Fungal Genomics

at Utrecht University

General Properties

Protein IDOphun1|3557
Gene name
LocationContig_317:10185..12615
Strand-
Gene length (bp)2430
Transcript length (bp)2322
Coding sequence length (bp)2322
Protein length (aa) 774

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PFAM Domains

PFAM Domain ID Short name Long name E-value Start End
PF00916 Sulfate_transp Sulfate permease family 2.8E-103 79 469
PF01740 STAS STAS domain 3.4E-06 553 669

Swissprot hits

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Swissprot ID Swissprot Description Start End E-value
sp|P23622|CYS14_NEUCR Sulfate permease 2 OS=Neurospora crassa (strain ATCC 24698 / 74-OR23-1A / CBS 708.71 / DSM 1257 / FGSC 987) GN=cys-14 PE=2 SV=3 35 758 0.0E+00
sp|O74377|SULH1_SCHPO Probable sulfate permease C3H7.02 OS=Schizosaccharomyces pombe (strain 972 / ATCC 24843) GN=SPBC3H7.02 PE=3 SV=1 36 707 2.0E-151
sp|Q9URY8|SULH2_SCHPO Probable sulfate permease C869.05c OS=Schizosaccharomyces pombe (strain 972 / ATCC 24843) GN=SPAC869.05c PE=1 SV=1 38 685 2.0E-150
sp|P38359|SUL1_YEAST Sulfate permease 1 OS=Saccharomyces cerevisiae (strain ATCC 204508 / S288c) GN=SUL1 PE=1 SV=2 29 745 7.0E-124
sp|Q12325|SUL2_YEAST Sulfate permease 2 OS=Saccharomyces cerevisiae (strain ATCC 204508 / S288c) GN=SUL2 PE=1 SV=1 53 745 6.0E-117
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Swissprot ID Swissprot Description Start End E-value
sp|P23622|CYS14_NEUCR Sulfate permease 2 OS=Neurospora crassa (strain ATCC 24698 / 74-OR23-1A / CBS 708.71 / DSM 1257 / FGSC 987) GN=cys-14 PE=2 SV=3 35 758 0.0E+00
sp|O74377|SULH1_SCHPO Probable sulfate permease C3H7.02 OS=Schizosaccharomyces pombe (strain 972 / ATCC 24843) GN=SPBC3H7.02 PE=3 SV=1 36 707 2.0E-151
sp|Q9URY8|SULH2_SCHPO Probable sulfate permease C869.05c OS=Schizosaccharomyces pombe (strain 972 / ATCC 24843) GN=SPAC869.05c PE=1 SV=1 38 685 2.0E-150
sp|P38359|SUL1_YEAST Sulfate permease 1 OS=Saccharomyces cerevisiae (strain ATCC 204508 / S288c) GN=SUL1 PE=1 SV=2 29 745 7.0E-124
sp|Q12325|SUL2_YEAST Sulfate permease 2 OS=Saccharomyces cerevisiae (strain ATCC 204508 / S288c) GN=SUL2 PE=1 SV=1 53 745 6.0E-117
sp|Q86WA9|S2611_HUMAN Sodium-independent sulfate anion transporter OS=Homo sapiens GN=SLC26A11 PE=2 SV=2 65 502 2.0E-50
