Fungal Genomics

at Utrecht University

General Properties

Protein IDHirsu2|7193
Gene name
LocationContig_404:13055..15173
Strand-
Gene length (bp)2118
Transcript length (bp)1731
Coding sequence length (bp)1731
Protein length (aa) 577

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PFAM Domains

PFAM Domain ID Short name Long name E-value Start End
PF00860 Xan_ur_permease Permease family 1.8E-11 93 198
PF00860 Xan_ur_permease Permease family 3.4E-14 328 474

Swissprot hits

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Swissprot ID Swissprot Description Start End E-value
sp|O94300|YOOH_SCHPO Putative xanthine/uracil permease C887.17 OS=Schizosaccharomyces pombe (strain 972 / ATCC 24843) GN=SPBC887.17 PE=3 SV=1 2 575 0.0E+00
sp|Q9SRK7|AZG1_ARATH Adenine/guanine permease AZG1 OS=Arabidopsis thaliana GN=AZG1 PE=2 SV=1 7 491 1.0E-139
sp|Q84MA8|AZG2_ARATH Adenine/guanine permease AZG2 OS=Arabidopsis thaliana GN=AZG2 PE=2 SV=1 5 487 2.0E-122
sp|Q57772|Y326_METJA Putative permease MJ0326 OS=Methanocaldococcus jannaschii (strain ATCC 43067 / DSM 2661 / JAL-1 / JCM 10045 / NBRC 100440) GN=MJ0326 PE=3 SV=1 16 495 4.0E-57
sp|P31440|ADEQ_ECOLI Adenine permease AdeQ OS=Escherichia coli (strain K12) GN=adeQ PE=1 SV=3 18 487 2.0E-54
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Swissprot ID Swissprot Description Start End E-value
sp|O94300|YOOH_SCHPO Putative xanthine/uracil permease C887.17 OS=Schizosaccharomyces pombe (strain 972 / ATCC 24843) GN=SPBC887.17 PE=3 SV=1 2 575 0.0E+00
sp|Q9SRK7|AZG1_ARATH Adenine/guanine permease AZG1 OS=Arabidopsis thaliana GN=AZG1 PE=2 SV=1 7 491 1.0E-139
sp|Q84MA8|AZG2_ARATH Adenine/guanine permease AZG2 OS=Arabidopsis thaliana GN=AZG2 PE=2 SV=1 5 487 2.0E-122
sp|Q57772|Y326_METJA Putative permease MJ0326 OS=Methanocaldococcus jannaschii (strain ATCC 43067 / DSM 2661 / JAL-1 / JCM 10045 / NBRC 100440) GN=MJ0326 PE=3 SV=1 16 495 4.0E-57
sp|P31440|ADEQ_ECOLI Adenine permease AdeQ OS=Escherichia coli (strain K12) GN=adeQ PE=1 SV=3 18 487 2.0E-54
sp|O34987|PBUG_BACSU Guanine/hypoxanthine permease PbuG OS=Bacillus subtilis (strain 168) GN=pbuG PE=1 SV=1 38 483 4.0E-54
sp|O34978|PBUO_BACSU Guanine/hypoxanthine permease PbuO OS=Bacillus subtilis (strain 168) GN=pbuO PE=1 SV=1 31 483 1.0E-51
sp|P31466|ADEP_ECOLI Adenine permease AdeP OS=Escherichia coli (strain K12) GN=adeP PE=1 SV=2 18 487 6.0E-49
sp|P0AF52|GHXP_ECOLI Guanine/hypoxanthine permease GhxP OS=Escherichia coli (strain K12) GN=ghxP PE=1 SV=1 5 485 5.0E-31
sp|P0AF53|GHXP_ECO57 Guanine/hypoxanthine permease GhxP OS=Escherichia coli O157:H7 GN=ghxP PE=3 SV=1 5 485 5.0E-31
sp|Q46817|GHXQ_ECOLI Guanine/hypoxanthine permease GhxQ OS=Escherichia coli (strain K12) GN=ghxQ PE=1 SV=2 39 485 1.0E-27
sp|P44530|Y125_HAEIN Putative permease HI_0125 OS=Haemophilus influenzae (strain ATCC 51907 / DSM 11121 / KW20 / Rd) GN=HI_0125 PE=3 SV=1 39 485 6.0E-26
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GO

