Fungal Genomics

at Utrecht University

General Properties

Protein IDOphio5|4117
Gene name
Locationscaffold_322:13911..16620
Strand-
Gene length (bp)2709
Transcript length (bp)2649
Coding sequence length (bp)2646
Protein length (aa) 882

Your browser does not support drawing a protein figure.

PFAM Domains

PFAM Domain ID Short name Long name E-value Start End
PF00082 Peptidase_S8 Subtilase family 7.7E-37 155 575
PF06280 fn3_5 Fn3-like domain 9.7E-15 610 725

Swissprot hits

[Show all]
Swissprot ID Swissprot Description Start End E-value
sp|P29141|SUBV_BACSU Minor extracellular protease vpr OS=Bacillus subtilis (strain 168) GN=vpr PE=1 SV=1 126 640 1.0E-27
sp|Q02470|P2P_LACPA PII-type proteinase OS=Lactobacillus paracasei GN=prtP PE=1 SV=1 128 733 5.0E-26
sp|P15293|P2P_LACLC PII-type proteinase OS=Lactococcus lactis subsp. cremoris GN=prt PE=3 SV=1 128 733 7.0E-25
sp|P15292|P3P_LACLS PIII-type proteinase OS=Lactococcus lactis subsp. cremoris (strain SK11) GN=prtP PE=1 SV=2 128 733 7.0E-25
sp|P16271|P1P_LACLC PI-type proteinase OS=Lactococcus lactis subsp. cremoris GN=prtP PE=3 SV=1 490 733 3.0E-17
[Show all]
[Show less]
Swissprot ID Swissprot Description Start End E-value
sp|P29141|SUBV_BACSU Minor extracellular protease vpr OS=Bacillus subtilis (strain 168) GN=vpr PE=1 SV=1 126 640 1.0E-27
sp|Q02470|P2P_LACPA PII-type proteinase OS=Lactobacillus paracasei GN=prtP PE=1 SV=1 128 733 5.0E-26
sp|P15293|P2P_LACLC PII-type proteinase OS=Lactococcus lactis subsp. cremoris GN=prt PE=3 SV=1 128 733 7.0E-25
sp|P15292|P3P_LACLS PIII-type proteinase OS=Lactococcus lactis subsp. cremoris (strain SK11) GN=prtP PE=1 SV=2 128 733 7.0E-25
sp|P16271|P1P_LACLC PI-type proteinase OS=Lactococcus lactis subsp. cremoris GN=prtP PE=3 SV=1 490 733 3.0E-17
sp|P11018|ISP1_BACSU Major intracellular serine protease OS=Bacillus subtilis (strain 168) GN=isp PE=1 SV=2 150 313 1.0E-15
sp|Q45670|THES_BACSJ Thermophilic serine proteinase OS=Bacillus sp. (strain AK1) PE=1 SV=1 157 332 3.0E-14
sp|P0DD35|C5AP_STRPQ C5a peptidase OS=Streptococcus pyogenes serotype M3 (strain SSI-1) GN=scpA PE=3 SV=1 98 604 2.0E-12
sp|P0DD34|C5AP_STRP3 C5a peptidase OS=Streptococcus pyogenes serotype M3 (strain ATCC BAA-595 / MGAS315) GN=scpA PE=3 SV=1 98 604 2.0E-12
sp|P29139|ISP_PAEPO Intracellular serine protease OS=Paenibacillus polymyxa GN=isp PE=1 SV=1 155 313 5.0E-12
sp|Q8NZ80|C5AP_STRP8 C5a peptidase OS=Streptococcus pyogenes serotype M18 (strain MGAS8232) GN=scpA PE=3 SV=1 93 604 5.0E-12
sp|Q5X9R0|C5AP_STRP6 C5a peptidase OS=Streptococcus pyogenes serotype M6 (strain ATCC BAA-946 / MGAS10394) GN=scpA PE=3 SV=1 143 646 8.0E-12
sp|P04189|SUBT_BACSU Subtilisin E OS=Bacillus subtilis (strain 168) GN=aprE PE=1 SV=3 79 320 1.0E-11
sp|P27693|ELYA_BACAO Alkaline protease OS=Bacillus alcalophilus PE=1 SV=1 122 313 1.0E-11
sp|P35835|SUBN_BACNA Subtilisin NAT OS=Bacillus subtilis subsp. natto GN=aprN PE=1 SV=1 79 320 2.0E-11
sp|P41362|ELYA_BACCS Alkaline protease OS=Bacillus clausii PE=1 SV=1 122 313 2.0E-11
sp|P15926|C5AP_STRPY C5a peptidase OS=Streptococcus pyogenes GN=scpA PE=1 SV=1 143 604 2.0E-11
