Fungal Genomics

at Utrecht University

General Properties

Protein IDOphauG2|1659
Gene name
LocationContig_1512:2258..3365
Strand-
Gene length (bp)1107
Transcript length (bp)1107
Coding sequence length (bp)1107
Protein length (aa) 369

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PFAM Domains

PFAM Domain ID Short name Long name E-value Start End
PF04757 Pex2_Pex12 Pex2 / Pex12 amino terminal region 5.7E-35 24 228
PF13923 zf-C3HC4_2 Zinc finger, C3HC4 type (RING finger) 1.7E-10 315 353
PF13639 zf-RING_2 Ring finger domain 8.9E-10 315 354
PF13920 zf-C3HC4_3 Zinc finger, C3HC4 type (RING finger) 1.4E-08 313 354
PF00097 zf-C3HC4 Zinc finger, C3HC4 type (RING finger) 3.1E-08 316 353
PF13445 zf-RING_UBOX RING-type zinc-finger 6.9E-06 316 351

Swissprot hits

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Swissprot ID Swissprot Description Start End E-value
sp|Q00940|PEX10_PICAN Peroxisome biogenesis factor 10 OS=Pichia angusta GN=PEX10 PE=3 SV=1 9 366 9.0E-53
sp|Q05568|PEX10_YEAST Peroxisome biogenesis factor 10 OS=Saccharomyces cerevisiae (strain ATCC 204508 / S288c) GN=PEX10 PE=1 SV=1 7 366 3.0E-40
sp|Q9SYU4|PEX10_ARATH Peroxisome biogenesis factor 10 OS=Arabidopsis thaliana GN=PEX10 PE=1 SV=1 7 354 8.0E-37
sp|Q8HXW8|PEX10_MACFA Peroxisome biogenesis factor 10 OS=Macaca fascicularis GN=PEX10 PE=2 SV=1 2 366 4.0E-35
sp|O60683|PEX10_HUMAN Peroxisome biogenesis factor 10 OS=Homo sapiens GN=PEX10 PE=1 SV=1 2 366 2.0E-34
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Swissprot ID Swissprot Description Start End E-value
sp|Q00940|PEX10_PICAN Peroxisome biogenesis factor 10 OS=Pichia angusta GN=PEX10 PE=3 SV=1 9 366 9.0E-53
sp|Q05568|PEX10_YEAST Peroxisome biogenesis factor 10 OS=Saccharomyces cerevisiae (strain ATCC 204508 / S288c) GN=PEX10 PE=1 SV=1 7 366 3.0E-40
sp|Q9SYU4|PEX10_ARATH Peroxisome biogenesis factor 10 OS=Arabidopsis thaliana GN=PEX10 PE=1 SV=1 7 354 8.0E-37
sp|Q8HXW8|PEX10_MACFA Peroxisome biogenesis factor 10 OS=Macaca fascicularis GN=PEX10 PE=2 SV=1 2 366 4.0E-35
sp|O60683|PEX10_HUMAN Peroxisome biogenesis factor 10 OS=Homo sapiens GN=PEX10 PE=1 SV=1 2 366 2.0E-34
sp|Q92265|PEX10_PICPA Peroxisome biogenesis factor 10 OS=Komagataella pastoris GN=PEX10 PE=1 SV=1 4 355 3.0E-34
sp|Q54S31|PEX10_DICDI Peroxisome biogenesis factor 10 OS=Dictyostelium discoideum GN=pex10 PE=3 SV=2 9 365 2.0E-33
sp|B1AUE5|PEX10_MOUSE Peroxisome biogenesis factor 10 OS=Mus musculus GN=Pex10 PE=2 SV=1 10 204 2.0E-21
sp|Q9UUF0|PEX10_SCHPO Peroxisome biogenesis factor 10 OS=Schizosaccharomyces pombe (strain 972 / ATCC 24843) GN=pas4 PE=3 SV=1 313 366 2.0E-13