GO Term Description Terminal node
GO:0055085 transmembrane transport Yes
GO:0022857 transmembrane transporter activity Yes
GO:0016020 membrane Yes
GO:0008150 biological_process No
GO:0006810 transport No
GO:0051234 establishment of localization No
GO:0003674 molecular_function No
GO:0051179 localization No
GO:0005575 cellular_component No
GO:0005215 transporter activity No

SignalP

[Help with interpreting these statistics]
SignalP signal predicted Location
(based on Ymax)
D score
(significance: > 0.45)
No 1 - 14 0.5

Transmembrane Domains

Domain # Start End Length
1 102 124 22
2 144 166 22
3 186 208 22
4 240 257 17
5 324 346 22
6 366 388 22
7 401 423 22
8 428 450 22
9 457 479 22

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 >Hirsu2|7193
MGWAQTVNARVAASPVGRWFRLEGCGHPRARKDARFLTELRAGLATFFAMAYIVAVNASIVADSGGPCVCARDAA
DPDCDRDAAYLLCVQDVKRDAVTATAAVSGLATFCMGLFANLPIGLAPGMGLNAYFAYTVVGYHGKGPVPYEVAL
TAIFVEGFVFLGLALLGLRQWLARAVPHSIKMATGVGIGLFLALVGLTYGEGIGLVVGGAATPTQLAGCPRDRLV
AGACPDDAKMRSPTLWLAVFGGGILTVVLSLYRVRGAVIAGILLVSLASWPRRTAVTAFPDTPVGDAAFDFFRRV
AAFHPIRRILAVQRWDVGRYAGQFGLALATFLYVDVLDCTGTLYGMARFAGLVDPVTADFEGSSVAYMVDALSIS
VGALLGLPPVTAFAESGAGISDGGKTGLTAVVTGLCFFLAVFFAPIFASIPPWATGCVLVLVGSMMAAAVTDINW
KYLGDSVPAFLAIVLMPFTYSIANGLIGGICTYMVLNSLVWLVSVATRGRIVPPNLADREPWTWRIAGGFFPPWL
VRLSRGQRRFWRDDPSSAAAADHESKLRSDPGQATESASDQGPAERSDEKA*
Coding >Hirsu2|7193
ATGGGCTGGGCTCAGACGGTCAACGCGAGGGTGGCGGCCAGCCCCGTCGGCCGCTGGTTCCGGCTCGAGGGTTGT
GGTCATCCGCGCGCGCGCAAGGACGCCCGCTTCCTGACCGAGCTCCGCGCCGGGCTGGCCACCTTCTTCGCCATG
GCCTACATCGTGGCCGTCAACGCGTCCATCGTGGCCGACTCGGGCGGCCCCTGCGTCTGCGCCCGCGACGCCGCC
GACCCGGACTGCGACCGCGACGCCGCCTACCTGCTCTGCGTCCAGGACGTCAAGCGCGACGCCGTCACCGCCACC
GCCGCCGTCTCCGGCCTCGCCACCTTTTGCATGGGCCTGTTCGCCAACCTGCCCATCGGTCTCGCGCCCGGAATG
GGCCTCAACGCCTACTTCGCCTATACCGTCGTCGGCTACCACGGCAAGGGCCCCGTGCCGTACGAGGTGGCCCTG