sp|Q99405|PRTM_BACSK M-protease OS=Bacillus clausii (strain KSM-K16) GN=aprE PE=1 SV=2 122 313 2.0E-11
sp|P58099|C5AP_STRP1 C5a peptidase OS=Streptococcus pyogenes serotype M1 GN=scpA PE=3 SV=1 143 604 4.0E-11
sp|P07518|SUBT_BACPU Subtilisin OS=Bacillus pumilus GN=apr PE=1 SV=1 128 320 5.0E-11
sp|P29599|SUBB_BACLE Subtilisin BL OS=Bacillus lentus PE=1 SV=1 144 313 6.0E-11
sp|P00781|SUBD_BACLI Subtilisin DY OS=Bacillus licheniformis GN=apr PE=1 SV=1 142 316 1.0E-10
sp|Q07596|NISP_LACLL Nisin leader peptide-processing serine protease NisP OS=Lactococcus lactis subsp. lactis GN=nisP PE=1 SV=1 160 315 2.0E-10
sp|P00783|SUBT_BACSA Subtilisin amylosacchariticus OS=Bacillus subtilis subsp. amylosacchariticus GN=apr PE=1 SV=2 79 312 3.0E-10
sp|P29142|SUBT_GEOSE Subtilisin J OS=Geobacillus stearothermophilus GN=aprJ PE=3 SV=1 79 312 3.0E-10
sp|P29600|SUBS_BACLE Subtilisin Savinase OS=Bacillus lentus PE=1 SV=1 144 313 7.0E-10
sp|P16396|SUBE_BACSU Minor extracellular protease Epr OS=Bacillus subtilis (strain 168) GN=epr PE=2 SV=1 144 319 7.0E-10
sp|P00782|SUBT_BACAM Subtilisin BPN' OS=Bacillus amyloliquefaciens GN=apr PE=1 SV=1 106 320 1.0E-09
sp|F4JJH5|SBT3C_ARATH Subtilisin-like protease SBT3.12 OS=Arabidopsis thaliana GN=SBT3.12 PE=3 SV=1 207 617 1.0E-09
sp|I3R794|HLY_HALMT Halolysin OS=Haloferax mediterranei (strain ATCC 33500 / DSM 1411 / JCM 8866 / NBRC 14739 / NCIMB 2177 / R-4) GN=hly PE=1 SV=1 159 313 2.0E-09
sp|P54423|WPRA_BACSU Cell wall-associated protease OS=Bacillus subtilis (strain 168) GN=wprA PE=1 SV=2 160 332 2.0E-09
sp|P00780|SUBT_BACLI Subtilisin Carlsberg OS=Bacillus licheniformis GN=apr PE=1 SV=1 124 285 7.0E-09
sp|P04072|THET_THEVU Thermitase OS=Thermoactinomyces vulgaris PE=1 SV=1 155 302 3.0E-08
sp|F4HSQ2|SBT51_ARATH Subtilisin-like protease SBT5.1 OS=Arabidopsis thaliana GN=SBT5.1 PE=3 SV=1 207 313 6.0E-08
sp|Q9FIG1|SBT4B_ARATH Subtilisin-like protease SBT4.11 OS=Arabidopsis thaliana GN=SBT4.11 PE=2 SV=2 210 628 7.0E-08
sp|P41363|ELYA_BACHD Thermostable alkaline protease OS=Bacillus halodurans (strain ATCC BAA-125 / DSM 18197 / FERM 7344 / JCM 9153 / C-125) GN=BH0855 PE=1 SV=2 149 333 8.0E-08
sp|Q9FHA4|SBT19_ARATH Subtilisin-like protease SBT1.9 OS=Arabidopsis thaliana GN=SBT1.9 PE=2 SV=1 155 313 4.0E-07
sp|P80146|SEPR_THESR Extracellular serine proteinase OS=Thermus sp. (strain Rt41A) PE=1 SV=3 83 350 9.0E-07
sp|P20724|ELYA_BACYA Alkaline elastase YaB OS=Bacillus sp. (strain YaB) GN=ale PE=1 SV=1 149 313 1.0E-06
sp|P72186|PLS_PYRFU Pyrolysin OS=Pyrococcus furiosus (strain ATCC 43587 / DSM 3638 / JCM 8422 / Vc1) GN=pls PE=1 SV=2 154 313 4.0E-06
sp|Q64K31|SUB6_ARTBE Subtilisin-like protease 6 OS=Arthroderma benhamiae GN=SUB6 PE=3 SV=1 135 336 6.0E-06
sp|D4ALV9|SUB6_ARTBC Subtilisin-like protease 6 OS=Arthroderma benhamiae (strain ATCC MYA-4681 / CBS 112371) GN=SUB6 PE=2 SV=1 135 336 6.0E-06
sp|P29121|PCSK4_MOUSE Proprotein convertase subtilisin/kexin type 4 OS=Mus musculus GN=Pcsk4 PE=2 SV=1 151 247 7.0E-06
sp|P16271|P1P_LACLC PI-type proteinase OS=Lactococcus lactis subsp. cremoris GN=prtP PE=3 SV=1 128 316 9.0E-06
[Show less]

