Fungal Genomics

at Utrecht University

General Properties

Protein IDOphio5|4892
Gene name
Locationscaffold_393:8804..12809
Strand-
Gene length (bp)4005
Transcript length (bp)3390
Coding sequence length (bp)3387
Protein length (aa) 1129

Your browser does not support drawing a protein figure.

PFAM Domains

PFAM Domain ID Short name Long name E-value Start End
PF05193 Peptidase_M16_C Peptidase M16 inactive domain 1.9E-13 274 452
PF00675 Peptidase_M16 Insulinase (Peptidase family M16) 4.7E-07 136 220

Swissprot hits

[Show all]
Swissprot ID Swissprot Description Start End E-value
sp|Q10068|YAN2_SCHPO Uncharacterized protein C3H1.02c OS=Schizosaccharomyces pombe (strain 972 / ATCC 24843) GN=SPAC3H1.02c PE=4 SV=1 84 1104 7.0E-169
sp|Q12496|YO098_YEAST Uncharacterized protein YOL098C OS=Saccharomyces cerevisiae (strain ATCC 204508 / S288c) GN=YOL098C PE=1 SV=1 86 1083 8.0E-167
sp|P48053|YPD1_CAEEL Uncharacterized protein C05D11.1 OS=Caenorhabditis elegans GN=C05D11.1 PE=4 SV=2 104 1041 1.0E-109
sp|Q9LJL3|PREP1_ARATH Presequence protease 1, chloroplastic/mitochondrial OS=Arabidopsis thaliana GN=PREP1 PE=1 SV=2 135 965 6.0E-30
sp|Q8VY06|PREP2_ARATH Presequence protease 2, chloroplastic/mitochondrial OS=Arabidopsis thaliana GN=PREP2 PE=1 SV=1 92 965 3.0E-23
[Show all]
[Show less]
Swissprot ID Swissprot Description Start End E-value
sp|Q10068|YAN2_SCHPO Uncharacterized protein C3H1.02c OS=Schizosaccharomyces pombe (strain 972 / ATCC 24843) GN=SPAC3H1.02c PE=4 SV=1 84 1104 7.0E-169
sp|Q12496|YO098_YEAST Uncharacterized protein YOL098C OS=Saccharomyces cerevisiae (strain ATCC 204508 / S288c) GN=YOL098C PE=1 SV=1 86 1083 8.0E-167
sp|P48053|YPD1_CAEEL Uncharacterized protein C05D11.1 OS=Caenorhabditis elegans GN=C05D11.1 PE=4 SV=2 104 1041 1.0E-109
sp|Q9LJL3|PREP1_ARATH Presequence protease 1, chloroplastic/mitochondrial OS=Arabidopsis thaliana GN=PREP1 PE=1 SV=2 135 965 6.0E-30
sp|Q8VY06|PREP2_ARATH Presequence protease 2, chloroplastic/mitochondrial OS=Arabidopsis thaliana GN=PREP2 PE=1 SV=1 92 965 3.0E-23
sp|Q4IA56|CYM1_GIBZE Mitochondrial presequence protease OS=Gibberella zeae (strain PH-1 / ATCC MYA-4620 / FGSC 9075 / NRRL 31084) GN=CYM1 PE=3 SV=1 124 1050 5.0E-21
sp|Q5JRX3|PREP_HUMAN Presequence protease, mitochondrial OS=Homo sapiens GN=PITRM1 PE=1 SV=3 124 669 1.0E-19
sp|Q5RDG3|PREP_PONAB Presequence protease, mitochondrial OS=Pongo abelii GN=PITRM1 PE=2 SV=1 124 669 4.0E-19
sp|Q46205|HYPA_CLOPE Protein HypA OS=Clostridium perfringens (strain 13 / Type A) GN=hypA PE=4 SV=2 135 592 5.0E-18
sp|Q28BR5|PREP_XENTR Presequence protease, mitochondrial OS=Xenopus tropicalis GN=pitrm1 PE=2 SV=1 124 399 1.0E-16
sp|Q7ZVZ6|PREP_DANRE Presequence protease, mitochondrial OS=Danio rerio GN=pitrm1 PE=2 SV=1 124 331 3.0E-16
sp|Q7S7C0|CYM1_NEUCR Mitochondrial presequence protease OS=Neurospora crassa (strain ATCC 24698 / 74-OR23-1A / CBS 708.71 / DSM 1257 / FGSC 987) GN=cym-1 PE=3 SV=1 124 314 6.0E-16
sp|Q6PF24|PREP_XENLA Presequence protease, mitochondrial OS=Xenopus laevis GN=pitrm1 PE=2 SV=1 124 399 5.0E-15