sp|Q58DD2|S2611_BOVIN Sodium-independent sulfate anion transporter OS=Bos taurus GN=SLC26A11 PE=2 SV=1 65 500 2.0E-50
sp|Q80ZD3|S2611_MOUSE Sodium-independent sulfate anion transporter OS=Mus musculus GN=Slc26a11 PE=2 SV=2 65 500 3.0E-50
sp|P53392|SUT2_STYHA High affinity sulfate transporter 2 OS=Stylosanthes hamata GN=ST2 PE=2 SV=1 64 509 4.0E-50
sp|Q9FY46|SUT41_ARATH Sulfate transporter 4.1, chloroplastic OS=Arabidopsis thaliana GN=SULTR4;1 PE=1 SV=1 64 509 2.0E-49
sp|Q8GYH8|SUT42_ARATH Probable sulfate transporter 4.2 OS=Arabidopsis thaliana GN=SULTR4;2 PE=2 SV=2 64 660 6.0E-49
sp|Q9H2B4|S26A1_HUMAN Sulfate anion transporter 1 OS=Homo sapiens GN=SLC26A1 PE=1 SV=2 57 703 3.0E-48
sp|Q9SV13|SUT31_ARATH Sulfate transporter 3.1 OS=Arabidopsis thaliana GN=SULTR3;1 PE=2 SV=1 64 683 6.0E-48
sp|A8J6J0|SULT2_CHLRE Proton/sulfate cotransporter 2 OS=Chlamydomonas reinhardtii GN=SULTR2 PE=2 SV=1 64 654 9.0E-47
sp|P53391|SUT1_STYHA High affinity sulfate transporter 1 OS=Stylosanthes hamata GN=ST1 PE=2 SV=1 64 509 1.0E-46
sp|Q9SAY1|SUT11_ARATH Sulfate transporter 1.1 OS=Arabidopsis thaliana GN=SULTR1;1 PE=1 SV=2 34 653 2.0E-46
sp|P92946|SUT22_ARATH Sulfate transporter 2.2 OS=Arabidopsis thaliana GN=SULTR2;2 PE=1 SV=3 65 509 4.0E-46
sp|P40879|S26A3_HUMAN Chloride anion exchanger OS=Homo sapiens GN=SLC26A3 PE=1 SV=1 61 652 4.0E-44
sp|O04722|SUT21_ARATH Sulfate transporter 2.1 OS=Arabidopsis thaliana GN=SULTR2;1 PE=2 SV=1 49 695 8.0E-44
sp|P53393|SUT3_STYHA Low affinity sulfate transporter 3 OS=Stylosanthes hamata GN=ST3 PE=2 SV=1 59 509 1.0E-43
sp|Q8CIW6|S26A6_MOUSE Solute carrier family 26 member 6 OS=Mus musculus GN=Slc26a6 PE=1 SV=2 66 509 1.0E-43
sp|Q9FEP7|SUT13_ARATH Sulfate transporter 1.3 OS=Arabidopsis thaliana GN=SULTR1;3 PE=2 SV=1 34 652 3.0E-42
sp|Q9LW86|SUT34_ARATH Probable sulfate transporter 3.4 OS=Arabidopsis thaliana GN=SULTR3;4 PE=2 SV=1 63 654 2.0E-41
sp|P58735|S26A1_MOUSE Sulfate anion transporter 1 OS=Mus musculus GN=Slc26a1 PE=1 SV=1 17 647 3.0E-40
sp|O43511|S26A4_HUMAN Pendrin OS=Homo sapiens GN=SLC26A4 PE=1 SV=1 64 710 1.0E-39
sp|Q94LW6|SUT35_ARATH Probable sulfate transporter 3.5 OS=Arabidopsis thaliana GN=SULTR3;5 PE=2 SV=1 66 519 4.0E-39
sp|Q9SXS2|SUT33_ARATH Probable sulfate transporter 3.3 OS=Arabidopsis thaliana GN=SULTR3;3 PE=2 SV=2 34 509 7.0E-39
sp|Q9BXS9|S26A6_HUMAN Solute carrier family 26 member 6 OS=Homo sapiens GN=SLC26A6 PE=1 SV=1 41 509 8.0E-39