sp|B1AUE5|PEX10_MOUSE Peroxisome biogenesis factor 10 OS=Mus musculus GN=Pex10 PE=2 SV=1 316 366 2.0E-11
sp|Q91YT2|RN185_MOUSE E3 ubiquitin-protein ligase RNF185 OS=Mus musculus GN=Rnf185 PE=2 SV=1 315 365 3.0E-08
sp|P93030|RMA2_ARATH E3 ubiquitin-protein ligase RMA2 OS=Arabidopsis thaliana GN=RMA2 PE=1 SV=1 315 365 4.0E-08
sp|Q568Y3|RN185_RAT E3 ubiquitin-protein ligase RNF185 OS=Rattus norvegicus GN=Rnf185 PE=2 SV=1 315 365 5.0E-08
sp|Q5ZIR9|RN185_CHICK E3 ubiquitin-protein ligase RNF185 OS=Gallus gallus GN=RNF185 PE=2 SV=1 315 365 6.0E-08
sp|Q96GF1|RN185_HUMAN E3 ubiquitin-protein ligase RNF185 OS=Homo sapiens GN=RNF185 PE=1 SV=1 315 365 6.0E-08
sp|Q5RFK9|RN185_PONAB E3 ubiquitin-protein ligase RNF185 OS=Pongo abelii GN=RNF185 PE=2 SV=1 315 365 8.0E-08
sp|Q6PC78|RN185_DANRE E3 ubiquitin-protein ligase RNF185 OS=Danio rerio GN=rnf185 PE=2 SV=1 315 365 9.0E-08
sp|Q5M807|RNF5_RAT E3 ubiquitin-protein ligase RNF5 OS=Rattus norvegicus GN=Rnf5 PE=2 SV=1 315 365 1.0E-07
sp|O35445|RNF5_MOUSE E3 ubiquitin-protein ligase RNF5 OS=Mus musculus GN=Rnf5 PE=1 SV=1 315 365 1.0E-07
sp|Q06554|IRC20_YEAST Uncharacterized ATP-dependent helicase IRC20 OS=Saccharomyces cerevisiae (strain ATCC 204508 / S288c) GN=IRC20 PE=1 SV=1 263 355 1.0E-07
sp|Q99942|RNF5_HUMAN E3 ubiquitin-protein ligase RNF5 OS=Homo sapiens GN=RNF5 PE=1 SV=1 315 365 1.0E-07
sp|Q8GUK7|RMA3_ARATH E3 ubiquitin-protein ligase RMA3 OS=Arabidopsis thaliana GN=RMA3 PE=1 SV=1 315 365 1.0E-07
sp|Q9UPQ7|PZRN3_HUMAN E3 ubiquitin-protein ligase PDZRN3 OS=Homo sapiens GN=PDZRN3 PE=1 SV=2 315 368 3.0E-07
sp|Q69ZS0|PZRN3_MOUSE E3 ubiquitin-protein ligase PDZRN3 OS=Mus musculus GN=Pdzrn3 PE=1 SV=3 315 368 3.0E-07
sp|P68907|PZRN3_RAT E3 ubiquitin-protein ligase PDZRN3 OS=Rattus norvegicus GN=Pdzrn3 PE=1 SV=1 315 368 3.0E-07
sp|Q09463|RNF5_CAEEL RING finger protein 5 OS=Caenorhabditis elegans GN=rnf-5 PE=1 SV=1 315 365 5.0E-07
sp|Q6R567|RMA1_CAPAN E3 ubiquitin-protein ligase RMA1H1 OS=Capsicum annuum GN=RMA1H1 PE=1 SV=1 315 365 6.0E-07
sp|Q9P3U8|YJ95_SCHPO Uncharacterized RING finger protein C548.05c OS=Schizosaccharomyces pombe (strain 972 / ATCC 24843) GN=SPCC548.05c PE=3 SV=1 315 354 1.0E-06
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GO

GO Term Description Terminal node
GO:0046872 metal ion binding Yes
GO:0003674 molecular_function No
GO:0043169 cation binding No
GO:0005488 binding No
GO:0043167 ion binding No

SignalP

[Help with interpreting these statistics]
SignalP signal predicted Location
(based on Ymax)
D score
(significance: > 0.45)
No 1 - 19 0.45

Transmembrane Domains

(None)

