Fungal Genomics

at Utrecht University

General Properties

Protein IDOphauG2|2135
Gene name
LocationContig_1722:650..2316
Strand-
Gene length (bp)1666
Transcript length (bp)1620
Coding sequence length (bp)1620
Protein length (aa) 540

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PFAM Domains

PFAM Domain ID Short name Long name E-value Start End
PF03901 Glyco_transf_22 Alg9-like mannosyltransferase family 4.1E-38 20 354

Swissprot hits

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Swissprot ID Swissprot Description Start End E-value
sp|P53730|ALG12_YEAST Dol-P-Man:Man(7)GlcNAc(2)-PP-Dol alpha-1,6-mannosyltransferase OS=Saccharomyces cerevisiae (strain ATCC 204508 / S288c) GN=ALG12 PE=1 SV=1 1 480 3.0E-73
sp|Q8VDB2|ALG12_MOUSE Dol-P-Man:Man(7)GlcNAc(2)-PP-Dol alpha-1,6-mannosyltransferase OS=Mus musculus GN=Alg12 PE=2 SV=2 4 409 4.0E-61
sp|A8MR93|ALG12_ARATH Dol-P-Man:Man(7)GlcNAc(2)-PP-Dol alpha-1,6-mannosyltransferase OS=Arabidopsis thaliana GN=ALG12 PE=1 SV=1 2 407 3.0E-60
sp|Q9USD4|ALG12_SCHPO Probable Dol-P-Man:Man(7)GlcNAc(2)-PP-Dol alpha-1,6-mannosyltransferase OS=Schizosaccharomyces pombe (strain 972 / ATCC 24843) GN=alg12 PE=3 SV=2 4 489 5.0E-59
sp|Q9BV10|ALG12_HUMAN Dol-P-Man:Man(7)GlcNAc(2)-PP-Dol alpha-1,6-mannosyltransferase OS=Homo sapiens GN=ALG12 PE=1 SV=1 6 406 1.0E-56
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Swissprot ID Swissprot Description Start End E-value
sp|P53730|ALG12_YEAST Dol-P-Man:Man(7)GlcNAc(2)-PP-Dol alpha-1,6-mannosyltransferase OS=Saccharomyces cerevisiae (strain ATCC 204508 / S288c) GN=ALG12 PE=1 SV=1 1 480 3.0E-73
sp|Q8VDB2|ALG12_MOUSE Dol-P-Man:Man(7)GlcNAc(2)-PP-Dol alpha-1,6-mannosyltransferase OS=Mus musculus GN=Alg12 PE=2 SV=2 4 409 4.0E-61
sp|A8MR93|ALG12_ARATH Dol-P-Man:Man(7)GlcNAc(2)-PP-Dol alpha-1,6-mannosyltransferase OS=Arabidopsis thaliana GN=ALG12 PE=1 SV=1 2 407 3.0E-60
sp|Q9USD4|ALG12_SCHPO Probable Dol-P-Man:Man(7)GlcNAc(2)-PP-Dol alpha-1,6-mannosyltransferase OS=Schizosaccharomyces pombe (strain 972 / ATCC 24843) GN=alg12 PE=3 SV=2 4 489 5.0E-59
sp|Q9BV10|ALG12_HUMAN Dol-P-Man:Man(7)GlcNAc(2)-PP-Dol alpha-1,6-mannosyltransferase OS=Homo sapiens GN=ALG12 PE=1 SV=1 6 406 1.0E-56
sp|Q9VH78|ALG12_DROME Probable Dol-P-Man:Man(7)GlcNAc(2)-PP-Dol alpha-1,6-mannosyltransferase OS=Drosophila melanogaster GN=CG8412 PE=2 SV=1 1 406 1.0E-56
sp|Q23361|ALG12_CAEEL Probable Dol-P-Man:Man(7)GlcNAc(2)-PP-Dol alpha-1,6-mannosyltransferase OS=Caenorhabditis elegans GN=ZC513.5 PE=1 SV=2 16 404 1.0E-52
sp|Q4V7R2|PIGB_XENLA GPI mannosyltransferase 3 OS=Xenopus laevis GN=pigb PE=2 SV=1 57 332 7.0E-11
sp|Q6FTY5|GPI10_CANGA GPI mannosyltransferase 3 OS=Candida glabrata (strain ATCC 2001 / CBS 138 / JCM 3761 / NBRC 0622 / NRRL Y-65) GN=GPI10 PE=3 SV=1 118 354 5.0E-09
sp|Q7SXZ1|PIGB_DANRE GPI mannosyltransferase 3 OS=Danio rerio GN=pigb PE=2 SV=1 83 324 2.0E-08
sp|Q9VZM5|PIGB_DROME GPI mannosyltransferase 3 OS=Drosophila melanogaster GN=CG12006 PE=2 SV=2 116 409 4.0E-08
sp|Q9JJQ0|PIGB_MOUSE GPI mannosyltransferase 3 OS=Mus musculus GN=Pigb PE=2 SV=2 86 337 5.0E-07
sp|Q75BG9|GPI10_ASHGO GPI mannosyltransferase 3 OS=Ashbya gossypii (strain ATCC 10895 / CBS 109.51 / FGSC 9923 / NRRL Y-1056) GN=GPI10 PE=3 SV=1 82 347 1.0E-06
sp|Q4WPG0|GPI10_ASPFU GPI mannosyltransferase 3 OS=Neosartorya fumigata (strain ATCC MYA-4609 / Af293 / CBS 101355 / FGSC A1100) GN=gpi10 PE=3 SV=1 159 382 1.0E-06
sp|P86936|GPI10_TRYB2 GPI mannosyltransferase 3 OS=Trypanosoma brucei brucei (strain 927/4 GUTat10.1) GN=GPI10 PE=3 SV=1 151 399 2.0E-06
sp|Q1LZA0|PIGB_BOVIN GPI mannosyltransferase 3 OS=Bos taurus GN=PIGB PE=2 SV=1 86 369 2.0E-06
sp|Q5AK24|GPI10_CANAL GPI mannosyltransferase 3 OS=Candida albicans (strain SC5314 / ATCC MYA-2876) GN=GPI10 PE=3 SV=1 84 321 3.0E-06
sp|Q6CAB8|GPI10_YARLI GPI mannosyltransferase 3 OS=Yarrowia lipolytica (strain CLIB 122 / E 150) GN=GPI10 PE=3 SV=1 84 338 3.0E-06
sp|Q92521|PIGB_HUMAN GPI mannosyltransferase 3 OS=Homo sapiens GN=PIGB PE=2 SV=1 86 324 5.0E-06
sp|P86935|GPI10_TRYBB GPI mannosyltransferase 3 OS=Trypanosoma brucei brucei GN=GPI10 PE=2 SV=1 151 399 5.0E-06
sp|Q9FZ49|ALG9_ARATH Dol-P-Man:Man(6)GlcNAc(2)-PP-Dol alpha-1,2-mannosyltransferase OS=Arabidopsis thaliana GN=ALG9 PE=1 SV=1 202 319 7.0E-06
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GO