sp|Q96RN1|S26A8_HUMAN Testis anion transporter 1 OS=Homo sapiens GN=SLC26A8 PE=1 SV=1 53 509 9.0E-38
sp|Q02920|NO70_SOYBN Early nodulin-70 OS=Glycine max PE=2 SV=1 40 486 2.0E-37
sp|P45380|S26A1_RAT Sulfate anion transporter 1 OS=Rattus norvegicus GN=Slc26a1 PE=1 SV=1 17 649 2.0E-37
sp|Q9JKQ2|S26A5_MERUN Prestin OS=Meriones unguiculatus GN=SLC26A5 PE=1 SV=1 64 579 7.0E-37
sp|Q99NH7|S26A5_MOUSE Prestin OS=Mus musculus GN=Slc26a5 PE=2 SV=3 64 580 1.0E-36
sp|Q9EPH0|S26A5_RAT Prestin OS=Rattus norvegicus GN=Slc26a5 PE=1 SV=1 64 580 2.0E-36
sp|Q9R154|S26A4_RAT Pendrin OS=Rattus norvegicus GN=Slc26a4 PE=2 SV=1 64 475 2.0E-36
sp|Q9MAX3|SUT12_ARATH Sulfate transporter 1.2 OS=Arabidopsis thaliana GN=SULTR1;2 PE=1 SV=1 21 652 3.0E-36
sp|P58743|S26A5_HUMAN Prestin OS=Homo sapiens GN=SLC26A5 PE=2 SV=1 64 643 6.0E-36
sp|Q9R155|S26A4_MOUSE Pendrin OS=Mus musculus GN=Slc26a4 PE=1 SV=1 64 475 7.0E-36
sp|O04289|SUT32_ARATH Sulfate transporter 3.2 OS=Arabidopsis thaliana GN=SULTR3;2 PE=2 SV=1 64 520 1.0E-35
sp|A6QNW6|S26A8_BOVIN Testis anion transporter 1 OS=Bos taurus GN=SLC26A8 PE=2 SV=1 53 509 4.0E-35
sp|Q4R445|S26A8_MACFA Testis anion transporter 1 OS=Macaca fascicularis GN=SLC26A8 PE=2 SV=1 61 509 6.0E-35
sp|Q924C9|S26A3_RAT Chloride anion exchanger OS=Rattus norvegicus GN=Slc26a3 PE=2 SV=1 62 652 7.0E-35
sp|Q8R0C3|S26A8_MOUSE Testis anion transporter 1 OS=Mus musculus GN=Slc26a8 PE=2 SV=2 49 509 5.0E-33
sp|Q8BU91|S26A9_MOUSE Solute carrier family 26 member 9 OS=Mus musculus GN=Slc26a9 PE=2 SV=1 55 509 7.0E-33
sp|Q7LBE3|S26A9_HUMAN Solute carrier family 26 member 9 OS=Homo sapiens GN=SLC26A9 PE=1 SV=1 55 509 2.0E-31
sp|Q62273|S26A2_MOUSE Sulfate transporter OS=Mus musculus GN=Slc26a2 PE=1 SV=1 58 507 3.0E-31
sp|Q9WVC8|S26A3_MOUSE Chloride anion exchanger OS=Mus musculus GN=Slc26a3 PE=1 SV=1 62 652 5.0E-31
sp|P53394|SULX_YEAST Putative sulfate transporter YPR003C OS=Saccharomyces cerevisiae (strain ATCC 204508 / S288c) GN=YPR003C PE=1 SV=1 66 679 4.0E-30
sp|O70531|S26A2_RAT Sulfate transporter OS=Rattus norvegicus GN=Slc26a2 PE=2 SV=1 61 507 1.0E-29
sp|Q94225|SULP3_CAEEL Sulfate permease family protein 3 OS=Caenorhabditis elegans GN=sulp-3 PE=2 SV=3 61 522 2.0E-29
sp|Q65AC2|S26A2_HORSE Sulfate transporter OS=Equus caballus GN=SLC26A2 PE=2 SV=1 49 715 9.0E-29
