Fungal Genomics

at Utrecht University

General Properties

Protein IDOphun1|1068
Gene name
LocationContig_14:59054..62858
Strand-
Gene length (bp)3804
Transcript length (bp)3804
Coding sequence length (bp)3804
Protein length (aa) 1268

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PFAM Domains

PFAM Domain ID Short name Long name E-value Start End
PF16414 NPC1_N Niemann-Pick C1 N terminus 3.5E-81 28 261
PF02460 Patched Patched family 4.9E-44 540 863
PF02460 Patched Patched family 1.1E-24 1000 1227
PF12349 Sterol-sensing Sterol-sensing domain of SREBP cleavage-activation 1.2E-50 621 773
PF03176 MMPL MMPL family 1.5E-05 619 776

Swissprot hits

[Show all]
Swissprot ID Swissprot Description Start End E-value
sp|P56941|NPC1_PIG Niemann-Pick C1 protein OS=Sus scrofa GN=NPC1 PE=2 SV=1 30 1230 0.0E+00
sp|O15118|NPC1_HUMAN Niemann-Pick C1 protein OS=Homo sapiens GN=NPC1 PE=1 SV=2 30 1230 0.0E+00
sp|O35604|NPC1_MOUSE Niemann-Pick C1 protein OS=Mus musculus GN=Npc1 PE=1 SV=2 30 1254 0.0E+00
sp|Q6T3U3|NPCL1_RAT Niemann-Pick C1-like protein 1 OS=Rattus norvegicus GN=Npc1l1 PE=1 SV=1 18 1230 0.0E+00
sp|Q12200|NPC1_YEAST Niemann-Pick type C-related protein 1 OS=Saccharomyces cerevisiae (strain ATCC 204508 / S288c) GN=NCR1 PE=1 SV=1 30 1241 0.0E+00
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Swissprot ID Swissprot Description Start End E-value
sp|P56941|NPC1_PIG Niemann-Pick C1 protein OS=Sus scrofa GN=NPC1 PE=2 SV=1 30 1230 0.0E+00
sp|O15118|NPC1_HUMAN Niemann-Pick C1 protein OS=Homo sapiens GN=NPC1 PE=1 SV=2 30 1230 0.0E+00
sp|O35604|NPC1_MOUSE Niemann-Pick C1 protein OS=Mus musculus GN=Npc1 PE=1 SV=2 30 1254 0.0E+00
sp|Q6T3U3|NPCL1_RAT Niemann-Pick C1-like protein 1 OS=Rattus norvegicus GN=Npc1l1 PE=1 SV=1 18 1230 0.0E+00
sp|Q12200|NPC1_YEAST Niemann-Pick type C-related protein 1 OS=Saccharomyces cerevisiae (strain ATCC 204508 / S288c) GN=NCR1 PE=1 SV=1 30 1241 0.0E+00
sp|Q9UHC9|NPCL1_HUMAN Niemann-Pick C1-like protein 1 OS=Homo sapiens GN=NPC1L1 PE=1 SV=2 18 1230 1.0E-166
sp|Q6T3U4|NPCL1_MOUSE Niemann-Pick C1-like protein 1 OS=Mus musculus GN=Npc1l1 PE=2 SV=1 18 1230 2.0E-166
sp|Q19127|NPC1_CAEEL Niemann-Pick C1 protein homolog 1 OS=Caenorhabditis elegans GN=ncr-1 PE=1 SV=2 25 1239 6.0E-103
sp|P34389|NPC2_CAEEL Niemann-Pick C1 protein homolog 2 OS=Caenorhabditis elegans GN=ncr-2 PE=3 SV=2 72 1249 3.0E-100
sp|Q0EEE2|PTHD3_MOUSE Patched domain-containing protein 3 OS=Mus musculus GN=Ptchd3 PE=1 SV=1 291 1228 2.0E-41