GO Term Description Terminal node
GO:0016757 glycosyltransferase activity Yes
GO:0003674 molecular_function No
GO:0003824 catalytic activity No
GO:0016740 transferase activity No

SignalP

[Help with interpreting these statistics]
SignalP signal predicted Location
(based on Ymax)
D score
(significance: > 0.45)
Yes 1 - 17 0.45

Transmembrane Domains

Domain # Start End Length
1 59 78 19
2 83 100 17
3 105 127 22
4 137 154 17
5 161 183 22
6 193 215 22
7 228 245 17
8 255 277 22
9 282 299 17
10 304 326 22
11 333 355 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 >OphauG2|2135
MDSLMVAMALLHLVASPYTKVEESFNLQAAHDIMVYGTPPDPSHSYDHFVFAGAVPRTFVGAALLAALAKPFVWA
AGFHHAQFVVRALLAAANAASLVLLRRTLLHAAGAPAATWWALLMLGQFHVWYYLSRTLPNMFAFGLTTTAFACL
LSSRRAAPQALGLLALAAAVFRAELAILLAATGLHLLATRTTSLPVMARVVAMATALGLALSLPLDSYFWQTWLW
PELWAFHFNALLGSSSLWGTEPWHYYLTSALPRLLLNPLALPLACLAVGHVATRPKALSLLVPSALYLALYSLQP
HKETRFVLYLVPPLTCLAAMGAALLSTRRHKSLLYRLATLLLAASLVSCFAASLAMLALSSLNYPGGDALAQLRA
LARHQSPASGPPLRVHADVLTCMTGLTLFGQNPDGLPLALYPAHGLDALSHVQQPLLLFDRTEDAAQLAQPDFWL
AFDYALAENPRVPLGAWDIVGVVAGFDGMQVLGPGTPDHHHQHRLLGRGAHVAALQHALRPWTGGWWLGPRMAPR
IYILKRRPGPIAAF*
Coding >OphauG2|2135
ATGGACAGCCTCATGGTGGCCATGGCACTGCTGCACCTGGTAGCTTCGCCCTACACAAAGGTGGAAGAATCCTTC
AACCTGCAAGCCGCACACGACATCATGGTTTACGGCACGCCGCCCGACCCAAGCCACTCCTACGACCACTTTGTC
TTTGCCGGCGCCGTCCCACGCACCTTTGTCGGCGCCGCCCTGCTTGCCGCCCTGGCCAAGCCGTTTGTGTGGGCT
GCCGGCTTCCACCACGCCCAGTTTGTCGTGCGCGCTCTGCTGGCCGCTGCCAATGCTGCCAGCTTGGTCCTGCTG
CGCCGCACCCTGCTTCACGCCGCCGGAGCCCCAGCCGCCACCTGGTGGGCGCTCCTGATGCTGGGCCAGTTCCAC
GTCTGGTACTATCTATCGCGCACCCTGCCCAACATGTTTGCCTTTGGCCTGACCACAACGGCCTTTGCCTGTTTG
CTGTCGTCCAGACGCGCCGCCCCCCAAGCCCTTGGCCTGCTGGCCCTGGCCGCCGCCGTCTTCCGCGCCGAGCTG
GCCATTCTGCTGGCCGCCACCGGCCTCCATCTGCTCGCCACCCGCACAACCTCCCTGCCAGTCATGGCCCGCGTC
GTCGCCATGGCCACCGCCCTTGGCCTGGCCCTCTCCCTGCCCCTCGACTCGTACTTTTGGCAGACTTGGCTGTGG