sp|Q69DJ1|S26A2_BUBBU Sulfate transporter OS=Bubalus bubalis GN=SLC26A2 PE=3 SV=1 61 651 1.0E-28
sp|P50443|S26A2_HUMAN Sulfate transporter OS=Homo sapiens GN=SLC26A2 PE=1 SV=2 61 647 2.0E-28
sp|Q9BEG8|S26A2_BOVIN Sulfate transporter OS=Bos taurus GN=SLC26A2 PE=3 SV=1 61 651 7.0E-28
sp|Q8R2Z3|S26A7_MOUSE Anion exchange transporter OS=Mus musculus GN=Slc26a7 PE=2 SV=3 46 502 8.0E-28
sp|Q5EBI0|S2610_MOUSE Solute carrier family 26 member 10 OS=Mus musculus GN=Slc26a10 PE=2 SV=1 55 460 1.0E-27
sp|Q9GJY3|S26A2_SHEEP Sulfate transporter OS=Ovis aries GN=SLC26A2 PE=3 SV=1 61 517 2.0E-27
sp|P9WGF6|Y1739_MYCTO Probable sulfate transporter MT1781 OS=Mycobacterium tuberculosis (strain CDC 1551 / Oshkosh) GN=MT1781 PE=3 SV=1 66 509 3.0E-27
sp|A4IIF2|S26A9_XENTR Solute carrier family 26 member 9 OS=Xenopus tropicalis GN=slc26a9 PE=2 SV=1 57 518 4.0E-27
sp|Q5RAL2|S26A7_PONAB Anion exchange transporter OS=Pongo abelii GN=SLC26A7 PE=2 SV=1 46 501 6.0E-27
sp|Q8TE54|S26A7_HUMAN Anion exchange transporter OS=Homo sapiens GN=SLC26A7 PE=2 SV=2 46 501 8.0E-27
sp|P9WGF7|Y1739_MYCTU Probable sulfate transporter Rv1739c OS=Mycobacterium tuberculosis (strain ATCC 25618 / H37Rv) GN=Rv1739c PE=1 SV=1 66 509 1.0E-26
sp|O06984|YVDB_BACSU Putative sulfate transporter YvdB OS=Bacillus subtilis (strain 168) GN=yvdB PE=3 SV=1 71 537 2.0E-23
sp|Q8NG04|S2610_HUMAN Solute carrier family 26 member 10 OS=Homo sapiens GN=SLC26A10 PE=2 SV=1 98 486 2.0E-21
sp|O59782|SULH3_SCHPO Probable sulfate permease C320.05 OS=Schizosaccharomyces pombe (strain 972 / ATCC 24843) GN=SPCC320.05 PE=3 SV=1 49 579 1.0E-19
sp|P55189|YBAR_BACSU Putative sulfate transporter YbaR OS=Bacillus subtilis (strain 168) GN=ybaR PE=3 SV=2 82 440 6.0E-18
sp|P0AFR2|DAUA_ECOLI C4-dicarboxylic acid transporter DauA OS=Escherichia coli (strain K12) GN=dauA PE=1 SV=2 68 500 4.0E-17
sp|P0AFR3|DAUA_ECO57 C4-dicarboxylic acid transporter DauA OS=Escherichia coli O157:H7 GN=dauA PE=3 SV=2 68 500 4.0E-17
sp|Q14SY0|BICA_SYNP2 Bicarbonate transporter BicA OS=Synechococcus sp. (strain ATCC 27264 / PCC 7002 / PR-6) GN=bicA PE=1 SV=1 72 520 3.0E-13
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GO

GO Term Description Terminal node
GO:0015116 sulfate transmembrane transporter activity Yes
GO:0016021 integral component of membrane Yes