GO

GO Term Description Terminal node
GO:0008236 serine-type peptidase activity Yes
GO:0016020 membrane Yes
GO:0004252 serine-type endopeptidase activity Yes
GO:0006508 proteolysis Yes
GO:0005618 cell wall Yes
GO:0008233 peptidase activity No
GO:0017171 serine hydrolase activity No
GO:0043170 macromolecule metabolic process No
GO:0008150 biological_process No
GO:1901564 organonitrogen compound metabolic process No
GO:0044238 primary metabolic process No
GO:0030312 external encapsulating structure No
GO:0008152 metabolic process No
GO:0003674 molecular_function No
GO:0110165 cellular anatomical entity No
GO:0071704 organic substance metabolic process No
GO:0140096 catalytic activity, acting on a protein No
GO:0016787 hydrolase activity No
GO:0019538 protein metabolic process No
GO:0005575 cellular_component No
GO:0006807 nitrogen compound metabolic process No
GO:0003824 catalytic activity No
GO:0004175 endopeptidase activity No

SignalP

[Help with interpreting these statistics]
SignalP signal predicted Location
(based on Ymax)
D score
(significance: > 0.45)
Yes 1 - 21 0.5

Transmembrane Domains

Domain # Start End Length
1 7 29 22

Transcription Factor Class

(None)

