGLARANTADIVRRLFCTGG
GFPAPPAATRLVTTRLDEQLVPRAALGLGEHVKKHTLERLEHMVSASGDVGAILSGVVAEYPLCDYSDDCHLGRA
NQAYDWLHFFDACQTRLYASQEWQLAPYLSQPVLACHVLFASPRNHHLHHRPSDSADSSALPFSGPRADWLAHEA
EKYARAQLHALHAHLPPRLVRALGSPGGLATLLVPLLLRIVSPQVRPVAVGPSASVVVRRQSERQLVLRACAVLA
EVGVELRRGSVEGGGTQLVYRLEPDLDALSFFQTGAAPAPTRYAVRHVLHQELDRMLALKHAQARQARLGLGPAA
LPSTLAPGGGMPSLAAAAPLVKKDFFGRVVETSLVGEARQWQQPRVWFTFHEGLNNAVRKPMTLDEVMRVL*
Coding >OphauB2|7296
ATGGTGCTCGGCTGGCTCAAGAAGTGGGACGCGCTCGTCTTTCCCGACATGGCGCGACGCCGCAAGCGCGCCCGC
GGCAATCGGCACGACGCGGAGCCCGAGACGTACGCAAAAGTGCTCTTGCTCACGGGCCCGCCCGGCCTGGGAAAG
ACGACGCTGGCGCATGTATGTGCGCGGCAGGCCGGGTACGAGGTGCTGGAGATTAACGCCAGCGACGACCGGGGG
CGCAACGTGGTGAATGGGCAGATTCGCAGCTGTCTGGGCACGCAGAGCATCCGGACGGTGAGCCAGGGAAGCAAG
CCCGCGCGCCCCGTGTGCGTGGTGGTGGATGAGGTGGACGGCGCGGTTTCTGGCTCTGCGGCGTCGGGCGAGGGC
GGGTTTATCAGTGCGCTGGTTAATCTCGTTGTTGAGGGCGACTCTTTTGCGGGCGGCAAGGGGCGGTCGCGCGCC
TCGGATGGGTTTGAGCAGAAGCGTCCGCTTATTTTAATCTGCAACGACTTGTACCACGTCTCGCTGCGTCGGCTG
CGGCAGGCTGGTGTGGCTGAGATTATCCATGTTGGGCGGCCGTCGCTAGACGCCGTGGTGGCGCGCCTCGTGTCT
GTTTTTGAGCGCGAGGGTATACGTTGCGAAAAGGGCGCGGCGCGCAAACTGTGCGAGGCGGCGTGGGGCATGGAG
AGCAGCAGTCGGGGGAGAGCGAGTCTGGTGGAGGGCGACTTGCGCGCCATCATGGTGGTGGGCGAGTGGGTGGCT
GGCCGGCTGCGCGCCACGGCGGGCACGGTGCTGACGCGCCAATGGGTCGAGGCCTATCTCGCTGCCGACTTGGCC
TGCAGCGGCGGAGCAAGAGGCCTCGCGCGCGCAAACACGGCAGACATTGTGCGCCGCCTCTTTTGCACCGGCGGC
GGCTTCCCTGCTCCTCCTGCTGCTACTCGTCTCGTTACAACTAGACTGGATGAGCAGCTTGTCCCGCGCGCCGCC
CTCGGTCTCGGCGAACATGTAAAGAAGCACACTCTTGAGCGCCTCGAGCACATGGTCTCTGCCAGCGGCGACGTG
GGCGCCATCCTCTCCGGCGTGGTGGCAGAGTATCCCCTCTGCGACTATTCCGACGACTGCCACCTCGGCCGCGCC
AACCAGGCCTACGACTGGCTCCATTTCTTCGACGCCTGCCAGACTCGTCTCTACGCCAGTCAGGAATGGCAGCTT
GCGCCCTATCTCTCCCAACCCGTCCTAGCCTGCCATGTTTTATTCGCCTCGCCGCGCAACCACCACCTCCACCAC