GO:0008272 sulfate transport Yes
GO:0110165 cellular anatomical entity No
GO:0031224 intrinsic component of membrane No
GO:0006820 anion transport No
GO:0006810 transport No
GO:0051234 establishment of localization No
GO:0006811 ion transport No
GO:0015103 inorganic anion transmembrane transporter activity No
GO:0008509 anion transmembrane transporter activity No
GO:0051179 localization No
GO:1901682 sulfur compound transmembrane transporter activity No
GO:0015075 ion transmembrane transporter activity No
GO:0005575 cellular_component No
GO:0072348 sulfur compound transport No
GO:0003674 molecular_function No
GO:0008150 biological_process No
GO:0015698 inorganic anion transport No
GO:0005215 transporter activity No
GO:0015318 inorganic molecular entity transmembrane transporter activity No
GO:0022857 transmembrane transporter activity 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

Domain # Start End Length
1 78 100 22
2 104 126 22
3 131 149 18
4 164 186 22
5 193 215 22
6 244 263 19
7 275 297 22
8 334 351 17
9 371 393 22
10 408 430 22
11 466 488 22

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 >Ophun1|3557
MRIRRAFETVTARVFGIDAAPAPARHVFLGAGIETYTEEEPTVAEWLGQQAPTWAGVGAYVVDLFPSASWLRRYN
LRWLAGDLIAGITIGLVVVPQALAYASLAQLPPAYGLYTSFTGAALYWLFGTSKDIVIGATAVGSLLVGQVVSSV
QQASPDKYKPEETARALSLMTGAVLLGFGLLRLGWIVEFIPHIPISAFVTASSITIMSTQLPVVLGIRDIDTRQP
PYQVLWSTTRRLGHTKLDAAIGISAIVLLSVVQRFCGAMEKRMPRQKRAWSYASSLRLTFTMLLFTLVSYLVHRN
TPLDKAKFRIVGPIDRGFVRAAVPMPEFELMRGILPQLPTVAVILIVQHIATAKSMGRLYNYSIDSSQETVALGA
ANLLSPFVGGFVCTGSFGASAVLSKAGARSPLAGLFSAAVLVLVLYALTTVFYYIPDAALAGLIIHAVCNLVMSP
KKLYEYWQLSPPELMIWVISVVLAIFTSLQTSIYVGIGLSSALLLVRMARSDGDFLGRVHVQRVTASDEERVSED
QSSSSRDIFLPLDGTDGTNPAIKTESPHPGVFVYRLNDGFNYTNQAHHIDTLSRHIVARTRPGSFEEHVARDSDR
LWNDAGPTTATKTIMAKALPPLRAVVLDFAAVNHVDVTSVQGLMDLRNSLDRHAAPDAVSWHLANVHNRWTRRAL
AAAGFGRRSGAPHLSEKDALGLYDVAETRDCECEGDAESGGWDSSTPTPETRLATVCAVDRPLFHIDLLDAVACA
VEEAVVAAVAEVQGGDAERESRG*
Coding >Ophun1|3557
ATGAGGATACGACGAGCCTTCGAGACAGTCACAGCACGCGTCTTCGGCATCGACGCCGCCCCTGCGCCCGCTCGC
CATGTCTTCCTCGGCGCCGGTATCGAGACTTACACGGAGGAAGAGCCGACGGTGGCCGAGTGGCTTGGCCAGCAG
GCGCCGACGTGGGCGGGAGTCGGGGCCTATGTTGTCGACTTGTTTCCGTCGGCCTCGTGGTTGAGACGCTATAAC
CTTCGCTGGCTTGCGGGGGATTTGATTGCTGGCATCACCATCGGACTCGTTGTCGTTCCTCAGGCGTTGGCCTAT
GCGTCTCTCGCTCAGCTTCCGCCCGCATATGGCTTATACACGTCCTTTACGGGGGCCGCCCTGTACTGGTTATTC