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 >OphauG2|1659
MATASPFPFALAPDIVRAHQKDAFFSGHLANSFADLVRRLAGARTAHLLGPELRSLAALVYLGLTTLPGNRTLGE
EYCDLVHVCTRHATARLPSMPCRAAYVALAVIAPYFASRALPLLRSRIRAMMHRRLARLARSPKSQACFEARLLR
HVDNHLSLLTSPASLHALTLALFYFSGTYYELSKRLLSLRYVLTHTLPQSPDRAGYEVLGVLLAIQLALQAYLHV
RSLLARPPCSLAPRDRTAFQSTTVDVSLDHTNSYSANSDLLLTQLGSRGPQPSSVHLAATTHTPLAPSPRFDLAG
NRGVMAYIKGLQQRKCTLCLEELKDPAATQCGHVFCWQCICDWVREKPECPLCRGGAMVQHIIPLRTL*
Coding >OphauG2|1659
ATGGCCACCGCCAGCCCTTTCCCCTTTGCTCTAGCCCCAGACATTGTTCGAGCCCATCAAAAGGACGCCTTCTTC
TCCGGCCATCTCGCCAACTCGTTTGCCGACCTGGTCCGTCGTCTCGCCGGCGCCCGCACCGCCCATCTGCTTGGT
CCCGAGCTGCGCTCTCTGGCCGCCTTGGTCTACCTCGGCCTCACCACCCTCCCAGGCAACCGCACCCTCGGCGAA
GAGTACTGCGACTTGGTCCACGTCTGCACCCGCCATGCCACGGCCCGTCTGCCCTCAATGCCATGTCGCGCCGCC
TACGTCGCCTTGGCCGTCATTGCCCCCTACTTTGCCAGCCGCGCTCTGCCCTTGCTTCGCTCCCGCATTCGCGCC
ATGATGCATCGTCGCCTGGCCCGTCTGGCCCGCAGCCCCAAGTCGCAAGCCTGTTTTGAAGCCCGCCTTCTGCGC
CATGTCGACAATCACCTCTCCCTCCTTACTTCGCCCGCCTCGCTCCACGCCCTCACTCTGGCCCTCTTTTACTTT
TCCGGCACCTACTACGAGCTCTCCAAGCGCCTCCTCTCCCTTCGATACGTCCTCACCCACACTCTTCCCCAGTCC
CCTGACCGCGCCGGCTACGAGGTGCTCGGCGTCCTCCTCGCCATCCAGCTCGCCCTCCAGGCCTATCTCCACGTC
CGCTCCCTATTAGCCCGCCCCCCATGCTCGCTTGCGCCTCGCGACCGCACCGCCTTTCAGTCCACCACGGTCGAC
GTCTCCCTCGACCACACAAACTCCTACTCGGCGAATAGCGATTTGCTTCTCACCCAACTCGGCTCTCGCGGGCCC
CAGCCAAGCAGCGTCCATCTCGCCGCCACTACACACACACCTCTGGCCCCCAGTCCTCGCTTTGACCTGGCTGGC
AATCGTGGCGTCATGGCCTACATCAAGGGGCTGCAACAGAGGAAATGCACCCTCTGCCTCGAAGAGCTCAAGGAC
CCCGCCGCCACCCAGTGTGGCCATGTCTTTTGCTGGCAGTGCATTTGTGACTGGGTGCGCGAGAAGCCCGAGTGC
CCCCTGTGCCGCGGCGGCGCCATGGTGCAACACATAATCCCTCTGCGCACCCTCTAA
Transcript >OphauG2|1659
ATGGCCACCGCCAGCCCTTTCCCCTTTGCTCTAGCCCCAGACATTGTTCGAGCCCATCAAAAGGACGCCTTCTTC
TCCGGCCATCTCGCCAACTCGTTTGCCGACCTGGTCCGTCGTCTCGCCGGCGCCCGCACCGCCCATCTGCTTGGT
CCCGAGCTGCGCTCTCTGGCCGCCTTGGTCTACCTCGGCCTCACCACCCTCCCAGGCAACCGCACCCTCGGCGAA
GAGTACTGCGACTTGGTCCACGTCTGCACCCGCCATGCCACGGCCCGTCTGCCCTCAATGCCATGTCGCGCCGCC
TACGTCGCCTTGGCCGTCATTGCCCCCTACTTTGCCAGCCGCGCTCTGCCCTTGCTTCGCTCCCGCATTCGCGCC