CGCCCCTCTGACTCTGCCGACTCTTCTGCACTTCCGTTTTCCGGCCCTCGCGCAGACTGGCTGGCCCACGAGGCG
GAAAAGTATGCGCGCGCTCAGCTTCACGCCCTGCATGCTCATCTTCCGCCGCGGCTGGTTCGCGCGCTCGGCAGT
CCGGGCGGGTTGGCCACTCTGCTTGTTCCGCTTCTGCTACGCATCGTCTCGCCCCAGGTCCGGCCCGTGGCTGTT
GGGCCGTCGGCGTCGGTCGTGGTGCGCCGGCAGAGTGAGCGGCAGCTAGTGTTGCGTGCGTGCGCCGTCTTGGCA
GAGGTGGGCGTCGAGTTGCGGCGCGGGTCTGTTGAGGGAGGGGGGACGCAGCTTGTTTACCGCTTGGAGCCAGAC
CTCGACGCCCTCTCCTTCTTCCAAACCGGCGCCGCCCCAGCCCCCACGCGCTACGCCGTGCGCCACGTCCTCCAC
CAGGAACTCGACCGCATGCTCGCCCTCAAGCACGCCCAAGCACGACAGGCCCGCCTCGGCCTCGGCCCCGCGGCG
CTGCCGTCAACTCTTGCACCTGGCGGCGGCATGCCAAGTCTTGCTGCTGCTGCGCCGCTCGTCAAAAAGGACTTT
TTTGGACGCGTCGTCGAGACGAGTCTTGTTGGCGAGGCGCGGCAGTGGCAGCAGCCTAGGGTGTGGTTTACCTTT
CACGAGGGACTGAATAATGCGGTGCGCAAGCCCATGACGCTCGACGAGGTGATGAGGGTGCTCTAA
Transcript >OphauB2|7296
ATGGTGCTCGGCTGGCTCAAGAAGTGGGACGCGCTCGTCTTTCCCGACATGGCGCGACGCCGCAAGCGCGCCCGC
GGCAATCGGCACGACGCGGAGCCCGAGACGTACGCAAAAGTGCTCTTGCTCACGGGCCCGCCCGGCCTGGGAAAG
ACGACGCTGGCGCATGTATGTGCGCGGCAGGCCGGGTACGAGGTGCTGGAGATTAACGCCAGCGACGACCGGGGG
CGCAACGTGGTGAATGGGCAGATTCGCAGCTGTCTGGGCACGCAGAGCATCCGGACGGTGAGCCAGGGAAGCAAG
CCCGCGCGCCCCGTGTGCGTGGTGGTGGATGAGGTGGACGGCGCGGTTTCTGGCTCTGCGGCGTCGGGCGAGGGC
GGGTTTATCAGTGCGCTGGTTAATCTCGTTGTTGAGGGCGACTCTTTTGCGGGCGGCAAGGGGCGGTCGCGCGCC
TCGGATGGGTTTGAGCAGAAGCGTCCGCTTATTTTAATCTGCAACGACTTGTACCACGTCTCGCTGCGTCGGCTG
CGGCAGGCTGGTGTGGCTGAGATTATCCATGTTGGGCGGCCGTCGCTAGACGCCGTGGTGGCGCGCCTCGTGTCT
GTTTTTGAGCGCGAGGGTATACGTTGCGAAAAGGGCGCGGCGCGCAAACTGTGCGAGGCGGCGTGGGGCATGGAG
AGCAGCAGTCGGGGGAGAGCGAGTCTGGTGGAGGGCGACTTGCGCGCCATCATGGTGGTGGGCGAGTGGGTGGCT
GGCCGGCTGCGCGCCACGGCGGGCACGGTGCTGACGCGCCAATGGGTCGAGGCCTATCTCGCTGCCGACTTGGCC
TGCAGCGGCGGAGCAAGAGGCCTCGCGCGCGCAAACACGGCAGACATTGTGCGCCGCCTCTTTTGCACCGGCGGC
GGCTTCCCTGCTCCTCCTGCTGCTACTCGTCTCGTTACAACTAGACTGGATGAGCAGCTTGTCCCGCGCGCCGCC