Expression data

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

Click here for more information

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|4117
MNCLTTVMAATAAWWAVVTGFVVPNAFLVEVQEGYSLNDLVESFEEKGVGEIHRKMDQTLFQGISVQLHETDNQT
AGSQLLRSLKGAGSMVPIEEHQVIHDTPAGSVREYKAFKTPGQGSPSIVRRDSQVTAPADALPAHVMAQVDRLHA
EGITGRGYRIAVIDTGIDYTHPALGGQFGPGNLVSFGADFYGDDSQGGRPPFSLLPTPMDCNGHGTNVAGILAAQ
RDKNAFDFSGVAPGVTLGAYRIYGCQIVSTLRTDHFIAAINQAYDDGADIITVSLGAMSGWPDDHISAAVSRIVE
KGVPCVAAVGNDGLTGPFGTSSPANGKGVLSIAHFTTTAATAFTWRAFYSVDNGTETAFEYRFASDQEMWCEDVS
FQLYAPDVGEACDSLPYSAPELYGRDIIILVRDGVCPAAQQAAVVGRWLGRFVIVYSDAEELPDLVGNVAVAMVP
TKVGELWSRLLNQGSKITVKMQADAMETSPIKMADGGSSVHDTSSWGPGWNLHVKPQFGAPGSYMPTLSTNGGYV
IRTGASLAAPFAAGVVALVAQVRHHNNLDPLLIETLLSTTARPQRYHDGKRMSDSLAPTAQQGAGLIQAYDAAHT
STIVEPPSLSFNDTEHHVPSHELTITNEGTTTITYNMSYTPAITVYTMMQSSPELTSFPPEAMEGSAASASVQVS
DSMVSIAPGASAVINVSASPPRGLDASRLPLWSGFLVINGSDGSSLSVPYQGLVGSLNKHPTLLADSAKIATGFQ
PQSLVHPVSWASEGQTFSIKQNSVESESRTVLTLVVAPNLGISDLHVNIIFNPFLEAQSLGKPRGLMARWLPRRT
IERSLYAFEWDGSLENGNTVPEGLYQFHVSAPRIFGNPANETEYDYCKTITFRIVHE
Coding >Ophio5|4117
ATGAATTGCCTTACTACTGTCATGGCAGCAACGGCTGCCTGGTGGGCCGTCGTGACCGGATTTGTGGTGCCCAAT
GCCTTTCTCGTTGAGGTTCAGGAGGGCTACAGCCTCAATGATCTCGTGGAATCTTTTGAAGAAAAAGGAGTGGGT
GAAATACATCGAAAGATGGACCAGACGCTATTCCAGGGTATTTCGGTTCAGCTTCACGAAACCGACAACCAAACA
GCAGGCTCCCAGCTGCTCCGGTCTTTGAAGGGGGCCGGAAGTATGGTGCCCATCGAGGAGCATCAAGTTATCCAT
GATACTCCGGCGGGCAGCGTGAGGGAGTACAAAGCCTTCAAGACGCCCGGCCAAGGTTCGCCTTCGATAGTCCGA
CGCGATTCGCAGGTGACAGCGCCGGCAGATGCGCTCCCAGCTCATGTTATGGCGCAGGTCGATAGACTACACGCC
GAAGGCATTACCGGGAGAGGCTACCGGATCGCTGTCATCGACACGGGAATTGACTACACACATCCTGCTCTGGGC
GGCCAGTTCGGCCCAGGCAATCTGGTCTCGTTCGGAGCCGACTTCTACGGCGACGATAGCCAAGGAGGCCGGCCG
CCCTTCAGCCTCCTCCCGACACCGATGGATTGCAACGGCCACGGCACCAACGTAGCCGGCATCCTGGCTGCCCAG
CGCGACAAGAACGCCTTTGACTTCAGCGGCGTGGCCCCCGGCGTCACCCTCGGTGCCTATCGCATATACGGCTGC