sp|Q8K411|PREP_MOUSE Presequence protease, mitochondrial OS=Mus musculus GN=Pitrm1 PE=1 SV=1 124 702 5.0E-15
sp|Q5A301|CYM1_CANAL Mitochondrial presequence protease OS=Candida albicans (strain SC5314 / ATCC MYA-2876) GN=CYM1 PE=3 SV=1 124 344 2.0E-14
sp|Q6BTC0|CYM1_DEBHA Mitochondrial presequence protease OS=Debaryomyces hansenii (strain ATCC 36239 / CBS 767 / JCM 1990 / NBRC 0083 / IGC 2968) GN=CYM1 PE=3 SV=2 124 316 6.0E-14
sp|O42908|CYM1_SCHPO Mitochondrial presequence protease OS=Schizosaccharomyces pombe (strain 972 / ATCC 24843) GN=cym1 PE=3 SV=1 86 311 9.0E-14
sp|Q759T9|CYM1_ASHGO Mitochondrial presequence protease OS=Ashbya gossypii (strain ATCC 10895 / CBS 109.51 / FGSC 9923 / NRRL Y-1056) GN=CYM1 PE=3 SV=2 135 399 5.0E-13
sp|Q2UGN1|CYM1_ASPOR Mitochondrial presequence protease OS=Aspergillus oryzae (strain ATCC 42149 / RIB 40) GN=cym1 PE=3 SV=1 135 299 6.0E-13
sp|Q5B6H7|CYM1_EMENI Mitochondrial presequence protease OS=Emericella nidulans (strain FGSC A4 / ATCC 38163 / CBS 112.46 / NRRL 194 / M139) GN=cym1 PE=3 SV=1 135 330 1.0E-12
sp|Q9V9E3|PREP_DROME Presequence protease, mitochondrial OS=Drosophila melanogaster GN=CG3107 PE=2 SV=2 107 335 3.0E-12
sp|Q4WP38|CYM1_ASPFU Mitochondrial presequence protease OS=Neosartorya fumigata (strain ATCC MYA-4609 / Af293 / CBS 101355 / FGSC A1100) GN=cym1 PE=3 SV=1 135 399 4.0E-12
sp|Q6CWW6|CYM1_KLULA Mitochondrial presequence protease OS=Kluyveromyces lactis (strain ATCC 8585 / CBS 2359 / DSM 70799 / NBRC 1267 / NRRL Y-1140 / WM37) GN=CYM1 PE=3 SV=1 124 311 7.0E-12
sp|P31828|PQQL_ECOLI Probable zinc protease PqqL OS=Escherichia coli (strain K12) GN=pqqL PE=3 SV=2 109 331 3.0E-11
sp|Q6C0U8|CYM1_YARLI Mitochondrial presequence protease OS=Yarrowia lipolytica (strain CLIB 122 / E 150) GN=CYM1 PE=3 SV=1 124 317 3.0E-11
sp|O51246|Y228_BORBU Uncharacterized protein BB_0228 OS=Borrelia burgdorferi (strain ATCC 35210 / B31 / CIP 102532 / DSM 4680) GN=BB_0228 PE=4 SV=1 104 312 7.0E-11
sp|P32898|CYM1_YEAST Mitochondrial presequence protease OS=Saccharomyces cerevisiae (strain ATCC 204508 / S288c) GN=CYM1 PE=1 SV=2 124 311 1.0E-08
sp|Q6FUI7|CYM1_CANGA Mitochondrial presequence protease OS=Candida glabrata (strain ATCC 2001 / CBS 138 / JCM 3761 / NBRC 0622 / NRRL Y-65) GN=CYM1 PE=3 SV=1 124 960 1.0E-08
sp|P55679|Y4WA_RHISN Uncharacterized zinc protease y4wA OS=Rhizobium sp. (strain NGR234) GN=NGR_a01040 PE=3 SV=1 109 435 2.0E-08
sp|O86835|Y5738_STRCO Uncharacterized zinc protease SCO5738 OS=Streptomyces coelicolor (strain ATCC BAA-471 / A3(2) / M145) GN=SCO5738 PE=3 SV=1 137 410 4.0E-08
sp|P45181|PQQL_HAEIN Probable zinc protease PqqL OS=Haemophilus influenzae (strain ATCC 51907 / DSM 11121 / KW20 / Rd) GN=pqqL PE=3 SV=1 109 382 7.0E-06
[Show less]

GO

(None)

SignalP

[Help with interpreting these statistics]
SignalP signal predicted Location
(based on Ymax)
D score
(significance: > 0.45)
No 1 - 11 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.

