Fungal Genomics

at Utrecht University

General Properties

Protein IDOphio5|2447
Gene name
Locationscaffold_202:20000..22835
Strand-
Gene length (bp)2835
Transcript length (bp)2256
Coding sequence length (bp)2253
Protein length (aa) 751

Overview

Your browser does not support drawing a protein figure.

PFAM Domains

PFAM Domain ID Short name Long name E-value Start End
PF00349 Hexokinase_1 Hexokinase 6.6E-76 209 420
PF03727 Hexokinase_2 Hexokinase 3.9E-75 430 691

Swissprot hits

[Show all]
Swissprot ID Swissprot Description Start End E-value
sp|Q92407|HXKG_ASPNG Glucokinase OS=Aspergillus niger GN=glkA PE=1 SV=1 200 696 0.0E+00
sp|P17709|HXKG_YEAST Glucokinase-1 OS=Saccharomyces cerevisiae (strain ATCC 204508 / S288c) GN=GLK1 PE=1 SV=1 203 692 2.0E-105
sp|Q04409|EMI2_YEAST Putative glucokinase-2 OS=Saccharomyces cerevisiae (strain ATCC 204508 / S288c) GN=EMI2 PE=1 SV=1 201 692 1.0E-103
sp|Q6CUZ3|HXKG_KLULA Glucokinase-1 OS=Kluyveromyces lactis (strain ATCC 8585 / CBS 2359 / DSM 70799 / NBRC 1267 / NRRL Y-1140 / WM37) GN=GLK1 PE=1 SV=1 211 692 1.0E-102
sp|P50521|HXK2_SCHPO Hexokinase-2 OS=Schizosaccharomyces pombe (strain 972 / ATCC 24843) GN=hxk2 PE=2 SV=1 210 697 1.0E-94
[Show all]
[Show less]
Swissprot ID Swissprot Description Start End E-value
sp|Q92407|HXKG_ASPNG Glucokinase OS=Aspergillus niger GN=glkA PE=1 SV=1 200 696 0.0E+00
sp|P17709|HXKG_YEAST Glucokinase-1 OS=Saccharomyces cerevisiae (strain ATCC 204508 / S288c) GN=GLK1 PE=1 SV=1 203 692 2.0E-105
sp|Q04409|EMI2_YEAST Putative glucokinase-2 OS=Saccharomyces cerevisiae (strain ATCC 204508 / S288c) GN=EMI2 PE=1 SV=1 201 692 1.0E-103
sp|Q6CUZ3|HXKG_KLULA Glucokinase-1 OS=Kluyveromyces lactis (strain ATCC 8585 / CBS 2359 / DSM 70799 / NBRC 1267 / NRRL Y-1140 / WM37) GN=GLK1 PE=1 SV=1 211 692 1.0E-102
sp|P50521|HXK2_SCHPO Hexokinase-2 OS=Schizosaccharomyces pombe (strain 972 / ATCC 24843) GN=hxk2 PE=2 SV=1 210 697 1.0E-94
sp|Q1WM16|HXK7_ORYSJ Hexokinase-7 OS=Oryza sativa subsp. japonica GN=HXK7 PE=2 SV=2 238 681 1.0E-79
sp|P80581|HXK_EMENI Hexokinase OS=Emericella nidulans (strain FGSC A4 / ATCC 38163 / CBS 112.46 / NRRL 194 / M139) GN=hxkA PE=1 SV=2 215 700 1.0E-79
sp|Q9SEK3|HXK1_SPIOL Hexokinase-1 OS=Spinacia oleracea GN=HXK1 PE=2 SV=1 232 689 1.0E-77
sp|Q42525|HXK1_ARATH Hexokinase-1 OS=Arabidopsis thaliana GN=HXK1 PE=1 SV=2 232 689 6.0E-77
sp|Q8LQ68|HXK6_ORYSJ Hexokinase-6 OS=Oryza sativa subsp. japonica GN=HXK6 PE=2 SV=1 229 689 2.0E-75
sp|Q2KNB9|HXK2_ORYSJ Hexokinase-2 OS=Oryza sativa subsp. japonica GN=HXK2 PE=2 SV=1 232 684 7.0E-75
sp|Q2KNB7|HXK9_ORYSJ Hexokinase-9 OS=Oryza sativa subsp. japonica GN=HXK9 PE=2 SV=1 228 689 1.0E-74
sp|P93834|HXK2_ARATH Hexokinase-2 OS=Arabidopsis thaliana GN=HXK2 PE=1 SV=1 232 689 3.0E-74
sp|P83776|HXKB_CANAL Hexokinase-2 OS=Candida albicans (strain SC5314 / ATCC MYA-2876) GN=HXK2 PE=1 SV=2 180 699 3.0E-74
sp|P04806|HXKA_YEAST Hexokinase-1 OS=Saccharomyces cerevisiae (strain ATCC 204508 / S288c) GN=HXK1 PE=1 SV=2 195 694 7.0E-74