CAGATCGTCTCCACACTCCGGACCGACCACTTCATCGCAGCCATCAACCAGGCTTACGACGACGGTGCCGACATC
ATCACCGTCTCCCTCGGGGCAATGTCCGGCTGGCCTGACGACCACATTTCCGCCGCCGTCTCGCGCATCGTCGAA
AAGGGCGTCCCGTGCGTTGCTGCAGTGGGAAACGACGGCTTGACGGGCCCATTTGGAACCTCAAGTCCTGCGAAT
GGGAAGGGTGTCCTTTCCATTGCTCACTTCACCACCACGGCTGCAACGGCCTTTACCTGGAGAGCGTTTTACTCG
GTCGACAACGGCACGGAGACTGCGTTTGAGTATCGGTTTGCGTCTGACCAAGAGATGTGGTGCGAAGACGTCTCC
TTTCAACTTTATGCGCCCGACGTCGGCGAGGCCTGCGACTCGCTGCCATATTCCGCTCCCGAGCTGTACGGGCGC
GATATCATCATCTTGGTCCGCGACGGTGTCTGTCCAGCCGCTCAACAGGCGGCTGTAGTGGGACGGTGGTTGGGG
AGATTCGTGATTGTCTATAGCGATGCGGAAGAATTACCCGACCTCGTCGGTAACGTGGCCGTAGCCATGGTCCCA
ACCAAGGTTGGCGAGCTCTGGAGTCGGCTTCTGAACCAAGGCAGCAAAATCACCGTCAAGATGCAGGCTGATGCC
ATGGAAACTTCTCCTATCAAGATGGCTGACGGAGGTTCAAGCGTGCATGACACGTCGAGCTGGGGCCCGGGCTGG
AACTTGCATGTGAAGCCGCAGTTTGGTGCTCCTGGAAGCTATATGCCGACTTTGTCAACCAACGGCGGATATGTC
ATCCGAACAGGAGCTTCACTTGCTGCCCCTTTCGCTGCTGGCGTTGTCGCTCTCGTCGCTCAAGTCCGTCATCAT
AACAACTTGGATCCTTTGCTAATCGAGACGCTGCTCTCAACCACTGCTCGTCCGCAGCGCTATCACGATGGGAAG
AGGATGTCTGACTCTCTTGCTCCGACTGCGCAGCAAGGTGCCGGCCTCATCCAGGCGTACGATGCCGCCCACACA
TCGACTATTGTTGAGCCACCAAGCCTTTCTTTCAACGATACCGAGCACCACGTTCCGTCTCACGAGTTGACCATC
ACGAACGAGGGAACTACCACCATCACCTACAATATGTCGTATACTCCAGCAATCACAGTGTATACCATGATGCAG
AGCTCGCCTGAGTTGACCAGCTTCCCTCCGGAAGCTATGGAGGGCAGCGCCGCGAGCGCATCTGTTCAAGTAAGC
GACAGTATGGTCAGCATCGCCCCGGGAGCGTCGGCCGTCATCAATGTCTCGGCCTCGCCTCCACGTGGACTTGAT
GCCAGCCGCCTCCCGTTGTGGTCCGGGTTTCTCGTTATAAACGGCTCCGACGGCTCCTCCCTGTCTGTCCCATAC
CAAGGGCTCGTCGGATCCCTCAACAAGCATCCGACTCTGTTGGCCGATAGTGCCAAGATTGCAACTGGCTTCCAG
CCACAGTCGTTGGTACATCCAGTTTCTTGGGCAAGTGAAGGGCAAACATTCTCCATCAAACAAAATTCAGTAGAA
AGCGAGAGTAGAACAGTGCTCACCCTTGTCGTCGCACCGAACCTCGGAATTTCAGATTTGCATGTCAACATCATA
TTCAACCCGTTCCTGGAGGCTCAAAGTTTGGGCAAGCCGCGCGGTTTAATGGCTAGATGGCTTCCCAGAAGAACC
ATAGAAAGGAGCCTGTACGCGTTTGAATGGGATGGCTCTCTTGAAAACGGAAATACGGTCCCTGAAGGTCTCTAT
CAATTCCATGTGAGCGCTCCGAGGATCTTTGGTAACCCGGCCAATGAGACCGAGTACGACTATTGCAAAACGATC