sp|Q13635|PTC1_HUMAN Protein patched homolog 1 OS=Homo sapiens GN=PTCH1 PE=1 SV=2 567 770 5.0E-20
sp|Q90693|PTC1_CHICK Protein patched homolog 1 OS=Gallus gallus GN=PTCH1 PE=1 SV=1 567 770 5.0E-20
sp|Q61115|PTC1_MOUSE Protein patched homolog 1 OS=Mus musculus GN=Ptch1 PE=1 SV=1 571 770 2.0E-19
sp|Q9Y6C5|PTC2_HUMAN Protein patched homolog 2 OS=Homo sapiens GN=PTCH2 PE=2 SV=2 547 769 6.0E-18
sp|Q3KNS1|PTHD3_HUMAN Patched domain-containing protein 3 OS=Homo sapiens GN=PTCHD3 PE=1 SV=3 337 891 1.0E-17
sp|Q09614|PTC1_CAEEL Protein patched homolog 1 OS=Caenorhabditis elegans GN=ptc-1 PE=1 SV=2 1017 1237 2.0E-17
sp|O35595|PTC2_MOUSE Protein patched homolog 2 OS=Mus musculus GN=Ptch2 PE=2 SV=2 547 769 6.0E-17
sp|Q61115|PTC1_MOUSE Protein patched homolog 1 OS=Mus musculus GN=Ptch1 PE=1 SV=1 1019 1237 1.0E-15
sp|Q13635|PTC1_HUMAN Protein patched homolog 1 OS=Homo sapiens GN=PTCH1 PE=1 SV=2 1019 1237 1.0E-15
sp|B9EKX1|PTHD4_MOUSE Patched domain-containing protein 4 OS=Mus musculus GN=Ptchd4 PE=2 SV=2 341 1228 2.0E-15
sp|Q90693|PTC1_CHICK Protein patched homolog 1 OS=Gallus gallus GN=PTCH1 PE=1 SV=1 1019 1237 2.0E-15
sp|Q09614|PTC1_CAEEL Protein patched homolog 1 OS=Caenorhabditis elegans GN=ptc-1 PE=1 SV=2 544 891 3.0E-15
sp|Q98864|PTC1_DANRE Protein patched homolog 1 OS=Danio rerio GN=ptch1 PE=2 SV=1 585 769 1.0E-14
sp|P18502|PTC_DROME Protein patched OS=Drosophila melanogaster GN=ptc PE=2 SV=2 574 891 1.0E-14
sp|Q98864|PTC1_DANRE Protein patched homolog 1 OS=Danio rerio GN=ptch1 PE=2 SV=1 1019 1214 3.0E-14
sp|Q6ZW05|PTHD4_HUMAN Patched domain-containing protein 4 OS=Homo sapiens GN=PTCHD4 PE=2 SV=3 517 1228 2.0E-13
sp|Q6GQT6|SCAP_MOUSE Sterol regulatory element-binding protein cleavage-activating protein OS=Mus musculus GN=Scap PE=1 SV=1 547 763 3.0E-12
sp|O35595|PTC2_MOUSE Protein patched homolog 2 OS=Mus musculus GN=Ptch2 PE=2 SV=2 1019 1204 6.0E-12
sp|Q9Y6C5|PTC2_HUMAN Protein patched homolog 2 OS=Homo sapiens GN=PTCH2 PE=2 SV=2 1019 1204 9.0E-12
sp|Q5MNU5|SCAP_PIG Sterol regulatory element-binding protein cleavage-activating protein OS=Sus scrofa GN=SCAP PE=2 SV=2 547 763 9.0E-12
sp|Q12770|SCAP_HUMAN Sterol regulatory element-binding protein cleavage-activating protein OS=Homo sapiens GN=SCAP PE=1 SV=4 547 763 1.0E-11
sp|A6QM06|SCAP_BOVIN Sterol regulatory element-binding protein cleavage-activating protein OS=Bos taurus GN=SCAP PE=2 SV=1 547 763 1.0E-11
