Fungal Genomics

at Utrecht University

General Properties

Protein IDOphauB2|51
Gene name
LocationContig_1:116576..118630
Strand-
Gene length (bp)2054
Transcript length (bp)1911
Coding sequence length (bp)1911
Protein length (aa) 637

Overview

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PFAM Domains

PFAM Domain ID Short name Long name E-value Start End
PF00326 Peptidase_S9 Prolyl oligopeptidase family 2.7E-34 425 626
PF01738 DLH Dienelactone hydrolase family 3.7E-05 481 618

Swissprot hits

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Swissprot ID Swissprot Description Start End E-value
sp|V5YMB3|DAPB3_PSEMX Dipeptidyl aminopeptidase BIII OS=Pseudoxanthomonas mexicana GN=dapb3 PE=1 SV=1 281 635 8.0E-23
sp|P39839|YUXL_BACSU Uncharacterized peptidase YuxL OS=Bacillus subtilis (strain 168) GN=yuxL PE=3 SV=3 352 616 2.0E-19
sp|P34422|DPF6_CAEEL Dipeptidyl peptidase family member 6 OS=Caenorhabditis elegans GN=dpf-6 PE=3 SV=2 407 619 4.0E-17
sp|Q6F3I7|DAP4_PSEMX Dipeptidyl aminopeptidase 4 OS=Pseudoxanthomonas mexicana GN=dap4 PE=1 SV=1 234 614 6.0E-15
sp|P80227|ACPH_BOVIN Acylamino-acid-releasing enzyme OS=Bos taurus GN=APEH PE=1 SV=2 382 616 2.0E-13
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Swissprot ID Swissprot Description Start End E-value
sp|V5YMB3|DAPB3_PSEMX Dipeptidyl aminopeptidase BIII OS=Pseudoxanthomonas mexicana GN=dapb3 PE=1 SV=1 281 635 8.0E-23
sp|P39839|YUXL_BACSU Uncharacterized peptidase YuxL OS=Bacillus subtilis (strain 168) GN=yuxL PE=3 SV=3 352 616 2.0E-19
sp|P34422|DPF6_CAEEL Dipeptidyl peptidase family member 6 OS=Caenorhabditis elegans GN=dpf-6 PE=3 SV=2 407 619 4.0E-17
sp|Q6F3I7|DAP4_PSEMX Dipeptidyl aminopeptidase 4 OS=Pseudoxanthomonas mexicana GN=dap4 PE=1 SV=1 234 614 6.0E-15
sp|P80227|ACPH_BOVIN Acylamino-acid-releasing enzyme OS=Bos taurus GN=APEH PE=1 SV=2 382 616 2.0E-13
sp|P19205|ACPH_PIG Acylamino-acid-releasing enzyme OS=Sus scrofa GN=APEH PE=1 SV=2 406 624 1.0E-12
sp|Q95WU5|DPP_GIAIN Dipeptidyl-peptidase 4 OS=Giardia intestinalis GN=DPP PE=1 SV=1 367 623 2.0E-12
sp|P13676|ACPH_RAT Acylamino-acid-releasing enzyme OS=Rattus norvegicus GN=Apeh PE=1 SV=1 387 624 2.0E-12
sp|Q8R146|APEH_MOUSE Acylamino-acid-releasing enzyme OS=Mus musculus GN=Apeh PE=1 SV=3 406 624 2.0E-12
sp|P13798|ACPH_HUMAN Acylamino-acid-releasing enzyme OS=Homo sapiens GN=APEH PE=1 SV=4 339 624 3.0E-12
sp|Q7JKY3|DPF1_CAEEL Dipeptidyl peptidase family member 1 OS=Caenorhabditis elegans GN=dpf-1 PE=1 SV=1 406 619 1.0E-08
sp|Q9YBQ2|APEH_AERPE Acylamino-acid-releasing enzyme OS=Aeropyrum pernix (strain ATCC 700893 / DSM 11879 / JCM 9820 / NBRC 100138 / K1) GN=APE_1547.1 PE=1 SV=1 406 615 2.0E-08
sp|Q7MUW6|PTP_PORGI Prolyl tripeptidyl peptidase OS=Porphyromonas gingivalis (strain ATCC BAA-308 / W83) GN=ptpA PE=1 SV=1 352 623 1.0E-06
sp|B2RJX3|PTP_PORG3 Prolyl tripeptidyl peptidase OS=Porphyromonas gingivalis (strain ATCC 33277 / DSM 20709 / JCM 12257) GN=ptpA PE=3 SV=1 352 623 4.0E-06
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GO