Expression values

Label Description Expression (RPKM) Confidence interval (low) Confidence interval (high)
SC16a Pure fungal culture 45.93 24.59 67.28
CcL In ants, during behavior modification 52.60 27.17 78.02
CcD In ants, recently dead 79.33 39.74 118.91

Differential expression

Label1 Label2 Q-value Significant difference
SC16a CcL 0.609851 no
SC16a CcD 0.018694 yes
CcL CcD 0.090250 no

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|4892
MTLRLAAAGTGTCLWHAGLLSSSRSGLLSVLRYHLGLLQTPDLTLLLSLCQSPLRSFHWLEARSPFIHRLYAPPS
RMPSDALKSRFRKIQSFKTDYAPCIITQYVSDRSGMSVVVADRKGPKINGYFTLATEVLDDSGAPHTLEHLIFMG
SKTYRYKGLLDKLSSRAYSSTNAWTATDHTAYTLETAGWDGFSQVLPVYLEHIILPVITDEAIVTEVWHIDGEGN
DAGVVYSEMQAVQFRSSEIMDLKARRLLYPEDVGFRYETGGMTDALRVLTPERIRQFHRDMYQPRNLCLVIVGEA
DHDDLLRILDEFEESIEDDIPSLSAPFKRPWIDSSQPPALRETVVTTAEFPEEDESVGEILIGFFGPNCIDMVAT
SALNVLLTYLCGSSVSILENVLVEREELASSISHYWESRPNSVIWLQPTGVATGKLELVEKRLLELLKEVASKPI
DMDYMRDCIRREKRQVKFHAETSESFYATNIITDYLFGKRDGSTLREIETLGEYEDLERWTDEEWRQFLSKWMAD
AHHVSILGKPSLALAAKMKSEEAERIAKRKEELGPEGLQELGKRLEEAKQKNDVPIPAEVLERWSIPGTESIHFI
ESDTARSGQARSVGLGHGAAQARIDAAGDGDWPLFIQFEDVPTSFVHITIHVGTSQVPVELKPLMHIFSDNFFNT
HIMRDGKLVNFEQVVREIERDSVGYGIGSARSLGDPDGLMIQFQVEPDKYAVAVNWLRTMMFDSVFDAPRLRAAV
IKALADVPEGKRDGRGMASEVDAAIHMDKSSLSVAKRVLVRAVYLKRLRKLLRDDPDKVLSWFETLRSSLLTAQN
MRFLVTAKLEGLEEPVSTWDRLAEVLPREKGEQGMVPIPKLVSLLNDEGRQPGSYGAVVIPMTTLDSSYSVSSAR
SITSLSDPRFPAIMVAIGYLESVEGPLWNAVRGAGYAYGSYFSRNVDSGILSYRVYRSPDASKAMAASRDAIRAI
AEGEVAIDRHLLEGTMSQIVVMFADEQATMPSAAQQNFVQGVVRGLPKDWNKDILKRVRAVTEDEMKAVMRDLIL
PCFQPGTSNVVVTCAKLMSEGIESALKGVGYKVQTRELSYFHDDYGLEAGEDEDEDEDEDVDEDEGGSYSGSEDE
DEDD
Coding >Ophio5|4892
ATGACCTTGAGACTCGCAGCTGCCGGCACCGGAACTTGTCTCTGGCACGCCGGTCTGCTCTCCTCGTCGCGCTCT
GGGCTCCTTTCCGTGTTGCGGTACCATCTAGGTCTGTTACAGACTCCAGACCTCACTCTACTCTTGTCCCTTTGT
CAATCACCTCTGCGTTCTTTTCACTGGCTTGAAGCGAGGTCCCCGTTCATCCATCGACTCTACGCCCCACCGTCA
AGGATGCCTTCGGACGCGCTCAAGTCCCGGTTCCGCAAGATCCAGAGCTTCAAGACCGACTATGCCCCTTGCATC
ATCACGCAGTATGTATCGGATCGCAGCGGCATGTCCGTCGTCGTAGCCGACCGAAAGGGCCCTAAGATAAACGGC
TACTTTACTCTCGCCACCGAGGTCCTCGACGACTCGGGAGCGCCACACACGCTGGAACATCTCATTTTTATGGGC
TCTAAGACTTACCGGTACAAGGGCCTGCTCGACAAGCTCTCTTCGCGCGCCTACTCGTCGACCAATGCCTGGACG