sp|Q9SQ76|HXK2_SOLTU Hexokinase-2 OS=Solanum tuberosum GN=HXK2 PE=2 SV=1 232 689 1.0E-73
sp|P33284|HXK_KLULA Hexokinase OS=Kluyveromyces lactis (strain ATCC 8585 / CBS 2359 / DSM 70799 / NBRC 1267 / NRRL Y-1140 / WM37) GN=RAG5 PE=1 SV=3 195 694 5.0E-73
sp|Q09756|HXK1_SCHPO Hexokinase-1 OS=Schizosaccharomyces pombe (strain 972 / ATCC 24843) GN=hxk1 PE=2 SV=1 200 704 6.0E-73
sp|Q9SEK2|HXK1_TOBAC Hexokinase-1 OS=Nicotiana tabacum GN=HXK1 PE=2 SV=1 219 689 1.0E-72
sp|P04807|HXKB_YEAST Hexokinase-2 OS=Saccharomyces cerevisiae (strain ATCC 204508 / S288c) GN=HXK2 PE=1 SV=4 222 663 2.0E-72
sp|Q1WM15|HXK8_ORYSJ Hexokinase-8 OS=Oryza sativa subsp. japonica GN=HXK8 PE=2 SV=2 237 694 2.0E-72
sp|Q5W676|HXK5_ORYSJ Hexokinase-5 OS=Oryza sativa subsp. japonica GN=HXK5 PE=2 SV=1 232 689 1.0E-69
sp|P50506|HXK_SCHOC Hexokinase OS=Schwanniomyces occidentalis GN=HXK PE=3 SV=1 180 652 1.0E-69
sp|Q6Q8A5|HXK2_TOBAC Hexokinase-2, chloroplastic OS=Nicotiana tabacum GN=HXK2 PE=2 SV=1 222 684 2.0E-66
sp|Q6Z398|HXK4_ORYSJ Hexokinase-4, chloroplastic OS=Oryza sativa subsp. japonica GN=HXK4 PE=2 SV=1 244 684 3.0E-64
sp|Q2TB90|HKDC1_HUMAN Putative hexokinase HKDC1 OS=Homo sapiens GN=HKDC1 PE=1 SV=3 210 697 2.0E-63
sp|Q9NFT7|HXK2_DROME Hexokinase type 2 OS=Drosophila melanogaster GN=Hex-t2 PE=2 SV=4 197 692 8.0E-63
sp|Q2KNB4|HXK3_ORYSJ Hexokinase-3 OS=Oryza sativa subsp. japonica GN=HXK3 PE=2 SV=1 232 699 1.0E-62
sp|Q9FZG4|HXKL1_ARATH Hexokinase-like 1 protein OS=Arabidopsis thaliana GN=At1g47840 PE=2 SV=2 233 689 3.0E-62
sp|Q91W97|HKDC1_MOUSE Putative hexokinase HKDC1 OS=Mus musculus GN=Hkdc1 PE=2 SV=1 232 698 6.0E-61
sp|Q26609|HXK_SCHMA Hexokinase OS=Schistosoma mansoni PE=1 SV=2 204 694 2.0E-60
sp|Q9LPS1|HXK3_ARATH Hexokinase-3 OS=Arabidopsis thaliana GN=At1g50460 PE=1 SV=1 232 693 3.0E-60
sp|Q8LH82|HXK1_ORYSJ Hexokinase-1 OS=Oryza sativa subsp. japonica GN=HXK1 PE=2 SV=1 237 681 1.0E-59
sp|P27926|HXK3_RAT Hexokinase-3 OS=Rattus norvegicus GN=Hk3 PE=2 SV=1 233 697 3.0E-58
sp|Q3TRM8|HXK3_MOUSE Hexokinase-3 OS=Mus musculus GN=Hk3 PE=1 SV=2 233 697 2.0E-57
sp|O64390|HXK1_SOLTU Hexokinase-1 OS=Solanum tuberosum GN=HXK1 PE=1 SV=1 219 688 2.0E-57
sp|P17710|HXK1_MOUSE Hexokinase-1 OS=Mus musculus GN=Hk1 PE=1 SV=3 200 695 3.0E-57
sp|P52790|HXK3_HUMAN Hexokinase-3 OS=Homo sapiens GN=HK3 PE=1 SV=2 231 697 5.0E-57
sp|P27881|HXK2_RAT Hexokinase-2 OS=Rattus norvegicus GN=Hk2 PE=1 SV=1 232 699 5.0E-57
sp|O08528|HXK2_MOUSE Hexokinase-2 OS=Mus musculus GN=Hk2 PE=1 SV=1 232 699 1.0E-56
sp|A2PYL8|HXK2_EQUGR Hexokinase-2 OS=Equus grevyi GN=HK2 PE=2 SV=1 232 699 3.0E-56
sp|A2PYL6|HXK2_HORSE Hexokinase-2 OS=Equus caballus GN=HK2 PE=2 SV=1 232 699 3.0E-56
sp|A2PYL7|HXK2_EQUZE Hexokinase-2 OS=Equus zebra GN=HK2 PE=2 SV=1 232 699 3.0E-56
sp|P52789|HXK2_HUMAN Hexokinase-2 OS=Homo sapiens GN=HK2 PE=1 SV=2 232 699 4.0E-56
sp|Q5RC71|HXK1_PONAB Hexokinase-1 OS=Pongo abelii GN=HK1 PE=2 SV=1 232 695 9.0E-56