GO Term Description Terminal node
GO:0008236 serine-type peptidase activity Yes
GO:0016787 hydrolase activity Yes
GO:0006508 proteolysis Yes
GO:0003824 catalytic activity No
GO:0044238 primary metabolic process No
GO:0017171 serine hydrolase activity No
GO:0006807 nitrogen compound metabolic process No
GO:0003674 molecular_function No
GO:0008150 biological_process No
GO:0008233 peptidase activity No
GO:0008152 metabolic process No
GO:0071704 organic substance metabolic process No
GO:1901564 organonitrogen compound metabolic process No
GO:0019538 protein metabolic process No
GO:0140096 catalytic activity, acting on a protein No
GO:0043170 macromolecule metabolic process No

Deeploc

Deeploc data not available for this genome

SignalP

(None)

Transmembrane Domains

(None)

Transcription Factor Class

(None)

CAZymes

(None)

Secondary Metabolism

(None)

Expression data

No expression data available for this genome

Orthologs

Orthofinder run ID4
Orthogroup7012
Change Orthofinder run
Species Protein ID
Ophiocordyceps australis 1348a (Ghana) OphauG2|6701
Ophiocordyceps australis map64 (Brazil) OphauB2|51 (this protein)
Ophiocordyceps subramaniannii Hirsu2|3738