sp|P97260|SCAP_CRIGR Sterol regulatory element-binding protein cleavage-activating protein OS=Cricetulus griseus GN=SCAP PE=1 SV=1 547 763 1.0E-11
sp|A2RRU4|SCAP_RAT Sterol regulatory element-binding protein cleavage-activating protein OS=Rattus norvegicus GN=Scap PE=2 SV=1 547 763 1.0E-11
sp|A0JPH4|SCAP_XENLA Sterol regulatory element-binding protein cleavage-activating protein OS=Xenopus laevis GN=scap PE=2 SV=1 590 763 5.0E-11
sp|Q96NR3|PTHD1_HUMAN Patched domain-containing protein 1 OS=Homo sapiens GN=PTCHD1 PE=2 SV=2 339 1228 1.0E-10
sp|Q14B62|PTHD1_MOUSE Patched domain-containing protein 1 OS=Mus musculus GN=Ptchd1 PE=2 SV=2 339 1228 2.0E-10
sp|Q03602|PTR9_CAEEL Patched-related protein 9 OS=Caenorhabditis elegans GN=ptr-9 PE=3 SV=2 612 757 9.0E-10
sp|Q03602|PTR9_CAEEL Patched-related protein 9 OS=Caenorhabditis elegans GN=ptr-9 PE=3 SV=2 1048 1226 7.0E-06
sp|P18502|PTC_DROME Protein patched OS=Drosophila melanogaster GN=ptc PE=2 SV=2 1044 1240 9.0E-06
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GO

GO Term Description Terminal node
GO:0016021 integral component of membrane Yes
GO:0016020 membrane Yes
GO:0005575 cellular_component No
GO:0110165 cellular anatomical entity No
GO:0031224 intrinsic component of membrane No

SignalP

[Help with interpreting these statistics]
SignalP signal predicted Location
(based on Ymax)
D score
(significance: > 0.45)
Yes 1 - 19 0.45

Transmembrane Domains

Domain # Start End Length
1 265 287 22
2 347 369 22
3 591 613 22
4 626 648 22
5 653 675 22
6 707 729 22
7 734 756 22
8 820 837 17
9 1064 1086 22
10 1093 1115 22
11 1119 1141 22
12 1169 1191 22
13 1206 1228 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|1068
MRHRFAPLLLAAAPLLLAEPLTPKHEPGRCAMRGQCGKQSLFGKQLPCVDNDVAREPDSELRKEIVDLCGAEWSH
SPVCCTLDQVRALKSELGTPQTLIGSCPACKRNFFNLFCQFACSPDQSLFVNVTASVEKNGKHLVTEIDQLISEE
YGSGFYDSCKEVKFGGANSRAMDLIGGGAKNYHQLLKFLGDKKPFVGSPFQINFPESYGDAHMGPLKNMHPKSCN
DSDPNYRCVCVDCPQVCPKLPAVDKQGSCRVGALPCLSFASIFTYCVLLSAMVASVFGHVAWKRYAQHQAERTRL
LHGSSHSDDDDEGGPVLTDAARDRPTRRYWLNDKCDRAFGRLGHAAARFPGLTIGTSLLVVAILSAGWFRFDLEK
EPARLWVSPSSAAAQEKEYFDTNFGPFYRAEKIFLVNDTLPSGPGPVLSYETLKWWSEVEQDIERIVSPTFRDSL
RDVCYRPANDACVVQSVTSYWWARGGISPTGWKDQLRSCARSPVDCRPKFGQPIDASMVLGGYGDDVVDARALTV
TWVVNNAQGGTAALARAIDWENALRDRLLEVQEEAEARGLRLSFSTEISLEQELNKSTNTDAKIVVISYIVMFIY
ACMALGTPFRHVFRNPALLLVESKVTLGLVGILIVLMSIAASIGFFSWVGLKATLIIVEVIPFIVLAVGVDNIFL
IVHELERVNASCPDQMVEERVARALGRMGPSILLSALTETVAFALGAAVGMPAVRNFAAYAAGAVLVNAVLQMTM