sp|Q1W674|HXK2_PIG Hexokinase-2 OS=Sus scrofa GN=HK2 PE=2 SV=1 232 699 2.0E-55
sp|P05708|HXK1_RAT Hexokinase-1 OS=Rattus norvegicus GN=Hk1 PE=1 SV=4 232 695 3.0E-55
sp|P19367|HXK1_HUMAN Hexokinase-1 OS=Homo sapiens GN=HK1 PE=1 SV=3 232 695 3.0E-55
sp|P52789|HXK2_HUMAN Hexokinase-2 OS=Homo sapiens GN=HK2 PE=1 SV=2 202 695 4.0E-55
sp|P27595|HXK1_BOVIN Hexokinase-1 OS=Bos taurus GN=HK1 PE=2 SV=1 232 695 2.0E-53
sp|P52792|HXK4_MOUSE Glucokinase OS=Mus musculus GN=Gck PE=1 SV=1 206 692 2.0E-53
sp|P35557|HXK4_HUMAN Glucokinase OS=Homo sapiens GN=GCK PE=1 SV=1 200 692 2.0E-53
sp|Q1W674|HXK2_PIG Hexokinase-2 OS=Sus scrofa GN=HK2 PE=2 SV=1 229 695 3.0E-53
sp|P27881|HXK2_RAT Hexokinase-2 OS=Rattus norvegicus GN=Hk2 PE=1 SV=1 202 695 4.0E-53
sp|P17712|HXK4_RAT Glucokinase OS=Rattus norvegicus GN=Gck PE=1 SV=2 206 692 1.0E-52
sp|O08528|HXK2_MOUSE Hexokinase-2 OS=Mus musculus GN=Hk2 PE=1 SV=1 202 695 4.0E-52
sp|P17710|HXK1_MOUSE Hexokinase-1 OS=Mus musculus GN=Hk1 PE=1 SV=3 170 695 5.0E-52
sp|Q56XE8|HXK4_ARATH Hexokinase-4 OS=Arabidopsis thaliana GN=At3g20040 PE=2 SV=2 232 696 8.0E-52
sp|A2PYL6|HXK2_HORSE Hexokinase-2 OS=Equus caballus GN=HK2 PE=2 SV=1 202 695 9.0E-50
sp|A2PYL7|HXK2_EQUZE Hexokinase-2 OS=Equus zebra GN=HK2 PE=2 SV=1 202 695 9.0E-50
sp|A2PYL8|HXK2_EQUGR Hexokinase-2 OS=Equus grevyi GN=HK2 PE=2 SV=1 202 695 9.0E-50
sp|Q5RC71|HXK1_PONAB Hexokinase-1 OS=Pongo abelii GN=HK1 PE=2 SV=1 204 695 5.0E-49
sp|P19367|HXK1_HUMAN Hexokinase-1 OS=Homo sapiens GN=HK1 PE=1 SV=3 204 695 8.0E-49
sp|Q91W97|HKDC1_MOUSE Putative hexokinase HKDC1 OS=Mus musculus GN=Hkdc1 PE=2 SV=1 210 696 5.0E-47
sp|P05708|HXK1_RAT Hexokinase-1 OS=Rattus norvegicus GN=Hk1 PE=1 SV=4 229 695 2.0E-46
sp|Q02155|HXK_PLAFA Hexokinase OS=Plasmodium falciparum GN=HK PE=3 SV=1 186 691 1.0E-45
sp|P27926|HXK3_RAT Hexokinase-3 OS=Rattus norvegicus GN=Hk3 PE=2 SV=1 182 695 8.0E-45
sp|Q2KNB5|HXK10_ORYSJ Hexokinase-10 OS=Oryza sativa subsp. japonica GN=HXK10 PE=2 SV=1 222 684 4.0E-44
sp|Q2TB90|HKDC1_HUMAN Putative hexokinase HKDC1 OS=Homo sapiens GN=HKDC1 PE=1 SV=3 210 696 9.0E-42
sp|Q3TRM8|HXK3_MOUSE Hexokinase-3 OS=Mus musculus GN=Hk3 PE=1 SV=2 181 695 2.0E-41
sp|Q9NFT9|HXK1_DROME Hexokinase type 1 OS=Drosophila melanogaster GN=Hex-t1 PE=2 SV=1 207 693 1.0E-40
sp|P52790|HXK3_HUMAN Hexokinase-3 OS=Homo sapiens GN=HK3 PE=1 SV=2 211 717 4.0E-39
sp|Q969A8|HXK_TOXGO Hexokinase OS=Toxoplasma gondii GN=HXK PE=2 SV=1 229 691 4.0E-39
sp|Q4U3Y2|HXK1_ASPFU Hexokinase-1 OS=Neosartorya fumigata (strain ATCC MYA-4609 / Af293 / CBS 101355 / FGSC A1100) GN=hxkA PE=2 SV=1 240 652 1.0E-37
sp|P27595|HXK1_BOVIN Hexokinase-1 OS=Bos taurus GN=HK1 PE=2 SV=1 193 695 3.0E-35
sp|Q9T071|HXKL2_ARATH Probable hexokinase-like 2 protein OS=Arabidopsis thaliana GN=At4g37840 PE=3 SV=1 243 689 9.0E-34
sp|Q59RW5|HXK1_CANAL N-acetylglucosamine kinase 1 OS=Candida albicans (strain SC5314 / ATCC MYA-2876) GN=HXK1 PE=1 SV=1 239 687 3.0E-13
[Show less]