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 >OphauB2|51
MVRKTVAPHGKWPSPISVDSVVSMGRLSTPRVSRSGRIFFQEAGLDGRSRLLEVTRSGVKEVLPAPYSASNRVYE
YGGALFDVLPDSRLVLSNWDDSVCMVEPDAQRVSVLVPSSSSLRYASFSANATSPWILAIEEEHAGQEAAGVRNR
IVALNAETAQVKRVVEGADFYYQPRFSSHGARLCWLEWNRPDLPFDAAKLYVAEWKADGGEVSQKRLVAGGSGQS
VAEPSWGPDGTLFFAMEQGPYRQLYKLAPGSTSPAAIPLEGLEDHSIQPLSKDTLVAAPYTNGVRHMIAIDLQTH
KWHRLADTETICQLDDDATARLNDTSLVVVGSGTTSSPALWQIDVHKPATIKALHKATEHQFPPSLLSRPEQIAL
QAKTSRGQTTHGFLWMPHNPDYTGAPDELPPLIITVHGGPTSVMGCGLNLRTQYFTTRGYAVLGINHHGSAGHGR
DYRNSLFGQWGLVDADDTGQCAEQLASTGRVRKTGIGITGLSAGGYNTLQSIVRHGSSFAGALCVSGVCELSKFS
ATTHKLEMDYTPALALERPESVDEEHRERVYRERSPLYHTHKIKTPLLMLHGRDDTVVAEEQPRMLTEKLKAQGA
DVELVLVEGDSHKLDKPTSVRLWLELEEKMWSETLL*
Coding >OphauB2|51
ATGGTGCGCAAAACTGTGGCGCCTCATGGCAAATGGCCATCGCCTATAAGCGTGGATTCCGTGGTGAGCATGGGC
CGCTTGTCGACTCCTCGCGTCTCGCGCTCTGGACGCATCTTTTTCCAGGAGGCGGGGCTTGACGGCAGGAGCAGG
TTGCTCGAGGTTACGAGGAGCGGCGTCAAGGAGGTGCTGCCGGCTCCGTACAGCGCCAGCAACAGAGTCTACGAA
TACGGCGGAGCGCTATTTGACGTGCTGCCGGATAGCCGCCTTGTGCTGTCGAATTGGGACGATTCGGTGTGCATG
GTGGAGCCTGACGCGCAGCGAGTCAGCGTACTTGTGCCGTCGAGCTCGTCGCTGCGCTATGCCAGCTTCAGCGCC
AATGCCACTTCGCCCTGGATCCTTGCCATTGAAGAAGAGCATGCCGGTCAGGAGGCGGCTGGGGTGCGCAACCGC
ATCGTGGCCCTCAATGCCGAGACGGCCCAGGTGAAGCGGGTGGTGGAGGGAGCCGACTTTTACTACCAGCCGCGC
TTCAGCAGCCATGGCGCGCGCCTCTGCTGGCTCGAGTGGAATCGTCCCGACCTGCCCTTTGATGCGGCCAAGCTG
TACGTTGCCGAGTGGAAGGCAGACGGGGGCGAGGTGAGCCAGAAGCGTCTGGTGGCGGGCGGCAGCGGCCAGAGC
GTCGCCGAGCCAAGCTGGGGCCCCGACGGCACTCTCTTCTTTGCCATGGAGCAGGGACCCTATCGCCAGCTGTAC
AAGCTTGCACCGGGAAGCACGTCGCCCGCTGCTATCCCGCTCGAGGGCCTGGAGGATCACTCCATTCAGCCTCTG
TCCAAGGACACGCTCGTGGCAGCTCCCTACACCAATGGCGTGCGCCACATGATTGCCATTGACTTGCAGACTCAC
AAGTGGCACCGCCTGGCCGACACGGAGACAATCTGCCAGCTCGACGACGACGCCACGGCACGCCTCAACGACACA
AGTCTAGTAGTAGTGGGCAGCGGCACCACGTCGAGTCCGGCCCTGTGGCAAATCGACGTGCATAAGCCAGCCACC
ATCAAGGCTTTGCACAAGGCCACGGAGCACCAGTTCCCGCCCTCTCTCTTATCTAGGCCCGAGCAGATTGCTCTA
CAGGCCAAGACGTCACGGGGACAGACCACGCACGGCTTCCTGTGGATGCCGCACAACCCCGACTATACCGGCGCC
CCGGACGAGCTGCCCCCCCTCATCATCACGGTCCACGGCGGCCCAACAAGCGTCATGGGCTGTGGACTCAATCTC
CGAACGCAGTACTTCACAACTAGAGGATACGCCGTGCTGGGCATCAACCACCACGGCTCAGCAGGCCACGGCCGC
GACTACCGCAACTCGCTCTTTGGGCAATGGGGACTTGTCGACGCCGACGACACGGGCCAGTGCGCCGAGCAGCTG
GCGTCCACGGGGCGCGTCCGCAAAACCGGCATCGGCATCACGGGCCTCTCAGCCGGCGGCTATAACACGCTGCAG