ACGGCCATCTTCGTCGAGGGCTTCGTCTTCCTGGGCCTGGCGCTGCTGGGCCTGCGGCAGTGGCTGGCGCGGGCG
GTGCCGCACTCCATCAAGATGGCCACCGGCGTCGGCATCGGCCTCTTCCTCGCCCTCGTCGGCCTCACCTACGGC
GAGGGCATCGGCCTCGTCGTCGGCGGCGCCGCCACGCCGACCCAGCTGGCCGGCTGCCCGCGCGACCGCCTCGTC
GCCGGCGCCTGTCCGGACGACGCCAAGATGCGCAGCCCGACCCTGTGGCTGGCCGTCTTCGGCGGCGGCATCCTG
ACCGTCGTCCTGTCGCTGTACCGCGTCCGGGGCGCCGTCATCGCCGGCATCCTGCTCGTCAGCCTCGCCTCGTGG
CCGCGCCGCACCGCCGTCACCGCCTTCCCCGACACGCCCGTCGGCGATGCCGCCTTCGACTTCTTCCGCCGCGTC
GCCGCCTTCCACCCGATCCGCCGCATCCTCGCCGTCCAGCGCTGGGACGTCGGCCGCTACGCCGGCCAGTTCGGC
CTCGCCCTCGCCACCTTTCTCTACGTCGACGTCCTCGACTGCACCGGCACCCTCTACGGCATGGCCCGCTTCGCC
GGCCTCGTCGACCCCGTCACCGCCGACTTCGAGGGCTCCTCCGTCGCCTACATGGTCGACGCCCTCAGCATCTCC
GTCGGCGCCCTCCTCGGCCTGCCGCCCGTCACCGCCTTCGCCGAGTCCGGCGCCGGCATCTCCGACGGCGGCAAG
ACCGGCCTCACCGCCGTCGTCACCGGCCTCTGCTTCTTTCTCGCCGTCTTCTTCGCCCCCATCTTCGCCTCCATC
CCGCCCTGGGCCACCGGCTGCGTCCTCGTCCTCGTCGGCTCCATGATGGCCGCCGCCGTCACCGACATCAACTGG
AAGTACTTGGGCGACTCCGTCCCCGCCTTCCTCGCCATCGTCCTCATGCCCTTCACCTACTCCATCGCCAACGGC
CTCATCGGCGGCATCTGCACCTACATGGTCCTCAACTCCCTTGTCTGGCTCGTCAGCGTCGCCACCCGCGGCCGC
ATCGTCCCGCCCAACCTCGCCGACCGGGAGCCCTGGACCTGGCGCATCGCCGGCGGCTTCTTCCCGCCCTGGCTC
GTCCGCCTCTCCCGCGGCCAGAGACGTTTCTGGCGTGACGACCCCTCCTCCGCTGCCGCCGCCGACCACGAGTCC
AAGCTCCGCTCCGACCCGGGCCAGGCGACCGAGAGTGCGTCGGACCAGGGTCCGGCCGAGCGTTCAGACGAAAAG
GCCTAG
Transcript >Hirsu2|7193
ATGGGCTGGGCTCAGACGGTCAACGCGAGGGTGGCGGCCAGCCCCGTCGGCCGCTGGTTCCGGCTCGAGGGTTGT
GGTCATCCGCGCGCGCGCAAGGACGCCCGCTTCCTGACCGAGCTCCGCGCCGGGCTGGCCACCTTCTTCGCCATG
GCCTACATCGTGGCCGTCAACGCGTCCATCGTGGCCGACTCGGGCGGCCCCTGCGTCTGCGCCCGCGACGCCGCC
GACCCGGACTGCGACCGCGACGCCGCCTACCTGCTCTGCGTCCAGGACGTCAAGCGCGACGCCGTCACCGCCACC
GCCGCCGTCTCCGGCCTCGCCACCTTTTGCATGGGCCTGTTCGCCAACCTGCCCATCGGTCTCGCGCCCGGAATG
GGCCTCAACGCCTACTTCGCCTATACCGTCGTCGGCTACCACGGCAAGGGCCCCGTGCCGTACGAGGTGGCCCTG