CTCGGTCTCGGCGAACATGTAAAGAAGCACACTCTTGAGCGCCTCGAGCACATGGTCTCTGCCAGCGGCGACGTG
GGCGCCATCCTCTCCGGCGTGGTGGCAGAGTATCCCCTCTGCGACTATTCCGACGACTGCCACCTCGGCCGCGCC
AACCAGGCCTACGACTGGCTCCATTTCTTCGACGCCTGCCAGACTCGTCTCTACGCCAGTCAGGAATGGCAGCTT
GCGCCCTATCTCTCCCAACCCGTCCTAGCCTGCCATGTTTTATTCGCCTCGCCGCGCAACCACCACCTCCACCAC
CGCCCCTCTGACTCTGCCGACTCTTCTGCACTTCCGTTTTCCGGCCCTCGCGCAGACTGGCTGGCCCACGAGGCG
GAAAAGTATGCGCGCGCTCAGCTTCACGCCCTGCATGCTCATCTTCCGCCGCGGCTGGTTCGCGCGCTCGGCAGT
CCGGGCGGGTTGGCCACTCTGCTTGTTCCGCTTCTGCTACGCATCGTCTCGCCCCAGGTCCGGCCCGTGGCTGTT
GGGCCGTCGGCGTCGGTCGTGGTGCGCCGGCAGAGTGAGCGGCAGCTAGTGTTGCGTGCGTGCGCCGTCTTGGCA
GAGGTGGGCGTCGAGTTGCGGCGCGGGTCTGTTGAGGGAGGGGGGACGCAGCTTGTTTACCGCTTGGAGCCAGAC
CTCGACGCCCTCTCCTTCTTCCAAACCGGCGCCGCCCCAGCCCCCACGCGCTACGCCGTGCGCCACGTCCTCCAC
CAGGAACTCGACCGCATGCTCGCCCTCAAGCACGCCCAAGCACGACAGGCCCGCCTCGGCCTCGGCCCCGCGGCG
CTGCCGTCAACTCTTGCACCTGGCGGCGGCATGCCAAGTCTTGCTGCTGCTGCGCCGCTCGTCAAAAAGGACTTT
TTTGGACGCGTCGTCGAGACGAGTCTTGTTGGCGAGGCGCGGCAGTGGCAGCAGCCTAGGGTGTGGTTTACCTTT
CACGAGGGACTGAATAATGCGGTGCGCAAGCCCATGACGCTCGACGAGGTGATGAGGGTGCTCTAA
Gene >OphauB2|7296
ATGGTGCTCGGCTGGCTCAAGAAGTGGGACGCGCTCGTCTTTCCCGACATGGCGCGACGCCGCAAGCGCGCCCGC
GGCAATCGGCACGACGCGGAGCCCGAGACGTACGCAAAAGTGCTCTTGCTCACGGGCCCGCCCGGCCTGGGAAAG
ACGACGCTGGCGCATGTATGTGCGCGGCAGGCCGGGTACGAGGTGCTGGAGATTAACGCCAGCGACGACCGGGGG
CGCAACGTGGTGAATGGGCAGATTCGCAGCTGTCTGGGCACGCAGAGCATCCGGACGGTGAGCCAGGGAAGCAAG
CCCGCGCGCCCCGTGTGCGTGGTGGTGGATGAGGTGGACGGCGCGGTTTCTGGCTCTGCGGCGTCGGGCGAGGGC
GGGTTTATCAGTGCGCTGGTTAATCTCGTTGTTGAGGGCGACTCTTTTGCGGGCGGCAAGGGGCGGTCGCGCGCC
TCGGATGGGTTTGAGCAGAAGCGTCCGCTTATTTTAATCTGCAACGACTTGTACCACGTCTCGCTGCGTCGGCTG
CGGCAGGCTGGTGTGGCTGAGATTATCCATGTTGGGCGGCCGTCGCTAGACGCCGTGGTGGCGCGCCTCGTGTCT