TCCATTGTCAGGCACGGCTCCTCCTTCGCCGGCGCCCTGTGTGTCTCTGGCGTGTGCGAGCTGTCCAAGTTTAGC
GCCACCACGCACAAGCTGGAAATGGACTATACTCCAGCCCTGGCACTGGAGCGCCCTGAAAGCGTAGACGAGGAG
CATCGGGAGCGCGTCTATCGGGAGCGCAGCCCGCTCTACCACACGCACAAGATTAAGACGCCGCTGCTGATGCTG
CATGGCCGCGACGACACCGTTGTTGCCGAGGAGCAGCCGCGCATGCTGACGGAGAAGCTCAAGGCCCAGGGCGCT
GACGTTGAGCTTGTGCTGGTCGAGGGCGACAGTCACAAGCTGGACAAGCCGACAAGCGTGCGCCTATGGCTGGAG
CTGGAGGAGAAGATGTGGTCCGAGACTCTGCTGTAA
Transcript >OphauB2|51
ATGGTGCGCAAAACTGTGGCGCCTCATGGCAAATGGCCATCGCCTATAAGCGTGGATTCCGTGGTGAGCATGGGC
CGCTTGTCGACTCCTCGCGTCTCGCGCTCTGGACGCATCTTTTTCCAGGAGGCGGGGCTTGACGGCAGGAGCAGG
TTGCTCGAGGTTACGAGGAGCGGCGTCAAGGAGGTGCTGCCGGCTCCGTACAGCGCCAGCAACAGAGTCTACGAA
TACGGCGGAGCGCTATTTGACGTGCTGCCGGATAGCCGCCTTGTGCTGTCGAATTGGGACGATTCGGTGTGCATG
GTGGAGCCTGACGCGCAGCGAGTCAGCGTACTTGTGCCGTCGAGCTCGTCGCTGCGCTATGCCAGCTTCAGCGCC
AATGCCACTTCGCCCTGGATCCTTGCCATTGAAGAAGAGCATGCCGGTCAGGAGGCGGCTGGGGTGCGCAACCGC
ATCGTGGCCCTCAATGCCGAGACGGCCCAGGTGAAGCGGGTGGTGGAGGGAGCCGACTTTTACTACCAGCCGCGC
TTCAGCAGCCATGGCGCGCGCCTCTGCTGGCTCGAGTGGAATCGTCCCGACCTGCCCTTTGATGCGGCCAAGCTG
TACGTTGCCGAGTGGAAGGCAGACGGGGGCGAGGTGAGCCAGAAGCGTCTGGTGGCGGGCGGCAGCGGCCAGAGC
GTCGCCGAGCCAAGCTGGGGCCCCGACGGCACTCTCTTCTTTGCCATGGAGCAGGGACCCTATCGCCAGCTGTAC
AAGCTTGCACCGGGAAGCACGTCGCCCGCTGCTATCCCGCTCGAGGGCCTGGAGGATCACTCCATTCAGCCTCTG
TCCAAGGACACGCTCGTGGCAGCTCCCTACACCAATGGCGTGCGCCACATGATTGCCATTGACTTGCAGACTCAC
AAGTGGCACCGCCTGGCCGACACGGAGACAATCTGCCAGCTCGACGACGACGCCACGGCACGCCTCAACGACACA
AGTCTAGTAGTAGTGGGCAGCGGCACCACGTCGAGTCCGGCCCTGTGGCAAATCGACGTGCATAAGCCAGCCACC
ATCAAGGCTTTGCACAAGGCCACGGAGCACCAGTTCCCGCCCTCTCTCTTATCTAGGCCCGAGCAGATTGCTCTA
CAGGCCAAGACGTCACGGGGACAGACCACGCACGGCTTCCTGTGGATGCCGCACAACCCCGACTATACCGGCGCC
CCGGACGAGCTGCCCCCCCTCATCATCACGGTCCACGGCGGCCCAACAAGCGTCATGGGCTGTGGACTCAATCTC
CGAACGCAGTACTTCACAACTAGAGGATACGCCGTGCTGGGCATCAACCACCACGGCTCAGCAGGCCACGGCCGC
GACTACCGCAACTCGCTCTTTGGGCAATGGGGACTTGTCGACGCCGACGACACGGGCCAGTGCGCCGAGCAGCTG
GCGTCCACGGGGCGCGTCCGCAAAACCGGCATCGGCATCACGGGCCTCTCAGCCGGCGGCTATAACACGCTGCAG
TCCATTGTCAGGCACGGCTCCTCCTTCGCCGGCGCCCTGTGTGTCTCTGGCGTGTGCGAGCTGTCCAAGTTTAGC
GCCACCACGCACAAGCTGGAAATGGACTATACTCCAGCCCTGGCACTGGAGCGCCCTGAAAGCGTAGACGAGGAG
CATCGGGAGCGCGTCTATCGGGAGCGCAGCCCGCTCTACCACACGCACAAGATTAAGACGCCGCTGCTGATGCTG
CATGGCCGCGACGACACCGTTGTTGCCGAGGAGCAGCCGCGCATGCTGACGGAGAAGCTCAAGGCCCAGGGCGCT
GACGTTGAGCTTGTGCTGGTCGAGGGCGACAGTCACAAGCTGGACAAGCCGACAAGCGTGCGCCTATGGCTGGAG