ACGGCCATCTTCGTCGAGGGCTTCGTCTTCCTGGGCCTGGCGCTGCTGGGCCTGCGGCAGTGGCTGGCGCGGGCG
GTGCCGCACTCCATCAAGATGGCCACCGGCGTCGGCATCGGCCTCTTCCTCGCCCTCGTCGGCCTCACCTACGGC
GAGGGCATCGGCCTCGTCGTCGGCGGCGCCGCCACGCCGACCCAGCTGGCCGGCTGCCCGCGCGACCGCCTCGTC
GCCGGCGCCTGTCCGGACGACGCCAAGATGCGCAGCCCGACCCTGTGGCTGGCCGTCTTCGGCGGCGGCATCCTG
ACCGTCGTCCTGTCGCTGTACCGCGTCCGGGGCGCCGTCATCGCCGGCATCCTGCTCGTCAGCCTCGCCTCGTGG
CCGCGCCGCACCGCCGTCACCGCCTTCCCCGACACGCCCGTCGGCGATGCCGCCTTCGACTTCTTCCGCCGCGTC
GCCGCCTTCCACCCGATCCGCCGCATCCTCGCCGTCCAGCGCTGGGACGTCGGCCGCTACGCCGGCCAGTTCGGC
CTCGCCCTCGCCACCTTTCTCTACGTCGACGTCCTCGACTGCACCGGCACCCTCTACGGCATGGCCCGCTTCGCC
GGCCTCGTCGACCCCGTCACCGCCGACTTCGAGGGCTCCTCCGTCGCCTACATGGTCGACGCCCTCAGCATCTCC
GTCGGCGCCCTCCTCGGCCTGCCGCCCGTCACCGCCTTCGCCGAGTCCGGCGCCGGCATCTCCGACGGCGGCAAG
ACCGGCCTCACCGCCGTCGTCACCGGCCTCTGCTTCTTTCTCGCCGTCTTCTTCGCCCCCATCTTCGCCTCCATC
CCGCCCTGGGCCACCGGCTGCGTCCTCGTCCTCGTCGGCTCCATGATGGCCGCCGCCGTCACCGACATCAACTGG
AAGTACTTGGGCGACTCCGTCCCCGCCTTCCTCGCCATCGTCCTCATGCCCTTCACCTACTCCATCGCCAACGGC
CTCATCGGCGGCATCTGCACCTACATGGTCCTCAACTCCCTTGTCTGGCTCGTCAGCGTCGCCACCCGCGGCCGC
ATCGTCCCGCCCAACCTCGCCGACCGGGAGCCCTGGACCTGGCGCATCGCCGGCGGCTTCTTCCCGCCCTGGCTC
GTCCGCCTCTCCCGCGGCCAGAGACGTTTCTGGCGTGACGACCCCTCCTCCGCTGCCGCCGCCGACCACGAGTCC
AAGCTCCGCTCCGACCCGGGCCAGGCGACCGAGAGTGCGTCGGACCAGGGTCCGGCCGAGCGTTCAGACGAAAAG
GCCTAG
Gene >Hirsu2|7193
ATGGGCTGGGCTCAGACGGTCAACGCGAGGGTGGCGGCCAGCCCCGTCGGCCGCTGGTTCCGGCTCGAGGGTTGT
GGTCATGTAAGTGCATGTATCGTCGTCGCCTTCACCTCTCCGCCTCTCTTCTCTGTATCATCGTCGCCTTCACCT
CTCCGGCCCCCTTCTCTGTCTCTGGTCCCCTCCAGCCCAGTCCAACAAGCCACTAAGCACCGCTCCCTCGCCAGC
CGCGCGCGCGCAAGGACGCCCGCTTCCTGACCGAGCTCCGCGCCGGGCTGGCCACCTTCTTCGCCATGGCCTACA
TCGTGGCCGTCAACGCGTCCATCGTGGCCGACTCGGGCGGCCCCTGCGTCTGCGCCCGCGACGCCGCCGACCCGG
ACTGCGACCGCGACGCCGCCTACCTGCTCTGCGTCCAGGACGTCAAGCGCGACGCCGTCACCGCCACCGCCGCCG