GCCACGGATCATACCGCCTACACACTCGAGACTGCTGGCTGGGACGGCTTCTCCCAGGTGCTTCCCGTTTACCTA
GAGCACATTATCCTGCCCGTCATCACCGACGAAGCCATCGTCACCGAGGTCTGGCACATCGATGGAGAGGGCAAT
GACGCCGGCGTCGTCTACTCCGAGATGCAGGCTGTGCAGTTCCGTAGCTCGGAGATTATGGACCTCAAGGCCCGT
CGGCTTCTGTATCCAGAAGACGTCGGCTTTCGCTACGAAACCGGCGGCATGACCGACGCCTTACGGGTCCTTACT
CCTGAGCGTATTCGACAATTTCATCGCGACATGTACCAGCCTCGCAACCTCTGCCTCGTCATCGTCGGAGAGGCC
GATCACGATGACCTGCTGCGTATCCTGGACGAGTTTGAGGAGAGCATTGAGGACGATATTCCGTCCCTAAGTGCC
CCTTTCAAGCGTCCATGGATCGATTCTTCTCAGCCCCCTGCGCTTCGAGAGACCGTTGTTACCACGGCAGAGTTT
CCCGAGGAGGATGAATCCGTCGGTGAAATCCTCATCGGCTTCTTCGGGCCCAACTGCATCGACATGGTGGCCACG
TCAGCGCTCAATGTCCTGCTTACCTACCTCTGCGGCTCGTCTGTCTCCATCCTCGAAAACGTCCTCGTTGAGCGA
GAGGAGCTGGCTAGTTCCATTTCCCACTACTGGGAGTCTCGGCCCAATTCCGTCATCTGGCTACAGCCAACCGGA
GTCGCCACCGGGAAGCTAGAGTTGGTCGAGAAGCGGCTGTTGGAACTGCTCAAGGAGGTGGCGTCGAAGCCGATC
GACATGGACTACATGCGCGACTGCATTCGTCGGGAGAAACGCCAGGTCAAATTTCACGCAGAAACGTCTGAGTCT
TTCTACGCCACCAACATCATCACCGACTACCTTTTCGGGAAACGCGACGGCTCCACTCTCCGGGAGATCGAGACG
CTGGGAGAATATGAAGATCTGGAGCGATGGACAGACGAGGAATGGCGTCAGTTCCTAAGCAAGTGGATGGCCGAC
GCCCATCACGTCTCTATCCTCGGGAAGCCGTCGCTCGCTCTCGCGGCCAAGATGAAGAGCGAAGAGGCTGAGCGT
ATCGCAAAGCGCAAGGAGGAGCTCGGTCCCGAGGGCCTGCAGGAGCTGGGGAAGCGGCTGGAAGAGGCCAAGCAG
AAAAACGACGTGCCGATCCCGGCCGAGGTGCTCGAGCGCTGGTCCATCCCCGGCACTGAGTCGATCCACTTCATA
GAGTCGGATACGGCGCGGTCCGGCCAGGCTCGGTCCGTCGGGCTCGGCCACGGGGCGGCGCAGGCTCGGATCGAC
GCCGCTGGGGACGGCGACTGGCCGCTCTTTATTCAGTTCGAGGACGTGCCGACTAGCTTTGTGCATATCACGATT
CACGTCGGCACGTCGCAGGTGCCCGTTGAGCTGAAGCCGCTGATGCACATCTTCAGCGACAACTTCTTCAACACG
CACATCATGCGCGACGGGAAGCTCGTCAACTTTGAGCAGGTAGTACGGGAGATTGAGCGCGACAGTGTCGGATAC
GGCATCGGCTCGGCACGCTCTCTCGGCGATCCAGACGGGCTCATGATTCAGTTCCAGGTTGAGCCGGACAAGTAT
GCCGTCGCCGTCAACTGGCTGCGGACCATGATGTTCGACTCGGTATTTGACGCGCCGAGGTTGCGCGCTGCCGTC
ATCAAGGCGCTCGCGGACGTGCCCGAGGGCAAACGCGACGGTCGCGGCATGGCCAGCGAGGTGGACGCGGCCATT
CACATGGACAAGTCGTCCCTGTCCGTGGCCAAGCGCGTTCTTGTCAGGGCCGTCTACCTCAAGCGCCTCAGGAAA
CTCCTTCGCGACGATCCGGACAAGGTGCTTTCGTGGTTCGAAACGCTGCGGAGCTCTCTCCTGACGGCGCAGAAC
ATGCGCTTCTTGGTGACGGCGAAGCTCGAGGGCCTCGAGGAACCGGTCTCGACCTGGGATCGACTCGCCGAGGTG