CTGGAGGAGAAGATGTGGTCCGAGACTCTGCTGTAA
Gene >OphauB2|51
ATGGTGCGCAAAACTGTGGCGCCTCATGGCAAATGGCCATCGCCTATAAGCGTGGATTCCGTGGTGAGCATGGGC
CGCTTGTCGACTCCTCGCGTCTCGGTCAGTATGGCGGATGCAACTGGCGCCTGGGCAACAGCTAAAGATGCATGC
TATAGCGCTCTGGACGCATCTTTTTCCAGGAGGCGGGGCTTGACGGCAGGAGCAGGTTGCTCGAGGTTACGAGGA
GCGGCGTCAAGGAGGTGCTGCCGGCTCCGTACAGCGCCAGCAACAGAGTCTACGAATACGGCGGAGCGCTATTTG
ACGTGCTGCCGGATAGCCGCCTTGTGCTGTCGAATTGGGACGATTCGGTGTGCATGGTGGAGCCTGACGCGCAGC
GAGTCAGCGTACTTGTGCCGTCGAGCTCGTCGCTGCGCTATGCCAGCTTCAGCGCCAATGCCACTTCGCCCTGGA
TCCTTGCCATTGAAGAAGAGCATGCCGGTCAGGAGGCGGCTGGGGTGCGCAACCGCATCGTGGCCCTCAATGCCG
AGACGGCCCAGGTGAAGCGGGTGGTGGAGGGAGCCGACTTTTACTACCAGCCGCGCTTCAGCAGCCATGGCGCGC
GCCTCTGCTGGCTCGAGTGGAATCGTCCCGACCTGCCCTTTGATGCGGCCAAGCTGTACGTTGCCGAGTGGAAGG
CAGACGGGGGCGAGGTGAGCCAGAAGCGTCTGGTGGCGGGCGGCAGCGGCCAGAGCGTCGCCGAGCCAAGCTGGG
GCCCCGACGGCACTCTCTTCTTTGCCATGGAGCAGGGACCCTATCGCCAGCTGTACAAGCTTGCACCGGGAAGCA
CGTCGCCCGCTGCTATCCCGCTCGAGGGCCTGGAGGAGTGCGAGTTTGGAGACGTGGGGCTCCAAGAGGCGAGGC
GAGTGGCTGCACCCAGGCCCGGCCGACTGGCGTGCTGACAGCTTGCCAGTCACTCCATTCAGCCTCTGTCCAAGG
ACACGCTCGTGGCAGCTCCCTACACCAATGGCGTGCGCCACATGATTGCCATTGACTTGCAGACTCACAAGTGGC
ACCGCCTGGCCGACACGGAGACAATCTGCCAGCTCGACGACGACGCCACGGCACGCCTCAACGACACAAGTCTAG
TAGTAGTGGGCAGCGGCACCACGTCGAGTCCGGCCCTGTGGCAAATCGACGTGCATAAGCCAGCCACCATCAAGG
CTTTGCACAAGGCCACGGAGCACCAGTTCCCGCCCTCTCTCTTATCTAGGCCCGAGCAGATTGCTCTACAGGCCA
AGACGTCACGGGGACAGACCACGCACGGCTTCCTGTGGATGCCGCACAACCCCGACTATACCGGCGCCCCGGACG
AGCTGCCCCCCCTCATCATCACGGTCCACGGCGGCCCAACAAGCGTCATGGGCTGTGGACTCAATCTCCGAACGC
AGTACTTCACAACTAGAGGATACGCCGTGCTGGGCATCAACCACCACGGCTCAGCAGGCCACGGCCGCGACTACC
GCAACTCGCTCTTTGGGCAATGGGGACTTGTCGACGCCGACGACACGGGCCAGTGCGCCGAGCAGCTGGCGTCCA
CGGGGCGCGTCCGCAAAACCGGCATCGGCATCACGGGCCTCTCAGCCGGCGGCTATAACACGCTGCAGTCCATTG
TCAGGCACGGCTCCTCCTTCGCCGGCGCCCTGTGTGTCTCTGGCGTGTGCGAGCTGTCCAAGTTTAGCGCCACCA
CGCACAAGCTGGAAATGGACTATACTCCAGCCCTGGCACTGGAGCGCCCTGAAAGCGTAGACGAGGAGCATCGGG
AGCGCGTCTATCGGGAGCGCAGCCCGCTCTACCACACGCACAAGATTAAGACGCCGCTGCTGATGCTGCATGGCC
GCGACGACACCGTTGTTGCCGAGGAGCAGCCGCGCATGCTGACGGAGAAGCTCAAGGCCCAGGGCGCTGACGTTG
AGCTTGTGCTGGTCGAGGGCGACAGTCACAAGCTGGACAAGCCGACAAGCGTGCGCCTATGGCTGGAGCTGGAGG
AGAAGATGTGGTCCGAGACTCTGCTGTAA

© 2023 - Robin Ohm - Utrecht University - The Netherlands

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