GO

GO Term Description Terminal node
GO:0005524 ATP binding Yes
GO:0005975 carbohydrate metabolic process Yes
GO:0016773 phosphotransferase activity, alcohol group as acceptor Yes
GO:0030554 adenyl nucleotide binding No
GO:0008150 biological_process No
GO:0043168 anion binding No
GO:0044238 primary metabolic process No
GO:0043167 ion binding No
GO:0008152 metabolic process No
GO:0003674 molecular_function No
GO:0016740 transferase activity No
GO:0032555 purine ribonucleotide binding No
GO:0071704 organic substance metabolic process No
GO:0005488 binding No
GO:1901265 nucleoside phosphate binding No
GO:0017076 purine nucleotide binding No
GO:1901363 heterocyclic compound binding No
GO:0032553 ribonucleotide binding No
GO:0000166 nucleotide binding No
GO:0097367 carbohydrate derivative binding No
GO:0016772 transferase activity, transferring phosphorus-containing groups No
GO:0097159 organic cyclic compound binding No
GO:0036094 small molecule binding No
GO:0032559 adenyl ribonucleotide binding No
GO:0003824 catalytic activity No
GO:0035639 purine ribonucleoside triphosphate binding No

Deeploc

[Help with interpreting the results of Deeploc 2.0]
Localizations Signals Cytoplasm Nucleus Extracellular Cell membrane Mitochondrion Plastid Endoplasmic reticulum Lysosome vacuole Golgi apparatus Peroxisome
Mitochondrion 0.2752 0.1624 0.1493 0.1615 0.542 0.4602 0.3315 0.1797 0.2635 0.145

SignalP

(None)

Transmembrane Domains

Domain # Start End Length
1 725 747 22

Transcription Factor Class

(None)

CAZymes

(None)

Secondary Metabolism

(None)

Expression data

Analysis 1: Expression analysis during behavioral modification. Published in De Bekker et al., 2017.

Click here for more information

Orthologs

Orthofinder run ID4
Orthogroup1166
Change Orthofinder run
Species Protein ID
Ophiocordyceps australis 1348a (Ghana) OphauG2|6636
Ophiocordyceps australis map64 (Brazil) OphauB2|3082
Ophiocordyceps camponoti-floridani Ophcf2|00855
Ophiocordyceps camponoti-rufipedis Ophun1|4487
Ophiocordyceps kimflemingae Ophio5|2447 (this protein)
Ophiocordyceps subramaniannii Hirsu2|10264