GTTTTTGAGCGCGAGGGTATACGTTGCGAAAAGGGCGCGGCGCGCAAACTGTGCGAGGCGGCGTGGGGCATGGAG
AGCAGCAGTCGGGGGAGAGCGAGTCTGGTGGAGGGCGACTTGCGCGCCATCATGGTGGTGGGCGAGTGGGTGGCT
GGCCGGCTGCGCGCCACGGCGGGCACGGTGCTGACGCGCCAATGGGTCGAGGCCTATCTCGCTGCCGACTTGGCC
TGCAGCGGCGGAGCAAGAGGCCTCGCGCGCGCAAACACGGCAGACATTGTGCGCCGCCTCTTTTGCACCGGCGGC
GGCTTCCCTGCTCCTCCTGCTGCTACTCGTCTCGTTACAACTAGACTGGATGAGCAGCTTGTCCCGCGCGCCGCC
CTCGGTCTCGGCGAACATGTAAAGAAGCACACTCTTGAGCGCCTCGAGCACATGGTCTCTGCCAGCGGCGACGTG
GGCGCCATCCTCTCCGGCGTGGTGGCAGAGTATCCCCTCTGCGACTATTCCGACGACTGCCACCTCGGCCGCGCC
AACCAGGCCTACGACTGGCTCCATTTCTTCGACGCCTGCCAGACTCGTCTCTACGCCAGTCAGGAATGGCAGCTT
GCGCCCTATCTCTCCCAACCCGTCCTAGCCTGCCATGTTTTATTCGCCTCGCCGCGCAACCACCACCTCCACCAC
CGCCCCTCTGACTCTGCCGACTCTTCTGCACTTCCGTTTTCCGGCCCTCGCGCAGACTGGCTGGCCCACGAGGCG
GAAAAGTATGCGCGCGCTCAGCTTCACGCCCTGCATGCTCATCTTCCGCCGCGGCTGGTTCGCGCGCTCGGCAGT
CCGGGCGGGTTGGCCACTCTGCTTGTTCCGCTTCTGCTACGCATCGTCTCGCCCCAGGTCCGGCCCGTGGCTGTT
GGGCCGTCGGCGTCGGTCGTGGTGCGCCGGCAGAGTGAGCGGCAGCTAGTGTTGCGTGCGTGCGCCGTCTTGGCA
GAGGTGGGCGTCGAGTTGCGGCGCGGGTCTGTTGAGGGAGGGGGGACGCAGCTTGTTTACCGCTTGGAGCCGTAT
GTCCTTGTCTATCCTTGGCTTTTGTTTCTCCCTCGCTCCCTTTTCTCTCCATCCATCCTTGGCTTTCCTCCCTCG
CTCCCTCTTCTCTCCATCCATCCTTTATTTTTTACCCTCTTCTCTATCCCTACCTCTCCTCTTGCAAAAACATTC
TCTAACGCCCACTCTAATAGAGACCTCGACGCCCTCTCCTTCTTCCAAACCGGCGCCGCCCCAGCCCCCACGCGC
TACGCCGTGCGCCACGTCCTCCACCAGGAACTCGACCGCATGCTCGCCCTCAAGCACGCCCAAGCACGACAGGCC
CGCCTCGGCCTCGGCCCCGCGGCGCTGCCGTCAACTCTTGCACCTGGCGGCGGCATGCCAAGTCTTGCTGCTGCT
GCGCCGCTCGTCAAAAAGGACTTTTTTGGACGCGTCGTCGAGACGAGTCTTGTTGGCGAGGCGCGGCAGTGGCAG
CAGCCTAGGGTGTGGTTTACCTTTCACGAGGGACTGAATAATGCGGTGCGCAAGCCCATGACGCTCGACGAGGTG
ATGAGGGTGCTCTAA

© 2022 - Robin Ohm - Utrecht University - The Netherlands

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