FVSLLALNQMRVEDHRCELWPWWQVTKARVHMDGTNGFVSSGRHDDEEGPLQVFIKNTYAPRLLRRKVKLAVVAV
FLGVFAAGLALLPRLQLGLDQRVAIPDGSYLIPYFDDMYDYLETGPPLYFVTRGVDASRRPEQQQLCSRFTTCQP
LSLTNRLELERQRPDVSYIASPTASWIDDFFLWLNPVYDHCCVDKGSPCFANRQPPWNTTLSGMPESAEFFRYLD
RFLSSPADDDCPLGGQAAYGDAVVVDRDEAAVRASHFRTAHTPLRSQADFIDAYAAARRIAADVSRQTGADVFPY
SVFYIFFDQYLSMVPLAAGLLSATVVIILAMACLLLGSILTSVVVAATVVMTVVDIMGAMALMGVSLNAVSLVNL
IICVGISVEFCAHVARAFTFPSRTVMEANNNAFRGRDARAWTALVNVGGSVFSGITITKLLGVCVLAFTSSKIFE
IYYFRVWLALVIFAALHALVFLPVALSFAGGRGYVDPESEGTAAQDLTDRRWRAIRVHDNSDSDDGF*
Coding >Ophun1|1068
ATGCGTCATCGGTTCGCGCCTCTGCTCCTGGCGGCCGCGCCCTTACTCCTGGCCGAGCCCTTGACGCCCAAACAT
GAACCCGGACGATGCGCCATGCGCGGTCAGTGTGGCAAGCAGAGTCTGTTCGGCAAGCAGCTGCCTTGCGTCGAC
AATGATGTCGCTCGTGAGCCCGACTCGGAGCTCCGCAAGGAGATTGTCGACCTCTGCGGCGCTGAATGGAGCCAT
TCTCCCGTCTGCTGCACGCTCGACCAGGTCCGGGCGCTCAAGTCGGAGCTCGGTACGCCCCAAACGCTCATCGGC
TCCTGTCCGGCATGCAAGCGCAACTTCTTCAACCTCTTCTGCCAGTTTGCCTGCTCTCCGGACCAGTCTCTCTTC
GTCAACGTCACCGCCTCGGTGGAAAAGAACGGCAAACACCTCGTGACCGAGATCGATCAGCTGATATCCGAGGAA
TACGGCTCCGGCTTCTACGACAGCTGCAAGGAAGTCAAGTTTGGCGGCGCCAACTCGAGGGCCATGGACTTGATC
GGCGGTGGCGCAAAGAACTACCACCAGCTGCTCAAGTTTCTCGGCGATAAGAAGCCCTTTGTCGGCTCTCCCTTC
CAGATCAACTTCCCCGAATCATATGGCGACGCCCACATGGGTCCTCTCAAGAACATGCACCCAAAGAGCTGCAAC
GACTCGGACCCAAATTACCGCTGCGTCTGCGTCGACTGTCCCCAAGTCTGTCCCAAGCTGCCTGCCGTCGACAAG
CAGGGCTCCTGCAGGGTCGGCGCCCTTCCGTGTCTGTCGTTTGCCTCCATCTTCACCTACTGCGTCCTCCTCTCC
GCCATGGTCGCGTCCGTCTTCGGCCACGTCGCGTGGAAGAGATACGCTCAACACCAGGCCGAGAGGACCAGGCTT
CTCCACGGGTCGTCCCACAGCGACGACGACGACGAGGGCGGGCCGGTCCTGACCGACGCCGCCCGTGATCGTCCC
ACCAGGCGATACTGGCTCAACGATAAGTGCGACAGGGCCTTTGGCAGGCTCGGGCATGCGGCCGCCCGCTTCCCC
GGTCTGACCATCGGCACCAGTCTCCTCGTCGTCGCCATCCTCAGCGCCGGCTGGTTCAGGTTCGACCTGGAAAAG
GAGCCCGCCCGGCTATGGGTTAGCCCGTCGTCGGCCGCTGCTCAGGAGAAGGAATATTTTGACACCAATTTCGGT
CCCTTTTACCGCGCCGAGAAGATCTTCCTCGTCAACGACACACTACCGTCCGGGCCCGGCCCAGTCCTGAGCTAC
GAGACTCTCAAGTGGTGGTCCGAGGTGGAGCAGGACATCGAGCGCATCGTCAGCCCGACCTTCCGAGACAGCCTC
CGAGACGTATGCTACAGACCGGCCAATGACGCGTGCGTCGTCCAGTCGGTCACGTCGTACTGGTGGGCGCGTGGC
GGAATCAGCCCTACCGGCTGGAAGGATCAGCTCCGGAGCTGTGCCAGGTCTCCCGTCGACTGCCGACCCAAGTTC
GGGCAGCCCATCGATGCCAGCATGGTGCTCGGCGGATACGGCGACGACGTGGTCGATGCCCGGGCCCTCACCGTC
ACGTGGGTGGTCAACAACGCTCAGGGGGGCACGGCGGCGCTGGCCAGGGCCATCGACTGGGAGAACGCCCTCCGC
GATCGGCTGCTCGAGGTTCAGGAAGAGGCCGAGGCCCGGGGGCTCCGGCTTTCCTTTAGCACCGAGATCAGCCTG
GAGCAGGAGCTCAACAAGTCGACCAACACCGACGCCAAGATTGTCGTCATCAGCTACATCGTCATGTTCATCTAC
GCCTGCATGGCGCTGGGCACGCCGTTTAGGCACGTGTTCCGGAACCCGGCGCTGCTGCTGGTCGAGTCCAAGGTG