ATGATGCATCGTCGCCTGGCCCGTCTGGCCCGCAGCCCCAAGTCGCAAGCCTGTTTTGAAGCCCGCCTTCTGCGC
CATGTCGACAATCACCTCTCCCTCCTTACTTCGCCCGCCTCGCTCCACGCCCTCACTCTGGCCCTCTTTTACTTT
TCCGGCACCTACTACGAGCTCTCCAAGCGCCTCCTCTCCCTTCGATACGTCCTCACCCACACTCTTCCCCAGTCC
CCTGACCGCGCCGGCTACGAGGTGCTCGGCGTCCTCCTCGCCATCCAGCTCGCCCTCCAGGCCTATCTCCACGTC
CGCTCCCTATTAGCCCGCCCCCCATGCTCGCTTGCGCCTCGCGACCGCACCGCCTTTCAGTCCACCACGGTCGAC
GTCTCCCTCGACCACACAAACTCCTACTCGGCGAATAGCGATTTGCTTCTCACCCAACTCGGCTCTCGCGGGCCC
CAGCCAAGCAGCGTCCATCTCGCCGCCACTACACACACACCTCTGGCCCCCAGTCCTCGCTTTGACCTGGCTGGC
AATCGTGGCGTCATGGCCTACATCAAGGGGCTGCAACAGAGGAAATGCACCCTCTGCCTCGAAGAGCTCAAGGAC
CCCGCCGCCACCCAGTGTGGCCATGTCTTTTGCTGGCAGTGCATTTGTGACTGGGTGCGCGAGAAGCCCGAGTGC
CCCCTGTGCCGCGGCGGCGCCATGGTGCAACACATAATCCCTCTGCGCACCCTCTAA
Gene >OphauG2|1659
ATGGCCACCGCCAGCCCTTTCCCCTTTGCTCTAGCCCCAGACATTGTTCGAGCCCATCAAAAGGACGCCTTCTTC
TCCGGCCATCTCGCCAACTCGTTTGCCGACCTGGTCCGTCGTCTCGCCGGCGCCCGCACCGCCCATCTGCTTGGT
CCCGAGCTGCGCTCTCTGGCCGCCTTGGTCTACCTCGGCCTCACCACCCTCCCAGGCAACCGCACCCTCGGCGAA
GAGTACTGCGACTTGGTCCACGTCTGCACCCGCCATGCCACGGCCCGTCTGCCCTCAATGCCATGTCGCGCCGCC
TACGTCGCCTTGGCCGTCATTGCCCCCTACTTTGCCAGCCGCGCTCTGCCCTTGCTTCGCTCCCGCATTCGCGCC
ATGATGCATCGTCGCCTGGCCCGTCTGGCCCGCAGCCCCAAGTCGCAAGCCTGTTTTGAAGCCCGCCTTCTGCGC
CATGTCGACAATCACCTCTCCCTCCTTACTTCGCCCGCCTCGCTCCACGCCCTCACTCTGGCCCTCTTTTACTTT
TCCGGCACCTACTACGAGCTCTCCAAGCGCCTCCTCTCCCTTCGATACGTCCTCACCCACACTCTTCCCCAGTCC
CCTGACCGCGCCGGCTACGAGGTGCTCGGCGTCCTCCTCGCCATCCAGCTCGCCCTCCAGGCCTATCTCCACGTC
CGCTCCCTATTAGCCCGCCCCCCATGCTCGCTTGCGCCTCGCGACCGCACCGCCTTTCAGTCCACCACGGTCGAC
GTCTCCCTCGACCACACAAACTCCTACTCGGCGAATAGCGATTTGCTTCTCACCCAACTCGGCTCTCGCGGGCCC
CAGCCAAGCAGCGTCCATCTCGCCGCCACTACACACACACCTCTGGCCCCCAGTCCTCGCTTTGACCTGGCTGGC
AATCGTGGCGTCATGGCCTACATCAAGGGGCTGCAACAGAGGAAATGCACCCTCTGCCTCGAAGAGCTCAAGGAC
CCCGCCGCCACCCAGTGTGGCCATGTCTTTTGCTGGCAGTGCATTTGTGACTGGGTGCGCGAGAAGCCCGAGTGC
CCCCTGTGCCGCGGCGGCGCCATGGTGCAACACATAATCCCTCTGCGCACCCTCTAA

© 2022 - Robin Ohm - Utrecht University - The Netherlands

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