ACATTCAGGATTGTGCATGAG
Transcript >Ophio5|4117
ATGAATTGCCTTACTACTGTCATGGCAGCAACGGCTGCCTGGTGGGCCGTCGTGACCGGATTTGTGGTGCCCAAT
GCCTTTCTCGTTGAGGTTCAGGAGGGCTACAGCCTCAATGATCTCGTGGAATCTTTTGAAGAAAAAGGAGTGGGT
GAAATACATCGAAAGATGGACCAGACGCTATTCCAGGGTATTTCGGTTCAGCTTCACGAAACCGACAACCAAACA
GCAGGCTCCCAGCTGCTCCGGTCTTTGAAGGGGGCCGGAAGTATGGTGCCCATCGAGGAGCATCAAGTTATCCAT
GATACTCCGGCGGGCAGCGTGAGGGAGTACAAAGCCTTCAAGACGCCCGGCCAAGGTTCGCCTTCGATAGTCCGA
CGCGATTCGCAGGTGACAGCGCCGGCAGATGCGCTCCCAGCTCATGTTATGGCGCAGGTCGATAGACTACACGCC
GAAGGCATTACCGGGAGAGGCTACCGGATCGCTGTCATCGACACGGGAATTGACTACACACATCCTGCTCTGGGC
GGCCAGTTCGGCCCAGGCAATCTGGTCTCGTTCGGAGCCGACTTCTACGGCGACGATAGCCAAGGAGGCCGGCCG
CCCTTCAGCCTCCTCCCGACACCGATGGATTGCAACGGCCACGGCACCAACGTAGCCGGCATCCTGGCTGCCCAG
CGCGACAAGAACGCCTTTGACTTCAGCGGCGTGGCCCCCGGCGTCACCCTCGGTGCCTATCGCATATACGGCTGC
CAGATCGTCTCCACACTCCGGACCGACCACTTCATCGCAGCCATCAACCAGGCTTACGACGACGGTGCCGACATC
ATCACCGTCTCCCTCGGGGCAATGTCCGGCTGGCCTGACGACCACATTTCCGCCGCCGTCTCGCGCATCGTCGAA
AAGGGCGTCCCGTGCGTTGCTGCAGTGGGAAACGACGGCTTGACGGGCCCATTTGGAACCTCAAGTCCTGCGAAT
GGGAAGGGTGTCCTTTCCATTGCTCACTTCACCACCACGGCTGCAACGGCCTTTACCTGGAGAGCGTTTTACTCG
GTCGACAACGGCACGGAGACTGCGTTTGAGTATCGGTTTGCGTCTGACCAAGAGATGTGGTGCGAAGACGTCTCC
TTTCAACTTTATGCGCCCGACGTCGGCGAGGCCTGCGACTCGCTGCCATATTCCGCTCCCGAGCTGTACGGGCGC
GATATCATCATCTTGGTCCGCGACGGTGTCTGTCCAGCCGCTCAACAGGCGGCTGTAGTGGGACGGTGGTTGGGG
AGATTCGTGATTGTCTATAGCGATGCGGAAGAATTACCCGACCTCGTCGGTAACGTGGCCGTAGCCATGGTCCCA
ACCAAGGTTGGCGAGCTCTGGAGTCGGCTTCTGAACCAAGGCAGCAAAATCACCGTCAAGATGCAGGCTGATGCC
ATGGAAACTTCTCCTATCAAGATGGCTGACGGAGGTTCAAGCGTGCATGACACGTCGAGCTGGGGCCCGGGCTGG
AACTTGCATGTGAAGCCGCAGTTTGGTGCTCCTGGAAGCTATATGCCGACTTTGTCAACCAACGGCGGATATGTC
ATCCGAACAGGAGCTTCACTTGCTGCCCCTTTCGCTGCTGGCGTTGTCGCTCTCGTCGCTCAAGTCCGTCATCAT
AACAACTTGGATCCTTTGCTAATCGAGACGCTGCTCTCAACCACTGCTCGTCCGCAGCGCTATCACGATGGGAAG
AGGATGTCTGACTCTCTTGCTCCGACTGCGCAGCAAGGTGCCGGCCTCATCCAGGCGTACGATGCCGCCCACACA