CTGCCCCGAGAGAAAGGGGAACAAGGTATGGTGCCTATCCCCAAGCTGGTGAGCCTCCTCAACGACGAGGGGCGC
CAGCCGGGCTCGTATGGCGCCGTCGTCATCCCCATGACGACGCTCGACAGCTCTTACTCGGTCAGCTCGGCGCGC
AGCATCACGTCGCTTTCGGACCCGCGCTTCCCGGCCATCATGGTGGCCATCGGATATCTCGAGTCGGTCGAAGGG
CCGCTGTGGAACGCCGTCAGGGGTGCCGGCTACGCGTACGGCTCATATTTCTCTCGCAACGTCGACTCTGGCATT
CTCTCGTACCGCGTCTACCGCTCGCCGGACGCGTCCAAGGCCATGGCGGCTTCGCGCGACGCCATCCGTGCCATT
GCCGAGGGCGAAGTCGCCATCGATCGCCATCTTCTGGAGGGGACCATGAGCCAGATCGTAGTCATGTTTGCTGAT
GAGCAGGCTACCATGCCGAGCGCCGCGCAGCAGAATTTTGTCCAGGGCGTCGTCAGGGGTCTGCCCAAGGATTGG
AACAAGGATATCCTCAAGCGTGTGAGGGCCGTGACCGAGGACGAGATGAAGGCCGTCATGAGGGATCTGATTCTG
CCTTGTTTCCAGCCGGGGACGAGCAACGTTGTGGTGACGTGTGCGAAGCTCATGTCCGAGGGTATCGAGTCAGCA
TTAAAGGGCGTGGGGTACAAGGTTCAGACGCGCGAGCTGAGCTACTTCCACGACGACTACGGTCTCGAAGCCGGC
GAAGACGAAGACGAAGACGAGGACGAGGACGTGGATGAAGACGAGGGGGGTTCCTACAGCGGTAGCGAGGATGAG
GATGAGGACGAC
Transcript >Ophio5|4892
ATGACCTTGAGACTCGCAGCTGCCGGCACCGGAACTTGTCTCTGGCACGCCGGTCTGCTCTCCTCGTCGCGCTCT
GGGCTCCTTTCCGTGTTGCGGTACCATCTAGGTCTGTTACAGACTCCAGACCTCACTCTACTCTTGTCCCTTTGT
CAATCACCTCTGCGTTCTTTTCACTGGCTTGAAGCGAGGTCCCCGTTCATCCATCGACTCTACGCCCCACCGTCA
AGGATGCCTTCGGACGCGCTCAAGTCCCGGTTCCGCAAGATCCAGAGCTTCAAGACCGACTATGCCCCTTGCATC
ATCACGCAGTATGTATCGGATCGCAGCGGCATGTCCGTCGTCGTAGCCGACCGAAAGGGCCCTAAGATAAACGGC
TACTTTACTCTCGCCACCGAGGTCCTCGACGACTCGGGAGCGCCACACACGCTGGAACATCTCATTTTTATGGGC
TCTAAGACTTACCGGTACAAGGGCCTGCTCGACAAGCTCTCTTCGCGCGCCTACTCGTCGACCAATGCCTGGACG
GCCACGGATCATACCGCCTACACACTCGAGACTGCTGGCTGGGACGGCTTCTCCCAGGTGCTTCCCGTTTACCTA
GAGCACATTATCCTGCCCGTCATCACCGACGAAGCCATCGTCACCGAGGTCTGGCACATCGATGGAGAGGGCAAT
GACGCCGGCGTCGTCTACTCCGAGATGCAGGCTGTGCAGTTCCGTAGCTCGGAGATTATGGACCTCAAGGCCCGT
CGGCTTCTGTATCCAGAAGACGTCGGCTTTCGCTACGAAACCGGCGGCATGACCGACGCCTTACGGGTCCTTACT
CCTGAGCGTATTCGACAATTTCATCGCGACATGTACCAGCCTCGCAACCTCTGCCTCGTCATCGTCGGAGAGGCC
GATCACGATGACCTGCTGCGTATCCTGGACGAGTTTGAGGAGAGCATTGAGGACGATATTCCGTCCCTAAGTGCC
CCTTTCAAGCGTCCATGGATCGATTCTTCTCAGCCCCCTGCGCTTCGAGAGACCGTTGTTACCACGGCAGAGTTT
CCCGAGGAGGATGAATCCGTCGGTGAAATCCTCATCGGCTTCTTCGGGCCCAACTGCATCGACATGGTGGCCACG
TCAGCGCTCAATGTCCTGCTTACCTACCTCTGCGGCTCGTCTGTCTCCATCCTCGAAAACGTCCTCGTTGAGCGA
GAGGAGCTGGCTAGTTCCATTTCCCACTACTGGGAGTCTCGGCCCAATTCCGTCATCTGGCTACAGCCAACCGGA