Sequences

Type of sequenceSequence
Locus Download genbank file of locus Download genbank file of locus (reverse complement)
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|2447
MPGPHLLSFSVLLTRDETRTAGSICTAGGKQRPRKKHRVAFGSAIGSAIDGRRVGFFRPCRKRPARIPIVALRAE
DAAKDDVSAPIPAAAAAAAEGGESNYRPILPTPLQNLDSYIAASSPTTATTSSHARDAPWRHGLLSAVVLAATAT
LILLGDAKLLLLQPVLFFFRASHHLLSSEPAPVCLNPATFATVPPISRPLAMALADETTRVVSQFDFSDADVNRH
VGEFLRQMNEGLEKEDTSISQIPTYVTGVPNGTEKGLYLAVDLGGTNFRVCSITLNGDTTFNLTYNKVAIPKQLM
VADTARELFAFLAKQIELFLREHHAEHFESHVRRRNTSSTPLGYRDEHIFRLGFTFSFPVKQLGINKGRLIRWTK
GFDIPDAVGKDVCALLQQEIDLLRLPVKVAALVNDTVGTLMARSYTSSGKHRSILGGIFGTGTNGAYIEKTSNIK
KRIEGEYDTLTGEMVVNTEWGSFDNQLNVLPSTTWDTTLDAQSVNPGFQMFEKRVSGMFLGEIVRLATLDMMKKE
ATSLFKDLNSSFNDWGTTTNISPQSGMLMPWGLDSAIMSVAASDNSPELSTLRQELENVLQVYNPSLEDAQAFKA
VCGAVARRAARLSAVAIGAVALKSGKIDDPDEEVIDVGVDGSLVEHYPFFRDMIYEALLAIDGIGPDGVKKIRIG
IAKDGSGVGAALIALVAQRMEKPGDFLADLRMDIRRSMDAMSQTTDEETAMPTTAYVAAAILGLAAVAAIWWNRQ
R
Coding >Ophio5|2447
ATGCCTGGACCACACCTCCTATCTTTTTCTGTCCTCCTAACACGCGACGAGACTCGAACAGCTGGCAGCATCTGT
ACGGCCGGCGGAAAGCAGAGACCAAGGAAAAAACATCGCGTCGCATTTGGTTCCGCCATCGGCTCCGCTATCGAC
GGCCGCAGAGTGGGGTTCTTTCGTCCGTGCCGAAAGCGTCCGGCCCGAATCCCGATAGTTGCCCTGAGGGCGGAG
GATGCCGCGAAAGACGACGTCAGCGCTCCCATTCCCGCAGCAGCAGCAGCAGCAGCAGAAGGGGGGGAATCGAAT
TACCGACCTATACTACCTACCCCCCTTCAAAATCTCGACTCCTATATCGCGGCATCGTCGCCTACAACCGCCACG
ACGTCGTCCCACGCTCGAGACGCCCCGTGGCGACACGGCCTTCTCTCGGCCGTGGTGCTGGCGGCGACGGCGACT
CTCATACTACTCGGCGACGCCAAGCTGCTCCTCCTTCAGCCCGTTCTCTTCTTCTTCCGAGCCTCCCATCATCTT
CTCTCATCGGAGCCGGCGCCAGTCTGCCTGAACCCCGCAACCTTTGCGACGGTCCCGCCCATCTCACGCCCTCTC
GCCATGGCGCTGGCCGATGAGACGACGCGAGTTGTCTCCCAGTTTGACTTCTCCGACGCAGATGTCAACCGACAC
GTCGGCGAATTTCTTCGGCAGATGAATGAGGGCCTGGAAAAGGAAGACACCAGCATCAGCCAGATACCGACATAC
GTCACGGGGGTCCCGAATGGCACCGAAAAGGGCCTCTACTTGGCCGTCGATCTGGGCGGCACCAACTTTCGTGTC
TGCTCCATCACGCTTAACGGCGACACCACCTTTAACCTGACATACAACAAGGTAGCCATCCCCAAGCAGCTCATG
GTGGCCGACACTGCCAGGGAGCTGTTCGCCTTTCTCGCCAAGCAGATCGAGCTCTTCCTCAGGGAGCATCATGCC
GAGCACTTTGAGAGCCATGTGCGTCGTCGCAACACGTCGAGCACGCCCCTGGGCTATCGCGACGAGCACATTTTT
CGTCTCGGCTTCACCTTTAGCTTCCCCGTCAAGCAGCTCGGTATCAACAAGGGACGGCTCATAAGATGGACCAAG