TCGACTATTGTTGAGCCACCAAGCCTTTCTTTCAACGATACCGAGCACCACGTTCCGTCTCACGAGTTGACCATC
ACGAACGAGGGAACTACCACCATCACCTACAATATGTCGTATACTCCAGCAATCACAGTGTATACCATGATGCAG
AGCTCGCCTGAGTTGACCAGCTTCCCTCCGGAAGCTATGGAGGGCAGCGCCGCGAGCGCATCTGTTCAAGTAAGC
GACAGTATGGTCAGCATCGCCCCGGGAGCGTCGGCCGTCATCAATGTCTCGGCCTCGCCTCCACGTGGACTTGAT
GCCAGCCGCCTCCCGTTGTGGTCCGGGTTTCTCGTTATAAACGGCTCCGACGGCTCCTCCCTGTCTGTCCCATAC
CAAGGGCTCGTCGGATCCCTCAACAAGCATCCGACTCTGTTGGCCGATAGTGCCAAGATTGCAACTGGCTTCCAG
CCACAGTCGTTGGTACATCCAGTTTCTTGGGCAAGTGAAGGGCAAACATTCTCCATCAAACAAAATTCAGTAGAA
AGCGAGAGTAGAACAGTGCTCACCCTTGTCGTCGCACCGAACCTCGGAATTTCAGATTTGCATGTCAACATCATA
TTCAACCCGTTCCTGGAGGCTCAAAGTTTGGGCAAGCCGCGCGGTTTAATGGCTAGATGGCTTCCCAGAAGAACC
ATAGAAAGGAGCCTGTACGCGTTTGAATGGGATGGCTCTCTTGAAAACGGAAATACGGTCCCTGAAGGTCTCTAT
CAATTCCATGTGAGCGCTCCGAGGATCTTTGGTAACCCGGCCAATGAGACCGAGTACGACTATTGCAAAACGATC
ACATTCAGGATTGTGCATGAGTAG
Gene >Ophio5|4117
ATGAATTGCCTTACTACTGTCATGGCAGCAACGGCTGCCTGGTGGGCCGTCGTGACCGGATTTGTGGTGCCCAAT
GCCTTTCTCGTTGAGGTTCAGGAGGGCTACAGCCTCAATGATCTCGTGGAATCTTTTGAAGAAAAAGGAGTGGGT
GAAATACATCGAAAGATGGACCAGACGCTATTCCAGGGTATTTCGGTTCAGCTTCACGAAACCGACAACCAAACA
GCAGGCTCCCAGCTGCTCCGGTCTTTGAAGGGGGCCGGAAGTATGGTGCCCATCGAGGAGCATCAAGTTATCCAT
GATACTCCGGCGGGCAGCGTGAGGGAGTACAAAGCCTTCAAGACGCCCGGCCAAGGTTCGCCTTCGATAGTCCGA
CGCGATTCGCAGGTGACAGCGCCGGCAGATGCGCTCCCAGCTCATGTTATGGCGCAGGTCGATAGACTACACGCC
GAAGGCATTACCGGGAGAGGCTACCGGATCGCTGTCATCGACACGGGAGTCAGTGAACCCCTTTTCTCGCGATTT
CCCCAACGGCTCAGTTGACACGATTGCATATAGATTGACTACACACATCCTGCTCTGGGCGGCCAGTTCGGCCCA
GGCAATCTGGTCTCGTTCGGAGCCGACTTCTACGGCGACGATAGCCAAGGAGGCCGGCCGCCCTTCAGCCTCCTC
CCGACACCGATGGATTGCAACGGCCACGGCACCAACGTAGCCGGCATCCTGGCTGCCCAGCGCGACAAGAACGCC
TTTGACTTCAGCGGCGTGGCCCCCGGCGTCACCCTCGGTGCCTATCGCATATACGGCTGCCAGATCGTCTCCACA
CTCCGGACCGACCACTTCATCGCAGCCATCAACCAGGCTTACGACGACGGTGCCGACATCATCACCGTCTCCCTC
GGGGCAATGTCCGGCTGGCCTGACGACCACATTTCCGCCGCCGTCTCGCGCATCGTCGAAAAGGGCGTCCCGTGC