TCTCCGGCCTCGCCACCTTTTGCATGGGCCTGTTCGCCAACCTGTGAGTTGCGCGTCCGGCGGCCCGTCTTGTTC
CTGCTGACCGGTCCGGCTTCGTCTGTCGGGCTCAGGCCCATCGGTCTCGCGCCCGGAATGGGTATGTCCTCTGTC
TCTTCTGTGCTCCTGTCCCTCCTGTAGTTGTCTGGGCGGGCCGTGCCGTCGTGGCAGAGGAGAGGAGAGACTGAC
GTGTCGTGCCCCCCCAAAGGCCTCAACGCCTACTTCGCCTATACCGTCGGTATGTCCCGTCCGCTTCTTCCCCGG
GCTTTCCCGTCCTTGGCTGACCGTCTGCCGCCGCGGCAACCAGTCGGCTACCACGGCAAGGGCCCCGTGCCGTAC
GAGGTGGCCCTGACGGCCATCTTCGTCGAGGGCTTCGTCTTCCTGGGCCTGGCGCTGCTGGGCCTGCGGCAGTGG
CTGGCGCGGGCGGTGCCGCACTCCATCAAGATGGCCACCGGCGTCGGCATCGGCCTCTTCCTCGCCCTCGTCGGC
CTCACCTACGGCGAGGGCATCGGCCTCGTCGTCGGCGGCGCCGCCACGCCGACCCAGCTGGCCGGCTGCCCGCGC
GACCGCCTCGTCGCCGGCGCCTGTCCGGACGACGCCAAGATGCGCAGCCCGACCCTGTGGCTGGCCGTCTTCGGC
GGCGGCATCCTGACCGTCGTCCTGTCGCTGTACCGCGTCCGGGGCGCCGTCATCGCCGGCATCCTGCTCGTCAGC
CTCGCCTCGTGGCCGCGCCGCACCGCCGTCACCGCCTTCCCCGACACGCCCGTCGGCGATGCCGCCTTCGACTTC
TTCCGCCGCGTCGCCGCCTTCCACCCGATCCGCCGCATCCTCGCCGTCCAGCGCTGGGACGTCGGCCGCTACGCC
GGCCAGTTCGGCCTCGCCCTCGCCACCTTTCTCTACGTCGACGTCCTCGACTGCACCGGCACCCTCTACGGCATG
GCCCGCTTCGCCGGCCTCGTCGACCCCGTCACCGCCGACTTCGAGGGCTCCTCCGTCGCCTACATGGTCGACGCC
CTCAGCATCTCCGTCGGCGCCCTCCTCGGCCTGCCGCCCGTCACCGCCTTCGCCGAGTCCGGCGCCGGCATCTCC
GACGGCGGCAAGACCGGCCTCACCGCCGTCGTCACCGGCCTCTGCTTCTTTCTCGCCGTCTTCTTCGCCCCCATC
TTCGCCTCCATCCCGCCCTGGGCCACCGGCTGCGTCCTCGTCCTCGTCGGCTCCATGATGGCCGCCGCCGTCACC
GACATCAACTGGAAGTACTTGGGCGACTCCGTCCCCGCCTTCCTCGCCATCGTCCTCATGCCCTTCACCTACTCC
ATCGCCAACGGCCTCATCGGCGGCATCTGCACCTACATGGTCCTCAACTCCCTTGTCTGGCTCGTCAGCGTCGCC
ACCCGCGGCCGCATCGTCCCGCCCAACCTCGCCGACCGGGAGCCCTGGACCTGGCGCATCGCCGGCGGCTTCTTC
CCGCCCTGGCTCGTCCGCCTCTCCCGCGGCCAGAGACGTTTCTGGCGTGACGACCCCTCCTCCGCTGCCGCCGCC
GACCACGAGTCCAAGCTCCGCTCCGACCCGGGCCAGGCGACCGAGAGTGCGTCGGACCAGGGTCCGGCCGAGCGT
TCAGACGAAAAGGCCTAG

© 2020 - Robin Ohm - Utrecht University - The Netherlands

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