GGAACGTCCAAGGACATTGTCATTGGAGCAACGGCCGTGGGCTCCCTCCTCGTCGGCCAAGTCGTCTCAAGCGTG
CAACAGGCCTCACCCGACAAGTACAAGCCCGAAGAGACGGCCCGGGCCCTGAGCCTGATGACGGGCGCAGTGCTC
CTCGGCTTCGGCCTGCTACGACTCGGCTGGATCGTAGAGTTCATCCCGCACATCCCCATCTCGGCCTTTGTGACG
GCGTCGAGCATCACCATCATGTCGACGCAGCTGCCCGTCGTGCTGGGCATCCGCGATATCGACACGCGTCAGCCA
CCGTATCAGGTCCTCTGGTCGACGACCCGTCGTCTCGGCCACACGAAGCTGGACGCAGCCATCGGGATATCGGCC
ATTGTTCTGCTGTCTGTCGTTCAGCGCTTCTGCGGAGCCATGGAGAAGCGTATGCCGCGACAGAAGCGGGCTTGG
TCGTACGCTTCATCGCTACGACTCACCTTTACCATGCTGCTCTTCACCCTCGTCAGCTACCTCGTCCACCGAAAC
ACGCCCTTGGACAAGGCCAAGTTCCGAATCGTCGGACCCATCGACCGTGGTTTCGTCCGGGCAGCCGTTCCCATG
CCCGAGTTTGAGCTCATGCGCGGGATCCTACCGCAGCTACCGACAGTGGCCGTCATCCTCATCGTCCAGCACATT
GCGACAGCAAAGTCGATGGGGAGGCTGTACAACTACAGCATCGACTCGTCGCAGGAGACGGTGGCGTTGGGGGCG
GCGAACCTGCTCAGCCCCTTTGTTGGCGGCTTCGTCTGCACGGGCTCTTTTGGTGCCTCGGCTGTTCTGTCCAAG
GCGGGTGCCAGGAGTCCGCTGGCTGGTCTGTTCAGCGCGGCTGTGCTGGTGCTCGTCTTGTATGCGCTCACCACT
GTCTTCTATTATATCCCCGACGCGGCGCTGGCGGGACTCATCATCCACGCCGTCTGCAATCTCGTCATGTCGCCC
AAGAAGCTGTACGAGTACTGGCAGCTGTCGCCTCCGGAGCTGATGATCTGGGTAATCAGCGTCGTGCTGGCCATA
TTTACCTCTCTCCAGACGTCTATATACGTCGGCATCGGTCTGTCGTCGGCCCTTCTTCTCGTTCGCATGGCCCGG
TCAGACGGCGACTTTCTCGGAAGGGTTCATGTCCAGCGCGTAACCGCCTCAGACGAGGAACGAGTTTCAGAAGAT
CAATCCTCGTCTTCTCGAGACATCTTCCTTCCGCTCGATGGCACGGACGGAACGAACCCGGCGATCAAGACGGAG
AGTCCCCATCCAGGCGTCTTCGTCTACCGGCTCAATGACGGGTTCAACTATACCAACCAGGCGCATCACATCGAC
ACGCTGTCGCGGCATATCGTGGCCCGAACCCGGCCCGGTTCATTTGAAGAGCACGTCGCACGAGACTCGGACCGG
CTGTGGAACGACGCCGGGCCGACGACAGCGACAAAGACGATCATGGCCAAGGCGCTTCCCCCATTGCGGGCCGTG
GTTCTCGACTTCGCGGCCGTAAACCACGTCGACGTGACGTCGGTTCAGGGCCTGATGGATCTCCGCAACAGTCTT
GACCGACACGCAGCCCCTGACGCTGTATCATGGCATCTAGCCAACGTGCACAACCGATGGACGCGTCGAGCCCTG
GCAGCCGCTGGCTTCGGTCGCCGAAGCGGAGCACCCCATCTCAGCGAGAAGGACGCACTCGGCTTGTACGACGTT
GCTGAGACGCGGGACTGTGAATGCGAGGGGGATGCCGAGAGCGGTGGGTGGGATTCTTCGACGCCGACGCCTGAG
ACGAGGTTGGCGACGGTTTGTGCTGTTGATAGGCCGCTGTTCCATATCGATTTGCTGGATGCGGTTGCTTGTGCG
GTGGAAGAGGCCGTGGTTGCGGCTGTGGCGGAGGTGCAGGGGGGTGATGCTGAGAGGGAATCACGGGGTTGA
Transcript >Ophun1|3557
ATGAGGATACGACGAGCCTTCGAGACAGTCACAGCACGCGTCTTCGGCATCGACGCCGCCCCTGCGCCCGCTCGC
CATGTCTTCCTCGGCGCCGGTATCGAGACTTACACGGAGGAAGAGCCGACGGTGGCCGAGTGGCTTGGCCAGCAG
GCGCCGACGTGGGCGGGAGTCGGGGCCTATGTTGTCGACTTGTTTCCGTCGGCCTCGTGGTTGAGACGCTATAAC
CTTCGCTGGCTTGCGGGGGATTTGATTGCTGGCATCACCATCGGACTCGTTGTCGTTCCTCAGGCGTTGGCCTAT