ACGCTGGGCCTCGTGGGCATCCTCATCGTGCTCATGTCCATCGCCGCCTCCATCGGCTTCTTCTCGTGGGTCGGG
CTCAAGGCGACGCTCATCATCGTCGAGGTGATACCCTTTATCGTGCTGGCCGTGGGCGTCGACAACATCTTCCTC
ATCGTCCACGAGCTGGAGCGCGTAAACGCCAGCTGCCCGGACCAGATGGTCGAGGAGCGCGTGGCGAGGGCGCTG
GGCCGCATGGGCCCGTCGATACTGCTGTCTGCCCTGACGGAGACGGTGGCCTTTGCGCTGGGGGCGGCCGTCGGG
ATGCCGGCTGTGCGCAACTTCGCCGCCTATGCCGCCGGCGCGGTGCTGGTCAACGCGGTGCTTCAGATGACCATG
TTCGTCTCCCTGCTGGCTCTCAACCAGATGCGCGTCGAGGATCACCGGTGTGAGCTCTGGCCGTGGTGGCAGGTG
ACCAAGGCTCGTGTCCACATGGACGGCACAAACGGCTTCGTCTCGAGCGGCCGACATGACGATGAGGAGGGCCCG
CTGCAGGTCTTTATAAAGAACACGTACGCGCCTCGGCTGCTGCGAAGAAAGGTCAAGCTGGCTGTCGTCGCCGTC
TTCCTGGGCGTCTTCGCCGCAGGCCTGGCTCTTCTACCGCGGCTGCAGCTCGGGCTGGATCAGCGCGTGGCCATC
CCGGACGGCTCCTATCTCATCCCTTACTTCGACGACATGTACGACTATCTCGAGACGGGACCGCCTCTCTACTTC
GTCACCCGCGGAGTCGACGCGTCTCGGAGGCCGGAGCAGCAGCAGCTGTGCTCGCGCTTCACGACGTGCCAGCCC
CTTTCGCTGACCAACCGGCTCGAGCTCGAGCGGCAGCGTCCCGACGTGTCGTACATCGCCTCGCCCACCGCCAGC
TGGATAGACGACTTCTTCCTCTGGCTCAACCCCGTCTACGACCACTGCTGCGTCGACAAGGGGTCGCCGTGCTTC
GCCAACCGCCAGCCTCCCTGGAACACGACGCTATCCGGCATGCCCGAGAGCGCCGAGTTCTTCCGCTACCTCGAC
AGGTTCCTCTCCTCGCCTGCCGACGACGACTGCCCGCTGGGCGGCCAGGCCGCGTACGGAGACGCCGTCGTGGTG
GACCGGGACGAGGCGGCGGTGCGGGCCAGCCACTTCCGGACGGCTCACACACCGCTCCGGAGCCAGGCCGACTTC
ATCGATGCCTACGCGGCCGCCAGACGGATCGCGGCAGACGTGTCCCGCCAGACGGGCGCCGACGTGTTCCCCTAC
AGCGTCTTCTACATCTTCTTCGACCAGTACCTGTCCATGGTGCCCCTCGCGGCCGGTCTTCTCTCGGCTACCGTG
GTCATCATCCTGGCCATGGCCTGCCTGCTACTCGGCTCCATCCTGACGTCTGTCGTCGTGGCGGCGACGGTGGTC
ATGACGGTCGTCGACATCATGGGCGCCATGGCCCTCATGGGCGTCTCCCTCAACGCCGTCTCCCTCGTCAACCTC
ATCATCTGCGTCGGCATCTCAGTCGAGTTCTGCGCTCACGTAGCCCGAGCCTTTACCTTTCCCTCTCGCACCGTC
ATGGAAGCCAACAACAACGCCTTCCGCGGCCGCGACGCCCGCGCCTGGACCGCCCTCGTCAACGTCGGCGGCTCC
GTCTTCTCCGGCATCACCATCACCAAGCTCCTCGGCGTCTGCGTCTTGGCCTTTACGAGCTCCAAGATCTTTGAG
ATTTACTACTTCCGCGTCTGGCTCGCTCTCGTCATCTTTGCCGCCCTGCACGCCCTCGTCTTCCTGCCCGTTGCT
CTCAGCTTCGCCGGCGGTCGTGGCTACGTCGATCCTGAGAGCGAGGGGACTGCTGCTCAGGATCTTACCGATAGG
AGGTGGCGGGCTATCCGGGTTCACGACAATAGCGACTCGGACGATGGGTTCTGA
Transcript >Ophun1|1068
ATGCGTCATCGGTTCGCGCCTCTGCTCCTGGCGGCCGCGCCCTTACTCCTGGCCGAGCCCTTGACGCCCAAACAT
GAACCCGGACGATGCGCCATGCGCGGTCAGTGTGGCAAGCAGAGTCTGTTCGGCAAGCAGCTGCCTTGCGTCGAC
AATGATGTCGCTCGTGAGCCCGACTCGGAGCTCCGCAAGGAGATTGTCGACCTCTGCGGCGCTGAATGGAGCCAT
TCTCCCGTCTGCTGCACGCTCGACCAGGTCCGGGCGCTCAAGTCGGAGCTCGGTACGCCCCAAACGCTCATCGGC
TCCTGTCCGGCATGCAAGCGCAACTTCTTCAACCTCTTCTGCCAGTTTGCCTGCTCTCCGGACCAGTCTCTCTTC
GTCAACGTCACCGCCTCGGTGGAAAAGAACGGCAAACACCTCGTGACCGAGATCGATCAGCTGATATCCGAGGAA
TACGGCTCCGGCTTCTACGACAGCTGCAAGGAAGTCAAGTTTGGCGGCGCCAACTCGAGGGCCATGGACTTGATC