GGCTTCGACATTCCCGACGCTGTCGGCAAGGACGTGTGCGCCTTGCTGCAGCAGGAGATTGACCTGCTGCGTCTC
CCCGTAAAGGTGGCAGCCCTAGTCAACGACACCGTCGGAACCCTCATGGCGCGCTCCTACACGTCCAGCGGGAAG
CACCGCTCCATCCTGGGCGGCATCTTCGGCACCGGCACCAATGGCGCTTACATCGAGAAGACGAGCAACATCAAG
AAGCGCATCGAGGGCGAGTACGACACGTTGACGGGAGAGATGGTCGTCAACACCGAATGGGGCTCCTTTGACAAC
CAGCTCAACGTGCTGCCGTCGACGACTTGGGACACGACGCTCGACGCCCAAAGCGTGAACCCGGGCTTTCAGATG
TTTGAGAAGCGCGTGTCGGGCATGTTCCTCGGCGAAATCGTTCGGCTGGCGACGCTCGACATGATGAAGAAGGAG
GCCACCTCGCTCTTCAAGGACCTCAACTCGAGCTTCAACGACTGGGGCACCACGACCAACATCAGCCCGCAGTCA
GGCATGTTGATGCCCTGGGGCCTCGACAGCGCCATCATGTCGGTGGCCGCGTCCGACAACAGTCCCGAGCTGTCG
ACGCTACGACAGGAACTGGAGAACGTGCTCCAGGTCTACAACCCGTCCCTCGAAGACGCGCAGGCCTTTAAAGCC
GTCTGCGGCGCCGTGGCCCGCCGGGCCGCGAGGTTGTCTGCCGTGGCCATCGGCGCCGTGGCGCTCAAGTCGGGT
AAGATTGACGACCCGGACGAGGAGGTCATCGACGTCGGTGTCGACGGTAGCCTCGTGGAGCATTACCCCTTTTTC
CGCGACATGATTTACGAGGCGCTCCTCGCCATCGATGGCATCGGCCCGGACGGCGTCAAGAAGATTCGGATCGGC
ATCGCAAAGGATGGTAGCGGCGTCGGAGCGGCCCTCATTGCGCTCGTTGCGCAGCGGATGGAGAAGCCGGGTGAT
TTCCTGGCCGATCTGAGGATGGATATTCGACGTAGCATGGATGCCATGTCGCAGACTACTGACGAAGAGACGGCG
ATGCCCACAACGGCTTACGTGGCGGCTGCCATCCTCGGGCTCGCTGCCGTGGCGGCTATCTGGTGGAACAGGCAA
CGA
Transcript >Ophio5|2447
ATGCCTGGACCACACCTCCTATCTTTTTCTGTCCTCCTAACACGCGACGAGACTCGAACAGCTGGCAGCATCTGT
ACGGCCGGCGGAAAGCAGAGACCAAGGAAAAAACATCGCGTCGCATTTGGTTCCGCCATCGGCTCCGCTATCGAC
GGCCGCAGAGTGGGGTTCTTTCGTCCGTGCCGAAAGCGTCCGGCCCGAATCCCGATAGTTGCCCTGAGGGCGGAG
GATGCCGCGAAAGACGACGTCAGCGCTCCCATTCCCGCAGCAGCAGCAGCAGCAGCAGAAGGGGGGGAATCGAAT
TACCGACCTATACTACCTACCCCCCTTCAAAATCTCGACTCCTATATCGCGGCATCGTCGCCTACAACCGCCACG
ACGTCGTCCCACGCTCGAGACGCCCCGTGGCGACACGGCCTTCTCTCGGCCGTGGTGCTGGCGGCGACGGCGACT
CTCATACTACTCGGCGACGCCAAGCTGCTCCTCCTTCAGCCCGTTCTCTTCTTCTTCCGAGCCTCCCATCATCTT
CTCTCATCGGAGCCGGCGCCAGTCTGCCTGAACCCCGCAACCTTTGCGACGGTCCCGCCCATCTCACGCCCTCTC
GCCATGGCGCTGGCCGATGAGACGACGCGAGTTGTCTCCCAGTTTGACTTCTCCGACGCAGATGTCAACCGACAC
GTCGGCGAATTTCTTCGGCAGATGAATGAGGGCCTGGAAAAGGAAGACACCAGCATCAGCCAGATACCGACATAC
GTCACGGGGGTCCCGAATGGCACCGAAAAGGGCCTCTACTTGGCCGTCGATCTGGGCGGCACCAACTTTCGTGTC
TGCTCCATCACGCTTAACGGCGACACCACCTTTAACCTGACATACAACAAGGTAGCCATCCCCAAGCAGCTCATG
GTGGCCGACACTGCCAGGGAGCTGTTCGCCTTTCTCGCCAAGCAGATCGAGCTCTTCCTCAGGGAGCATCATGCC