GTCGCCACCGGGAAGCTAGAGTTGGTCGAGAAGCGGCTGTTGGAACTGCTCAAGGAGGTGGCGTCGAAGCCGATC
GACATGGACTACATGCGCGACTGCATTCGTCGGGAGAAACGCCAGGTCAAATTTCACGCAGAAACGTCTGAGTCT
TTCTACGCCACCAACATCATCACCGACTACCTTTTCGGGAAACGCGACGGCTCCACTCTCCGGGAGATCGAGACG
CTGGGAGAATATGAAGATCTGGAGCGATGGACAGACGAGGAATGGCGTCAGTTCCTAAGCAAGTGGATGGCCGAC
GCCCATCACGTCTCTATCCTCGGGAAGCCGTCGCTCGCTCTCGCGGCCAAGATGAAGAGCGAAGAGGCTGAGCGT
ATCGCAAAGCGCAAGGAGGAGCTCGGTCCCGAGGGCCTGCAGGAGCTGGGGAAGCGGCTGGAAGAGGCCAAGCAG
AAAAACGACGTGCCGATCCCGGCCGAGGTGCTCGAGCGCTGGTCCATCCCCGGCACTGAGTCGATCCACTTCATA
GAGTCGGATACGGCGCGGTCCGGCCAGGCTCGGTCCGTCGGGCTCGGCCACGGGGCGGCGCAGGCTCGGATCGAC
GCCGCTGGGGACGGCGACTGGCCGCTCTTTATTCAGTTCGAGGACGTGCCGACTAGCTTTGTGCATATCACGATT
CACGTCGGCACGTCGCAGGTGCCCGTTGAGCTGAAGCCGCTGATGCACATCTTCAGCGACAACTTCTTCAACACG
CACATCATGCGCGACGGGAAGCTCGTCAACTTTGAGCAGGTAGTACGGGAGATTGAGCGCGACAGTGTCGGATAC
GGCATCGGCTCGGCACGCTCTCTCGGCGATCCAGACGGGCTCATGATTCAGTTCCAGGTTGAGCCGGACAAGTAT
GCCGTCGCCGTCAACTGGCTGCGGACCATGATGTTCGACTCGGTATTTGACGCGCCGAGGTTGCGCGCTGCCGTC
ATCAAGGCGCTCGCGGACGTGCCCGAGGGCAAACGCGACGGTCGCGGCATGGCCAGCGAGGTGGACGCGGCCATT
CACATGGACAAGTCGTCCCTGTCCGTGGCCAAGCGCGTTCTTGTCAGGGCCGTCTACCTCAAGCGCCTCAGGAAA
CTCCTTCGCGACGATCCGGACAAGGTGCTTTCGTGGTTCGAAACGCTGCGGAGCTCTCTCCTGACGGCGCAGAAC
ATGCGCTTCTTGGTGACGGCGAAGCTCGAGGGCCTCGAGGAACCGGTCTCGACCTGGGATCGACTCGCCGAGGTG
CTGCCCCGAGAGAAAGGGGAACAAGGTATGGTGCCTATCCCCAAGCTGGTGAGCCTCCTCAACGACGAGGGGCGC
CAGCCGGGCTCGTATGGCGCCGTCGTCATCCCCATGACGACGCTCGACAGCTCTTACTCGGTCAGCTCGGCGCGC
AGCATCACGTCGCTTTCGGACCCGCGCTTCCCGGCCATCATGGTGGCCATCGGATATCTCGAGTCGGTCGAAGGG
CCGCTGTGGAACGCCGTCAGGGGTGCCGGCTACGCGTACGGCTCATATTTCTCTCGCAACGTCGACTCTGGCATT
CTCTCGTACCGCGTCTACCGCTCGCCGGACGCGTCCAAGGCCATGGCGGCTTCGCGCGACGCCATCCGTGCCATT
GCCGAGGGCGAAGTCGCCATCGATCGCCATCTTCTGGAGGGGACCATGAGCCAGATCGTAGTCATGTTTGCTGAT
GAGCAGGCTACCATGCCGAGCGCCGCGCAGCAGAATTTTGTCCAGGGCGTCGTCAGGGGTCTGCCCAAGGATTGG
AACAAGGATATCCTCAAGCGTGTGAGGGCCGTGACCGAGGACGAGATGAAGGCCGTCATGAGGGATCTGATTCTG
CCTTGTTTCCAGCCGGGGACGAGCAACGTTGTGGTGACGTGTGCGAAGCTCATGTCCGAGGGTATCGAGTCAGCA
TTAAAGGGCGTGGGGTACAAGGTTCAGACGCGCGAGCTGAGCTACTTCCACGACGACTACGGTCTCGAAGCCGGC