GGCGGTGGCGCAAAGAACTACCACCAGCTGCTCAAGTTTCTCGGCGATAAGAAGCCCTTTGTCGGCTCTCCCTTC
CAGATCAACTTCCCCGAATCATATGGCGACGCCCACATGGGTCCTCTCAAGAACATGCACCCAAAGAGCTGCAAC
GACTCGGACCCAAATTACCGCTGCGTCTGCGTCGACTGTCCCCAAGTCTGTCCCAAGCTGCCTGCCGTCGACAAG
CAGGGCTCCTGCAGGGTCGGCGCCCTTCCGTGTCTGTCGTTTGCCTCCATCTTCACCTACTGCGTCCTCCTCTCC
GCCATGGTCGCGTCCGTCTTCGGCCACGTCGCGTGGAAGAGATACGCTCAACACCAGGCCGAGAGGACCAGGCTT
CTCCACGGGTCGTCCCACAGCGACGACGACGACGAGGGCGGGCCGGTCCTGACCGACGCCGCCCGTGATCGTCCC
ACCAGGCGATACTGGCTCAACGATAAGTGCGACAGGGCCTTTGGCAGGCTCGGGCATGCGGCCGCCCGCTTCCCC
GGTCTGACCATCGGCACCAGTCTCCTCGTCGTCGCCATCCTCAGCGCCGGCTGGTTCAGGTTCGACCTGGAAAAG
GAGCCCGCCCGGCTATGGGTTAGCCCGTCGTCGGCCGCTGCTCAGGAGAAGGAATATTTTGACACCAATTTCGGT
CCCTTTTACCGCGCCGAGAAGATCTTCCTCGTCAACGACACACTACCGTCCGGGCCCGGCCCAGTCCTGAGCTAC
GAGACTCTCAAGTGGTGGTCCGAGGTGGAGCAGGACATCGAGCGCATCGTCAGCCCGACCTTCCGAGACAGCCTC
CGAGACGTATGCTACAGACCGGCCAATGACGCGTGCGTCGTCCAGTCGGTCACGTCGTACTGGTGGGCGCGTGGC
GGAATCAGCCCTACCGGCTGGAAGGATCAGCTCCGGAGCTGTGCCAGGTCTCCCGTCGACTGCCGACCCAAGTTC
GGGCAGCCCATCGATGCCAGCATGGTGCTCGGCGGATACGGCGACGACGTGGTCGATGCCCGGGCCCTCACCGTC
ACGTGGGTGGTCAACAACGCTCAGGGGGGCACGGCGGCGCTGGCCAGGGCCATCGACTGGGAGAACGCCCTCCGC
GATCGGCTGCTCGAGGTTCAGGAAGAGGCCGAGGCCCGGGGGCTCCGGCTTTCCTTTAGCACCGAGATCAGCCTG
GAGCAGGAGCTCAACAAGTCGACCAACACCGACGCCAAGATTGTCGTCATCAGCTACATCGTCATGTTCATCTAC
GCCTGCATGGCGCTGGGCACGCCGTTTAGGCACGTGTTCCGGAACCCGGCGCTGCTGCTGGTCGAGTCCAAGGTG
ACGCTGGGCCTCGTGGGCATCCTCATCGTGCTCATGTCCATCGCCGCCTCCATCGGCTTCTTCTCGTGGGTCGGG
CTCAAGGCGACGCTCATCATCGTCGAGGTGATACCCTTTATCGTGCTGGCCGTGGGCGTCGACAACATCTTCCTC
ATCGTCCACGAGCTGGAGCGCGTAAACGCCAGCTGCCCGGACCAGATGGTCGAGGAGCGCGTGGCGAGGGCGCTG
GGCCGCATGGGCCCGTCGATACTGCTGTCTGCCCTGACGGAGACGGTGGCCTTTGCGCTGGGGGCGGCCGTCGGG
ATGCCGGCTGTGCGCAACTTCGCCGCCTATGCCGCCGGCGCGGTGCTGGTCAACGCGGTGCTTCAGATGACCATG
TTCGTCTCCCTGCTGGCTCTCAACCAGATGCGCGTCGAGGATCACCGGTGTGAGCTCTGGCCGTGGTGGCAGGTG
ACCAAGGCTCGTGTCCACATGGACGGCACAAACGGCTTCGTCTCGAGCGGCCGACATGACGATGAGGAGGGCCCG
CTGCAGGTCTTTATAAAGAACACGTACGCGCCTCGGCTGCTGCGAAGAAAGGTCAAGCTGGCTGTCGTCGCCGTC
TTCCTGGGCGTCTTCGCCGCAGGCCTGGCTCTTCTACCGCGGCTGCAGCTCGGGCTGGATCAGCGCGTGGCCATC
CCGGACGGCTCCTATCTCATCCCTTACTTCGACGACATGTACGACTATCTCGAGACGGGACCGCCTCTCTACTTC
GTCACCCGCGGAGTCGACGCGTCTCGGAGGCCGGAGCAGCAGCAGCTGTGCTCGCGCTTCACGACGTGCCAGCCC
CTTTCGCTGACCAACCGGCTCGAGCTCGAGCGGCAGCGTCCCGACGTGTCGTACATCGCCTCGCCCACCGCCAGC
TGGATAGACGACTTCTTCCTCTGGCTCAACCCCGTCTACGACCACTGCTGCGTCGACAAGGGGTCGCCGTGCTTC
GCCAACCGCCAGCCTCCCTGGAACACGACGCTATCCGGCATGCCCGAGAGCGCCGAGTTCTTCCGCTACCTCGAC