GCGTCTCTCGCTCAGCTTCCGCCCGCATATGGCTTATACACGTCCTTTACGGGGGCCGCCCTGTACTGGTTATTC
GGAACGTCCAAGGACATTGTCATTGGAGCAACGGCCGTGGGCTCCCTCCTCGTCGGCCAAGTCGTCTCAAGCGTG
CAACAGGCCTCACCCGACAAGTACAAGCCCGAAGAGACGGCCCGGGCCCTGAGCCTGATGACGGGCGCAGTGCTC
CTCGGCTTCGGCCTGCTACGACTCGGCTGGATCGTAGAGTTCATCCCGCACATCCCCATCTCGGCCTTTGTGACG
GCGTCGAGCATCACCATCATGTCGACGCAGCTGCCCGTCGTGCTGGGCATCCGCGATATCGACACGCGTCAGCCA
CCGTATCAGGTCCTCTGGTCGACGACCCGTCGTCTCGGCCACACGAAGCTGGACGCAGCCATCGGGATATCGGCC
ATTGTTCTGCTGTCTGTCGTTCAGCGCTTCTGCGGAGCCATGGAGAAGCGTATGCCGCGACAGAAGCGGGCTTGG
TCGTACGCTTCATCGCTACGACTCACCTTTACCATGCTGCTCTTCACCCTCGTCAGCTACCTCGTCCACCGAAAC
ACGCCCTTGGACAAGGCCAAGTTCCGAATCGTCGGACCCATCGACCGTGGTTTCGTCCGGGCAGCCGTTCCCATG
CCCGAGTTTGAGCTCATGCGCGGGATCCTACCGCAGCTACCGACAGTGGCCGTCATCCTCATCGTCCAGCACATT
GCGACAGCAAAGTCGATGGGGAGGCTGTACAACTACAGCATCGACTCGTCGCAGGAGACGGTGGCGTTGGGGGCG
GCGAACCTGCTCAGCCCCTTTGTTGGCGGCTTCGTCTGCACGGGCTCTTTTGGTGCCTCGGCTGTTCTGTCCAAG
GCGGGTGCCAGGAGTCCGCTGGCTGGTCTGTTCAGCGCGGCTGTGCTGGTGCTCGTCTTGTATGCGCTCACCACT
GTCTTCTATTATATCCCCGACGCGGCGCTGGCGGGACTCATCATCCACGCCGTCTGCAATCTCGTCATGTCGCCC
AAGAAGCTGTACGAGTACTGGCAGCTGTCGCCTCCGGAGCTGATGATCTGGGTAATCAGCGTCGTGCTGGCCATA
TTTACCTCTCTCCAGACGTCTATATACGTCGGCATCGGTCTGTCGTCGGCCCTTCTTCTCGTTCGCATGGCCCGG
TCAGACGGCGACTTTCTCGGAAGGGTTCATGTCCAGCGCGTAACCGCCTCAGACGAGGAACGAGTTTCAGAAGAT
CAATCCTCGTCTTCTCGAGACATCTTCCTTCCGCTCGATGGCACGGACGGAACGAACCCGGCGATCAAGACGGAG
AGTCCCCATCCAGGCGTCTTCGTCTACCGGCTCAATGACGGGTTCAACTATACCAACCAGGCGCATCACATCGAC
ACGCTGTCGCGGCATATCGTGGCCCGAACCCGGCCCGGTTCATTTGAAGAGCACGTCGCACGAGACTCGGACCGG
CTGTGGAACGACGCCGGGCCGACGACAGCGACAAAGACGATCATGGCCAAGGCGCTTCCCCCATTGCGGGCCGTG
GTTCTCGACTTCGCGGCCGTAAACCACGTCGACGTGACGTCGGTTCAGGGCCTGATGGATCTCCGCAACAGTCTT
GACCGACACGCAGCCCCTGACGCTGTATCATGGCATCTAGCCAACGTGCACAACCGATGGACGCGTCGAGCCCTG
GCAGCCGCTGGCTTCGGTCGCCGAAGCGGAGCACCCCATCTCAGCGAGAAGGACGCACTCGGCTTGTACGACGTT
GCTGAGACGCGGGACTGTGAATGCGAGGGGGATGCCGAGAGCGGTGGGTGGGATTCTTCGACGCCGACGCCTGAG
ACGAGGTTGGCGACGGTTTGTGCTGTTGATAGGCCGCTGTTCCATATCGATTTGCTGGATGCGGTTGCTTGTGCG
GTGGAAGAGGCCGTGGTTGCGGCTGTGGCGGAGGTGCAGGGGGGTGATGCTGAGAGGGAATCACGGGGTTGA
Gene >Ophun1|3557
ATGAGGATACGACGAGCCTTCGAGACAGTCACAGCACGCGTCTTCGGCATCGACGCCGCCCCTGCGCCCGCTCGC
CATGTCTTCCTCGGCGCCGGTATCGAGACTTACACGGAGGAAGAGCCGACGGTGGCCGAGTGGCTTGGCCAGCAG
GCGCCGACGTGGGCGGGAGTCGGGGCCTATGTTGTCGACTTGTTTCCGTCGGCCTCGTGGTTGAGACGCTATAAC