GAAGACGAAGACGAAGACGAGGACGAGGACGTGGATGAAGACGAGGGGGGTTCCTACAGCGGTAGCGAGGATGAG
GATGAGGACGACTGA
Gene >Ophio5|4892
ATGACCTTGAGAGTAAACAGACATATCTTATCGTTGGCCTGCAATCGATAGCAGCCCCCTCCTCTAAAAACCCAC
CGGCGGCGCCAAATAAATCATCGCAACCAACTTCAGTTGGGCCACTCCAGCTTTTCTTCCTCTTCGTCGCCAACC
GTCTCGCAAAGACGCCTTCCTTAGTTCTAGCTCGCAGCTGCCGGCACCGGAACTTGTCTCTGGCACGCCGGTCTG
CTCTCCTCGTCGCGCTCTGGGCTCCTTTCCGTGTTGCGGTACCATCTAGGTCTGTTACAGACTCCAGACCTCACT
CTACTCTTGTCCCTTTGTCAATCACCTCTGCGTTCTTTTCACTGGCTTGAAGCGAGGTCCCCGTGTGCGTCTTCT
GTCCCCTCCCCCTTGACTTGCCATCGCCAATCGTCATACAAACCTGTCTGTCAGTCATCCATCGACTCTAGTACG
TCCTCCACGCCGCGGCCTAAGCCACGGATGCTGCACATGCATTCAGTCTTCGTATTTCCAACGTCATCAGGGTGG
TTTGCGCCCTTGGAGCTCTTCGCATCTCTTTCAGCCATTCTACAAGGCTTTGTCCGCAGCCTGTCTTGTTCAATG
AGCCCATGAGCTATCATACTAAATAACGCGATCTTCTGGCTGACGCACTACTTCCAGCGCCCCACCGTCAAGGAT
GCCTTCGGACGCGCTCAAGTCCCGGTTCCGCAAGATCCAGAGCTTCAAGACCGACTATGCCCCTTGCATCATCAC
GCAGTATGTATCGGATCGCAGCGGCATGTCCGTCGTCGTAGCCGACCGAAAGGGCCCTAAGATAAACGGCTACTT
TACTCTCGCCACCGAGGTCCTCGACGACTCGGGAGCGCCACACACGCTGGAACATCTCATTTTTATGGGCTCTAA
GACTTACCGGTACAAGGGCCTGCTCGACAAGCTCTCTTCGCGCGCCTACTCGTCGACCAATGCCTGGACGGCCAC
GGATCATACCGCCTACACACTCGAGACTGCTGGCTGGGACGGCTTCTCCCAGGTGCTTCCCGTTTACCTAGAGCA
CATTATCCTGCCCGTCATCACCGACGAAGCCATCGTCACCGAGGTCTGGCACATCGATGGAGAGGGCAATGACGC
CGGCGTCGTCTACTCCGAGATGCAGGCTGTGCAGTTCCGTAGCTCGGAGATTATGGACCTCAAGGCCCGTCGGCT
TCTGTATCCAGAAGACGTCGGCTTTCGCTACGAAACCGGCGGCATGACCGACGCCTTACGGGTCCTTACTCCTGA
GCGTATTCGACAATTTCATCGCGACATGTACCAGCCTCGCAACCTCTGCCTCGTCATCGTCGGAGAGGCCGATCA
CGATGACCTGCTGCGTATCCTGGACGAGTTTGAGGAGAGCATTGAGGACGATATTCCGTCCCTAAGTGCCCCTTT
CAAGCGGTAAGTCCCTTTCGTTGCCTCTGTTGAGTGCCCATCTTATGACACACAACACTCAGTCCATGGATCGAT
TCTTCTCAGCCCCCTGCGCTTCGAGAGACCGTTGTTACCACGGCAGAGTTTCCCGAGGAGGATGAATCCGTCGGT
GAAATCCTCATCGGCTTCTTCGGGCCCAACTGCATCGACATGGTGGCCACGTCAGCGCTCAATGTCCTGCTTACC
TACCTCTGCGGCTCGTCTGTCTCCATCCTCGAAAACGTCCTCGTTGAGCGAGAGGAGCTGGCTAGTTCCATTTCC
CACTACTGGGAGTCTCGGCCCAATTCCGTCATCTGGCTACAGCCAACCGGAGTCGCCACCGGGAAGCTAGAGTTG
GTCGAGAAGCGGCTGTTGGAACTGCTCAAGGAGGTGGCGTCGAAGCCGATCGACATGGACTACATGCGCGACTGC
ATTCGTCGGGAGAAACGCCAGGTCAAATTTCACGCAGAAACGTCTGAGTCTTTCTACGCCACCAACATCATCACC
GACTACCTTTTCGGGAAACGCGACGGCTCCACTCTCCGGGAGATCGAGACGCTGGGAGAATATGAAGATCTGGAG