AGGTTCCTCTCCTCGCCTGCCGACGACGACTGCCCGCTGGGCGGCCAGGCCGCGTACGGAGACGCCGTCGTGGTG
GACCGGGACGAGGCGGCGGTGCGGGCCAGCCACTTCCGGACGGCTCACACACCGCTCCGGAGCCAGGCCGACTTC
ATCGATGCCTACGCGGCCGCCAGACGGATCGCGGCAGACGTGTCCCGCCAGACGGGCGCCGACGTGTTCCCCTAC
AGCGTCTTCTACATCTTCTTCGACCAGTACCTGTCCATGGTGCCCCTCGCGGCCGGTCTTCTCTCGGCTACCGTG
GTCATCATCCTGGCCATGGCCTGCCTGCTACTCGGCTCCATCCTGACGTCTGTCGTCGTGGCGGCGACGGTGGTC
ATGACGGTCGTCGACATCATGGGCGCCATGGCCCTCATGGGCGTCTCCCTCAACGCCGTCTCCCTCGTCAACCTC
ATCATCTGCGTCGGCATCTCAGTCGAGTTCTGCGCTCACGTAGCCCGAGCCTTTACCTTTCCCTCTCGCACCGTC
ATGGAAGCCAACAACAACGCCTTCCGCGGCCGCGACGCCCGCGCCTGGACCGCCCTCGTCAACGTCGGCGGCTCC
GTCTTCTCCGGCATCACCATCACCAAGCTCCTCGGCGTCTGCGTCTTGGCCTTTACGAGCTCCAAGATCTTTGAG
ATTTACTACTTCCGCGTCTGGCTCGCTCTCGTCATCTTTGCCGCCCTGCACGCCCTCGTCTTCCTGCCCGTTGCT
CTCAGCTTCGCCGGCGGTCGTGGCTACGTCGATCCTGAGAGCGAGGGGACTGCTGCTCAGGATCTTACCGATAGG
AGGTGGCGGGCTATCCGGGTTCACGACAATAGCGACTCGGACGATGGGTTCTGA
Gene >Ophun1|1068
ATGCGTCATCGGTTCGCGCCTCTGCTCCTGGCGGCCGCGCCCTTACTCCTGGCCGAGCCCTTGACGCCCAAACAT
GAACCCGGACGATGCGCCATGCGCGGTCAGTGTGGCAAGCAGAGTCTGTTCGGCAAGCAGCTGCCTTGCGTCGAC
AATGATGTCGCTCGTGAGCCCGACTCGGAGCTCCGCAAGGAGATTGTCGACCTCTGCGGCGCTGAATGGAGCCAT
TCTCCCGTCTGCTGCACGCTCGACCAGGTCCGGGCGCTCAAGTCGGAGCTCGGTACGCCCCAAACGCTCATCGGC
TCCTGTCCGGCATGCAAGCGCAACTTCTTCAACCTCTTCTGCCAGTTTGCCTGCTCTCCGGACCAGTCTCTCTTC
GTCAACGTCACCGCCTCGGTGGAAAAGAACGGCAAACACCTCGTGACCGAGATCGATCAGCTGATATCCGAGGAA
TACGGCTCCGGCTTCTACGACAGCTGCAAGGAAGTCAAGTTTGGCGGCGCCAACTCGAGGGCCATGGACTTGATC
GGCGGTGGCGCAAAGAACTACCACCAGCTGCTCAAGTTTCTCGGCGATAAGAAGCCCTTTGTCGGCTCTCCCTTC
CAGATCAACTTCCCCGAATCATATGGCGACGCCCACATGGGTCCTCTCAAGAACATGCACCCAAAGAGCTGCAAC
GACTCGGACCCAAATTACCGCTGCGTCTGCGTCGACTGTCCCCAAGTCTGTCCCAAGCTGCCTGCCGTCGACAAG
CAGGGCTCCTGCAGGGTCGGCGCCCTTCCGTGTCTGTCGTTTGCCTCCATCTTCACCTACTGCGTCCTCCTCTCC
GCCATGGTCGCGTCCGTCTTCGGCCACGTCGCGTGGAAGAGATACGCTCAACACCAGGCCGAGAGGACCAGGCTT
CTCCACGGGTCGTCCCACAGCGACGACGACGACGAGGGCGGGCCGGTCCTGACCGACGCCGCCCGTGATCGTCCC
ACCAGGCGATACTGGCTCAACGATAAGTGCGACAGGGCCTTTGGCAGGCTCGGGCATGCGGCCGCCCGCTTCCCC
GGTCTGACCATCGGCACCAGTCTCCTCGTCGTCGCCATCCTCAGCGCCGGCTGGTTCAGGTTCGACCTGGAAAAG
GAGCCCGCCCGGCTATGGGTTAGCCCGTCGTCGGCCGCTGCTCAGGAGAAGGAATATTTTGACACCAATTTCGGT
CCCTTTTACCGCGCCGAGAAGATCTTCCTCGTCAACGACACACTACCGTCCGGGCCCGGCCCAGTCCTGAGCTAC
GAGACTCTCAAGTGGTGGTCCGAGGTGGAGCAGGACATCGAGCGCATCGTCAGCCCGACCTTCCGAGACAGCCTC
CGAGACGTATGCTACAGACCGGCCAATGACGCGTGCGTCGTCCAGTCGGTCACGTCGTACTGGTGGGCGCGTGGC
GGAATCAGCCCTACCGGCTGGAAGGATCAGCTCCGGAGCTGTGCCAGGTCTCCCGTCGACTGCCGACCCAAGTTC