GAGCACTTTGAGAGCCATGTGCGTCGTCGCAACACGTCGAGCACGCCCCTGGGCTATCGCGACGAGCACATTTTT
CGTCTCGGCTTCACCTTTAGCTTCCCCGTCAAGCAGCTCGGTATCAACAAGGGACGGCTCATAAGATGGACCAAG
GGCTTCGACATTCCCGACGCTGTCGGCAAGGACGTGTGCGCCTTGCTGCAGCAGGAGATTGACCTGCTGCGTCTC
CCCGTAAAGGTGGCAGCCCTAGTCAACGACACCGTCGGAACCCTCATGGCGCGCTCCTACACGTCCAGCGGGAAG
CACCGCTCCATCCTGGGCGGCATCTTCGGCACCGGCACCAATGGCGCTTACATCGAGAAGACGAGCAACATCAAG
AAGCGCATCGAGGGCGAGTACGACACGTTGACGGGAGAGATGGTCGTCAACACCGAATGGGGCTCCTTTGACAAC
CAGCTCAACGTGCTGCCGTCGACGACTTGGGACACGACGCTCGACGCCCAAAGCGTGAACCCGGGCTTTCAGATG
TTTGAGAAGCGCGTGTCGGGCATGTTCCTCGGCGAAATCGTTCGGCTGGCGACGCTCGACATGATGAAGAAGGAG
GCCACCTCGCTCTTCAAGGACCTCAACTCGAGCTTCAACGACTGGGGCACCACGACCAACATCAGCCCGCAGTCA
GGCATGTTGATGCCCTGGGGCCTCGACAGCGCCATCATGTCGGTGGCCGCGTCCGACAACAGTCCCGAGCTGTCG
ACGCTACGACAGGAACTGGAGAACGTGCTCCAGGTCTACAACCCGTCCCTCGAAGACGCGCAGGCCTTTAAAGCC
GTCTGCGGCGCCGTGGCCCGCCGGGCCGCGAGGTTGTCTGCCGTGGCCATCGGCGCCGTGGCGCTCAAGTCGGGT
AAGATTGACGACCCGGACGAGGAGGTCATCGACGTCGGTGTCGACGGTAGCCTCGTGGAGCATTACCCCTTTTTC
CGCGACATGATTTACGAGGCGCTCCTCGCCATCGATGGCATCGGCCCGGACGGCGTCAAGAAGATTCGGATCGGC
ATCGCAAAGGATGGTAGCGGCGTCGGAGCGGCCCTCATTGCGCTCGTTGCGCAGCGGATGGAGAAGCCGGGTGAT
TTCCTGGCCGATCTGAGGATGGATATTCGACGTAGCATGGATGCCATGTCGCAGACTACTGACGAAGAGACGGCG
ATGCCCACAACGGCTTACGTGGCGGCTGCCATCCTCGGGCTCGCTGCCGTGGCGGCTATCTGGTGGAACAGGCAA
CGATAG
Gene >Ophio5|2447
ATGCCTGGACCACACCTCCTATCTTTTTCTGTCCTCCTAACACGCGACGAGACTCGAACAGCTGGCAGCATCTGT
ACGGCCGGCGGAAAGCAGAGACCAAGGAAAAAACATCGCGTCGCATTTGGTTCCGCCATCGGCTCCGCTATCGAC
GGCCGCAGAGTGGGGTTCTTTCGTCCGTGCCGAAAGCGTCCGGCCCGAATCCCGATAGTTGCCCTGAGGGCGGAG
GATGCCGCGAAAGACGACGTCAGCGCTCCCATTCCGTATGTGTCGGAGATGAAGAAGTACGAGAAGACGATGAAG
AGGTACTCACCGCACGAGTCGCAGCGCAGCAGCAGCAGCAGCAGCAGTGGGCAGGCGCGCGTCTAGATACCTAGG
ATAGGGGGAGGAAGGGGGGGAATCGAATTACCGACCTATACTACCTACCCCCCTTCAAAATCTCGACTCCTATAT
CGCGGCATCGTCGCCTACAACCGCCACGACGTCGTCCCACGCTCGAGACGCCCCGTGGCGACACGGCCTTCTCTC
GGCCGTGGTGCTGGCGGCGACGGCGACTGTGAGTTGATTGACTTATGTCCCCCTTACTTCTTACTAGCATCTTCT
CTTCATTCCCTCGAGCCCCCTGAGCCCCTCCCCAACCATCTCTTCCATAACCCTTCCCCCCCCGCATCTGGGCCC
CAACTCTACCATGATCCTTGCCTCTTCATTCGCCATTGGCCGAGCAATGTGCATGCCGCGTCGCACAAGCACTGT
ATACTAGCAGCCTTATCGCTAACGAGGCAGTCGGCAGCTCATACTACTCGGCGACGCCAAGCTGCTCCTCCTTCA