CGATGGACAGACGAGGAATGGCGTCAGTTCCTAAGCAAGTGGATGGCCGACGCCCATCACGTCTCTATCCTCGGG
AAGCCGTCGCTCGCTCTCGCGGCCAAGATGAAGAGCGAAGAGGCTGAGCGTATCGCAAAGCGCAAGGAGGAGCTC
GGTCCCGAGGGCCTGCAGGAGCTGGGGAAGCGGCTGGAAGAGGCCAAGCAGAAAAACGACGTGCCGATCCCGGCC
GAGGTGCTCGAGCGCTGGTCCATCCCCGGCACTGAGTCGATCCACTTCATAGAGTCGGATACGGCGCGGTCCGGC
CAGGCTCGGTCCGTCGGGCTCGGCCACGGGGCGGCGCAGGCTCGGATCGACGCCGCTGGGGACGGCGACTGGCCG
CTCTTTATTCAGTTCGAGGACGTGCCGACTAGCTTTGTGCATATCACGATTCACGTCGGCACGTCGCAGGTGCCC
GTTGAGCTGAAGCCGCTGATGCACATCTTCAGCGACAACTTCTTCAACACGCACATCATGCGCGACGGGAAGCTC
GTCAACTTTGAGCAGGTAGTACGGGAGATTGAGCGCGACAGTGTCGGATACGGCATCGGCTCGGCACGCTCTCTC
GGCGATCCAGACGGGCTCATGATTCAGTTCCAGGTTGAGCCGGACAAGTATGCCGTCGCCGTCAACTGGCTGCGG
ACCATGATGTTCGACTCGGTATTTGACGCGCCGAGGTTGCGCGCTGCCGTCATCAAGGCGCTCGCGGACGTGCCC
GAGGGCAAACGCGACGGTCGCGGCATGGCCAGCGAGGTGGACGCGGCCATTCACATGGACAAGTCGTCCCTGTCC
GTGGCCAAGCGCGTTCTTGTCAGGGCCGTCTACCTCAAGCGCCTCAGGAAACTCCTTCGCGACGATCCGGACAAG
GTGCTTTCGTGGTTCGAAACGCTGCGGAGCTCTCTCCTGACGGCGCAGAACATGCGCTTCTTGGTGACGGCGAAG
CTCGAGGGCCTCGAGGAACCGGTCTCGACCTGGGATCGACTCGCCGAGGTGCTGCCCCGAGAGAAAGGGGAACAA
GGTATGGTGCCTATCCCCAAGCTGGTGAGCCTCCTCAACGACGAGGGGCGCCAGCCGGGCTCGTATGGCGCCGTC
GTCATCCCCATGACGACGCTCGACAGCTCTTACTCGGTCAGCTCGGCGCGCAGCATCACGTCGCTTTCGGACCCG
CGCTTCCCGGCCATCATGGTGGCCATCGGATATCTCGAGTCGGTCGAAGGGCCGCTGTGGAACGCCGTCAGGGGT
GCCGGCTACGCGTACGGCTCATATTTCTCTCGCAACGTCGACTCTGGCATTCTCTCGTACCGCGTCTACCGCTCG
CCGGACGCGTCCAAGGCCATGGCGGCTTCGCGCGACGCCATCCGTGCCATTGCCGAGGGCGAAGTCGCCATCGAT
CGCCATCTTCTGGAGGGGACCATGAGCCAGATCGTAGTCATGTTTGCTGATGAGCAGGCTACCATGCCGAGCGCC
GCGCAGCAGAATTTTGTCCAGGGCGTCGTCAGGGGTCTGCCCAAGGATTGGAACAAGGATATCCTCAAGCGTGTG
AGGGCCGTGACCGAGGACGAGATGAAGGCCGTCATGAGGGATCTGATTCTGCCTTGTTTCCAGCCGGGGACGAGC
AACGTTGTGGTGACGTGTGCGAAGCTCATGTCCGAGGTCAGCACTCACTCACTCAACTTTCCCCCCTCTTTTTTT
TCTTTTCGTCAATTTTCTTCTTCTCCCTTTCCCCTTCCTCCCCTTTCCCCCCCTCGGCTGACCCAATAGTTTCAG
GGTATCGAGTCAGCATTAAAGGGCGTGGGGTACAAGGTTCAGACGCGCGAGCTGAGCTACTTCCACGACGACTAC
GGTCTCGAAGCCGGCGAAGACGAAGACGAAGACGAGGACGAGGACGTGGATGAAGACGAGGGGGGTTCCTACAGC
GGTAGCGAGGATGAGGATGAGGACGACTGA

© 2022 - Robin Ohm - Utrecht University - The Netherlands

Built with Python Django and Wagtail