GGGCAGCCCATCGATGCCAGCATGGTGCTCGGCGGATACGGCGACGACGTGGTCGATGCCCGGGCCCTCACCGTC
ACGTGGGTGGTCAACAACGCTCAGGGGGGCACGGCGGCGCTGGCCAGGGCCATCGACTGGGAGAACGCCCTCCGC
GATCGGCTGCTCGAGGTTCAGGAAGAGGCCGAGGCCCGGGGGCTCCGGCTTTCCTTTAGCACCGAGATCAGCCTG
GAGCAGGAGCTCAACAAGTCGACCAACACCGACGCCAAGATTGTCGTCATCAGCTACATCGTCATGTTCATCTAC
GCCTGCATGGCGCTGGGCACGCCGTTTAGGCACGTGTTCCGGAACCCGGCGCTGCTGCTGGTCGAGTCCAAGGTG
ACGCTGGGCCTCGTGGGCATCCTCATCGTGCTCATGTCCATCGCCGCCTCCATCGGCTTCTTCTCGTGGGTCGGG
CTCAAGGCGACGCTCATCATCGTCGAGGTGATACCCTTTATCGTGCTGGCCGTGGGCGTCGACAACATCTTCCTC
ATCGTCCACGAGCTGGAGCGCGTAAACGCCAGCTGCCCGGACCAGATGGTCGAGGAGCGCGTGGCGAGGGCGCTG
GGCCGCATGGGCCCGTCGATACTGCTGTCTGCCCTGACGGAGACGGTGGCCTTTGCGCTGGGGGCGGCCGTCGGG
ATGCCGGCTGTGCGCAACTTCGCCGCCTATGCCGCCGGCGCGGTGCTGGTCAACGCGGTGCTTCAGATGACCATG
TTCGTCTCCCTGCTGGCTCTCAACCAGATGCGCGTCGAGGATCACCGGTGTGAGCTCTGGCCGTGGTGGCAGGTG
ACCAAGGCTCGTGTCCACATGGACGGCACAAACGGCTTCGTCTCGAGCGGCCGACATGACGATGAGGAGGGCCCG
CTGCAGGTCTTTATAAAGAACACGTACGCGCCTCGGCTGCTGCGAAGAAAGGTCAAGCTGGCTGTCGTCGCCGTC
TTCCTGGGCGTCTTCGCCGCAGGCCTGGCTCTTCTACCGCGGCTGCAGCTCGGGCTGGATCAGCGCGTGGCCATC
CCGGACGGCTCCTATCTCATCCCTTACTTCGACGACATGTACGACTATCTCGAGACGGGACCGCCTCTCTACTTC
GTCACCCGCGGAGTCGACGCGTCTCGGAGGCCGGAGCAGCAGCAGCTGTGCTCGCGCTTCACGACGTGCCAGCCC
CTTTCGCTGACCAACCGGCTCGAGCTCGAGCGGCAGCGTCCCGACGTGTCGTACATCGCCTCGCCCACCGCCAGC
TGGATAGACGACTTCTTCCTCTGGCTCAACCCCGTCTACGACCACTGCTGCGTCGACAAGGGGTCGCCGTGCTTC
GCCAACCGCCAGCCTCCCTGGAACACGACGCTATCCGGCATGCCCGAGAGCGCCGAGTTCTTCCGCTACCTCGAC
AGGTTCCTCTCCTCGCCTGCCGACGACGACTGCCCGCTGGGCGGCCAGGCCGCGTACGGAGACGCCGTCGTGGTG
GACCGGGACGAGGCGGCGGTGCGGGCCAGCCACTTCCGGACGGCTCACACACCGCTCCGGAGCCAGGCCGACTTC
ATCGATGCCTACGCGGCCGCCAGACGGATCGCGGCAGACGTGTCCCGCCAGACGGGCGCCGACGTGTTCCCCTAC
AGCGTCTTCTACATCTTCTTCGACCAGTACCTGTCCATGGTGCCCCTCGCGGCCGGTCTTCTCTCGGCTACCGTG
GTCATCATCCTGGCCATGGCCTGCCTGCTACTCGGCTCCATCCTGACGTCTGTCGTCGTGGCGGCGACGGTGGTC
ATGACGGTCGTCGACATCATGGGCGCCATGGCCCTCATGGGCGTCTCCCTCAACGCCGTCTCCCTCGTCAACCTC
ATCATCTGCGTCGGCATCTCAGTCGAGTTCTGCGCTCACGTAGCCCGAGCCTTTACCTTTCCCTCTCGCACCGTC
ATGGAAGCCAACAACAACGCCTTCCGCGGCCGCGACGCCCGCGCCTGGACCGCCCTCGTCAACGTCGGCGGCTCC
GTCTTCTCCGGCATCACCATCACCAAGCTCCTCGGCGTCTGCGTCTTGGCCTTTACGAGCTCCAAGATCTTTGAG
ATTTACTACTTCCGCGTCTGGCTCGCTCTCGTCATCTTTGCCGCCCTGCACGCCCTCGTCTTCCTGCCCGTTGCT
CTCAGCTTCGCCGGCGGTCGTGGCTACGTCGATCCTGAGAGCGAGGGGACTGCTGCTCAGGATCTTACCGATAGG
AGGTGGCGGGCTATCCGGGTTCACGACAATAGCGACTCGGACGATGGGTTCTGA

© 2022 - Robin Ohm - Utrecht University - The Netherlands

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