CTTCGCTGGCTTGCGGGGGATTTGATTGCTGGTGAGTGGAGAGAATACGAGATGGGGACGTTGTTTCGTGGCTTA
CTGGGGCGTAGGCATCACCATCGGACTCGTTGTCGTTCCTCAGGCGTTGGCCTATGCGTCTCTCGCTCAGCTTCC
GCCCGCATATGGCTTATACACGTCCTTTACGGGGGCCGCCCTGTACTGGTTATTCGGAACGTCCAAGGACATTGT
CATTGGAGTCAGTTCTTTCTTCCTGATACTCTCCTGGCTTGGACACTAACACGTCTCAAGGCAACGGCCGTGGGC
TCCCTCCTCGTCGGCCAAGTCGTCTCAAGCGTGCAACAGGCCTCACCCGACAAGTACAAGCCCGAAGAGACGGCC
CGGGCCCTGAGCCTGATGACGGGCGCAGTGCTCCTCGGCTTCGGCCTGCTACGACTCGGCTGGATCGTAGAGTTC
ATCCCGCACATCCCCATCTCGGCCTTTGTGACGGCGTCGAGCATCACCATCATGTCGACGCAGCTGCCCGTCGTG
CTGGGCATCCGCGATATCGACACGCGTCAGCCACCGTATCAGGTCCTCTGGTCGACGACCCGTCGTCTCGGCCAC
ACGAAGCTGGACGCAGCCATCGGGATATCGGCCATTGTTCTGCTGTCTGTCGTTCAGCGCTTCTGCGGAGCCATG
GAGAAGCGTATGCCGCGACAGAAGCGGGCTTGGTCGTACGCTTCATCGCTACGACTCACCTTTACCATGCTGCTC
TTCACCCTCGTCAGCTACCTCGTCCACCGAAACACGCCCTTGGACAAGGCCAAGTTCCGAATCGTCGGACCCATC
GACCGTGGTTTCGTCCGGGCAGCCGTTCCCATGCCCGAGTTTGAGCTCATGCGCGGGATCCTACCGCAGCTACCG
ACAGTGGCCGTCATCCTCATCGTCCAGCACATTGCGACAGCAAAGTCGATGGGGAGGCTGTACAACTACAGCATC
GACTCGTCGCAGGAGACGGTGGCGTTGGGGGCGGCGAACCTGCTCAGCCCCTTTGTTGGCGGCTTCGTCTGCACG
GGCTCTTTTGGTGCCTCGGCTGTTCTGTCCAAGGCGGGTGCCAGGAGTCCGCTGGCTGGTCTGTTCAGCGCGGCT
GTGCTGGTGCTCGTCTTGTATGCGCTCACCACTGTCTTCTATTATATCCCCGACGCGGCGCTGGCGGGACTCATC
ATCCACGCCGTCTGCAATCTCGTCATGTCGCCCAAGAAGCTGTACGAGTACTGGCAGCTGTCGCCTCCGGAGCTG
ATGATCTGGGTAATCAGCGTCGTGCTGGCCATATTTACCTCTCTCCAGACGTCTATATACGTCGGCATCGGTCTG
TCGTCGGCCCTTCTTCTCGTTCGCATGGCCCGGTCAGACGGCGACTTTCTCGGAAGGGTTCATGTCCAGCGCGTA
ACCGCCTCAGACGAGGAACGAGTTTCAGAAGATCAATCCTCGTCTTCTCGAGACATCTTCCTTCCGCTCGATGGC
ACGGACGGAACGAACCCGGCGATCAAGACGGAGAGTCCCCATCCAGGCGTCTTCGTCTACCGGCTCAATGACGGG
TTCAACTATACCAACCAGGCGCATCACATCGACACGCTGTCGCGGCATATCGTGGCCCGAACCCGGCCCGGTTCA
TTTGAAGAGCACGTCGCACGAGACTCGGACCGGCTGTGGAACGACGCCGGGCCGACGACAGCGACAAAGACGATC
ATGGCCAAGGCGCTTCCCCCATTGCGGGCCGTGGTTCTCGACTTCGCGGCCGTAAACCACGTCGACGTGACGTCG
GTTCAGGGCCTGATGGATCTCCGCAACAGTCTTGACCGACACGCAGCCCCTGACGCTGTATCATGGCATCTAGCC
AACGTGCACAACCGATGGACGCGTCGAGCCCTGGCAGCCGCTGGCTTCGGTCGCCGAAGCGGAGCACCCCATCTC
AGCGAGAAGGACGCACTCGGCTTGTACGACGTTGCTGAGACGCGGGACTGTGAATGCGAGGGGGATGCCGAGAGC
GGTGGGTGGGATTCTTCGACGCCGACGCCTGAGACGAGGTTGGCGACGGTTTGTGCTGTTGATAGGCCGCTGTTC
CATATCGATTTGCTGGATGCGGTTGCTTGTGCGGTGGAAGAGGCCGTGGTTGCGGCTGTGGCGGAGGTGCAGGGG
GGTGATGCTGAGAGGGAATCACGGGGTTGA

© 2022 - Robin Ohm - Utrecht University - The Netherlands

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