GCCCGTTCTCTTCTTCTTCCGAGCCTCCCATCATCTTCTCTCATCGGAGCCGGCGCCAGTCTGCCTGAACCCCGC
AACCTTTGCGACGGTCCCGCCCATCTCACGCCCTCTCGCCATGGCGCTGGCCGATGAGACGACGCGAGTTGTCTC
CCAGTTTGACTTCTCCGACGCAGATGTCAACCGACACGTCGGCGAATTTCTTCGGCAGATGAGTGAGGATCTTGC
CCGTCGTCCTTTTCATCGTCGTCGTTGGCCGCTTACACGCGTAGATGAGGGCCTGGAAAAGGAAGACACCAGCAT
CAGCCAGATACCGACATACGTCACGGGGGTCCCGAATGGCACCGAAAAGGTGCGCGCATTCTCTCTCTCTCTTTC
TCTCCCTCCCGGTACTCCGATGCAAAAAGCTGATTGATCATGACCTCCCCTCCCCCCCCAAAAAAGGGCCTCTAC
TTGGCCGTCGATCTGGGCGGCACCAACTTTCGTGTCTGCTCCATCACGCTTAACGGCGACACCACCTTTAACCTG
ACATACAACAAGGTAGCCATCCCCAAGCAGCTCATGGTGGCCGACACTGCCAGGGAGCTGTTCGCCTTTCTCGCC
AAGCAGATCGAGCTCTTCCTCAGGGAGCATCATGCCGAGCACTTTGAGAGCCATGTGCGTCGTCGCAACACGTCG
AGCACGCCCCTGGGCTATCGCGACGAGCACATTTTTCGTCTCGGCTTCACCTTTAGCTTCCCCGTCAAGCAGCTC
GGTATCAACAAGGGACGGCTCATAAGATGGACCAAGGGCTTCGACATTCCCGACGCTGTCGGCAAGGACGTGTGC
GCCTTGCTGCAGCAGGAGATTGACCTGCTGCGTCTCCCCGTAAAGGTGGCAGCCCTAGTCAACGACACCGTCGGA
ACCCTCATGGCGCGCTCCTACACGTCCAGCGGGAAGCACCGCTCCATCCTGGGCGGCATCTTCGGCACCGGCACC
AATGGCGCTTACATCGAGAAGACGAGCAACATCAAGAAGCGCATCGAGGGCGAGTACGACACGTTGACGGGAGAG
ATGGTCGTCAACACCGAATGGGGCTCCTTTGACAACCAGCTCAACGTGCTGCCGTCGACGACTTGGGACACGACG
CTCGACGCCCAAAGCGTGAACCCGGGCTTTCAGATGTTTGAGAAGCGCGTGTCGGGCATGTTCCTCGGCGAAATC
GTTCGGCTGGCGACGCTCGACATGATGAAGAAGGAGGCCACCTCGCTCTTCAAGGACCTCAACTCGAGCTTCAAC
GACTGGGGCACCACGACCAACATCAGCCCGCAGTCAGGCATGTTGATGCCCTGGGGCCTCGACAGCGCCATCATG
TCGGTGGCCGCGTCCGACAACAGTCCCGAGCTGTCGACGCTACGACAGGAACTGGAGAACGTGCTCCAGGTCTAC
AACCCGTCCCTCGAAGACGCGCAGGCCTTTAAAGCCGTCTGCGGCGCCGTGGCCCGCCGGGCCGCGAGGTTGTCT
GCCGTGGCCATCGGCGCCGTGGCGCTCAAGTCGGGTAAGATTGACGACCCGGACGAGGAGGTCATCGACGTCGGT
GTCGACGGTAGCCTCGTGGAGCATTACCCCTTTTTCCGCGACATGATTTACGAGGCGCTCCTCGCCATCGATGGC
ATCGGCCCGGACGGCGTCAAGAAGATTCGGATCGGCATCGCAAAGGATGGTAGCGGCGTCGGAGCGGCCCTCATT
GCGCTCGTTGCGCAGCGGATGGAGAAGCCGGGTGATTTCCTGGCCGATCTGAGGATGGATATTCGACGTAGCATG
GATGCCATGTCGCAGACTACTGGTGTGTTTCCCTGTCTCCCTGTCCCTACTTTTCTTCTTCATCTTCTTGTCTAC
AAAGGCCCGTGGAATAGTGATACTGATTAGTCCCTCTCAGACGAAGAGACGGCGATGCCCACAACGGCTTACGTG
GCGGCTGCCATCCTCGGGCTCGCTGCCGTGGCGGCTATCTGGTGGAACAGGCAACGATAG

© 2023 - Robin Ohm - Utrecht University - The Netherlands

Built with Python Django and Wagtail