GTTGCTGCAGTGGGAAACGACGGCTTGACGGGCCCATTTGGAACCTCAAGTCCTGCGAATGGGAAGGGTGTCCTT
TCCATTGCTCACTTCACCACCACGGCTGCAACGGCCTTTACCTGGAGAGCGTTTTACTCGGTCGACAACGGCACG
GAGACTGCGTTTGAGTATCGGTTTGCGTCTGACCAAGAGATGTGGTGCGAAGACGTCTCCTTTCAACTTTATGCG
CCCGACGTCGGCGAGGCCTGCGACTCGCTGCCATATTCCGCTCCCGAGCTGTACGGGCGCGATATCATCATCTTG
GTCCGCGACGGTGTCTGTCCAGCCGCTCAACAGGCGGCTGTAGTGGGACGGTGGTTGGGGAGATTCGTGATTGTC
TATAGCGATGCGGAAGAATTACCCGACCTCGTCGGTAACGTGGCCGTAGCCATGGTCCCAACCAAGGTTGGCGAG
CTCTGGAGTCGGCTTCTGAACCAAGGCAGCAAAATCACCGTCAAGATGCAGGCTGATGCCATGGAAACTTCTCCT
ATCAAGATGGCTGACGGAGGTTCAAGCGTGCATGACACGTCGAGCTGGGGCCCGGGCTGGAACTTGCATGTGAAG
CCGCAGTTTGGTGCTCCTGGAAGCTATATGCCGACTTTGTCAACCAACGGCGGATATGTCATCCGAACAGGAGCT
TCACTTGCTGCCCCTTTCGCTGCTGGCGTTGTCGCTCTCGTCGCTCAAGTCCGTCATCATAACAACTTGGATCCT
TTGCTAATCGAGACGCTGCTCTCAACCACTGCTCGTCCGCAGCGCTATCACGATGGGAAGAGGATGTCTGACTCT
CTTGCTCCGACTGCGCAGCAAGGTGCCGGCCTCATCCAGGCGTACGATGCCGCCCACACATCGACTATTGTTGAG
CCACCAAGCCTTTCTTTCAACGATACCGAGCACCACGTTCCGTCTCACGAGTTGACCATCACGAACGAGGGAACT
ACCACCATCACCTACAATATGTCGTATACTCCAGCAATCACAGTGTATACCATGATGCAGAGCTCGCCTGAGTTG
ACCAGCTTCCCTCCGGAAGCTATGGAGGGCAGCGCCGCGAGCGCATCTGTTCAAGTAAGCGACAGTATGGTCAGC
ATCGCCCCGGGAGCGTCGGCCGTCATCAATGTCTCGGCCTCGCCTCCACGTGGACTTGATGCCAGCCGCCTCCCG
TTGTGGTCCGGGTTTCTCGTTATAAACGGCTCCGACGGCTCCTCCCTGTCTGTCCCATACCAAGGGCTCGTCGGA
TCCCTCAACAAGCATCCGACTCTGTTGGCCGATAGTGCCAAGATTGCAACTGGCTTCCAGCCACAGTCGTTGGTA
CATCCAGTTTCTTGGGCAAGTGAAGGGCAAACATTCTCCATCAAACAAAATTCAGTAGAAAGCGAGAGTAGAACA
GTGCTCACCCTTGTCGTCGCACCGAACCTCGGAATTTCAGATTTGCATGTCAACATCATATTCAACCCGTTCCTG
GAGGCTCAAAGTTTGGGCAAGCCGCGCGGTTTAATGGCTAGATGGCTTCCCAGAAGAACCATAGAAAGGAGCCTG
TACGCGTTTGAATGGGATGGCTCTCTTGAAAACGGAAATACGGTCCCTGAAGGTCTCTATCAATTCCATGTGAGC
GCTCCGAGGATCTTTGGTAACCCGGCCAATGAGACCGAGTACGACTATTGCAAAACGATCACATTCAGGATTGTG
CATGAGTAG

© 2022 - Robin Ohm - Utrecht University - The Netherlands

Built with Python Django and Wagtail