CCCGAGCTGTGGGCCTTTCACTTCAACGCCCTCTTGGGCTCCTCGTCGCTCTGGGGCACCGAGCCCTGGCACTAC
TACCTGACGTCGGCTCTGCCCCGTCTGCTGCTCAACCCGCTTGCGCTGCCTCTTGCTTGCCTGGCCGTGGGCCAT
GTGGCCACGAGGCCCAAGGCCCTGTCGCTGCTTGTCCCCAGCGCGCTCTACCTGGCCCTCTACTCGCTGCAGCCG
CACAAGGAGACGCGCTTCGTCTTGTACCTGGTGCCGCCCCTGACTTGCCTTGCCGCCATGGGCGCAGCCCTGCTT
AGCACACGCCGCCACAAGTCGCTCTTGTACCGCCTCGCCACCCTGCTCCTCGCCGCCTCGCTCGTGTCCTGCTTC
GCCGCCAGCCTGGCCATGCTCGCCCTCTCCTCCCTCAACTACCCGGGCGGCGATGCCCTGGCCCAGCTCCGCGCG
CTGGCCCGCCACCAGTCGCCAGCCTCTGGCCCGCCCCTCCGCGTCCACGCCGATGTCTTGACGTGCATGACGGGC
CTGACCCTCTTTGGCCAGAACCCAGACGGCCTGCCCCTTGCCCTCTACCCTGCCCATGGCCTCGATGCCTTGTCC
CACGTCCAACAGCCCCTCTTGCTCTTTGACAGGACCGAAGATGCCGCCCAGCTGGCCCAGCCAGACTTTTGGCTT
GCCTTTGACTACGCCCTGGCCGAGAATCCCCGAGTCCCCCTCGGCGCCTGGGACATTGTCGGCGTCGTTGCCGGC
TTTGACGGCATGCAAGTCCTTGGCCCGGGCACGCCCGACCACCACCACCAGCACCGCCTGCTCGGCCGCGGCGCC
CATGTTGCCGCTCTCCAGCACGCCCTTCGCCCTTGGACCGGCGGCTGGTGGCTTGGCCCGCGCATGGCACCGCGC
ATTTACATTCTCAAGCGTCGCCCTGGGCCCATTGCCGCCTTTTAA
Transcript >OphauG2|2135
ATGGACAGCCTCATGGTGGCCATGGCACTGCTGCACCTGGTAGCTTCGCCCTACACAAAGGTGGAAGAATCCTTC
AACCTGCAAGCCGCACACGACATCATGGTTTACGGCACGCCGCCCGACCCAAGCCACTCCTACGACCACTTTGTC
TTTGCCGGCGCCGTCCCACGCACCTTTGTCGGCGCCGCCCTGCTTGCCGCCCTGGCCAAGCCGTTTGTGTGGGCT
GCCGGCTTCCACCACGCCCAGTTTGTCGTGCGCGCTCTGCTGGCCGCTGCCAATGCTGCCAGCTTGGTCCTGCTG
CGCCGCACCCTGCTTCACGCCGCCGGAGCCCCAGCCGCCACCTGGTGGGCGCTCCTGATGCTGGGCCAGTTCCAC
GTCTGGTACTATCTATCGCGCACCCTGCCCAACATGTTTGCCTTTGGCCTGACCACAACGGCCTTTGCCTGTTTG
CTGTCGTCCAGACGCGCCGCCCCCCAAGCCCTTGGCCTGCTGGCCCTGGCCGCCGCCGTCTTCCGCGCCGAGCTG
GCCATTCTGCTGGCCGCCACCGGCCTCCATCTGCTCGCCACCCGCACAACCTCCCTGCCAGTCATGGCCCGCGTC
GTCGCCATGGCCACCGCCCTTGGCCTGGCCCTCTCCCTGCCCCTCGACTCGTACTTTTGGCAGACTTGGCTGTGG
CCCGAGCTGTGGGCCTTTCACTTCAACGCCCTCTTGGGCTCCTCGTCGCTCTGGGGCACCGAGCCCTGGCACTAC
TACCTGACGTCGGCTCTGCCCCGTCTGCTGCTCAACCCGCTTGCGCTGCCTCTTGCTTGCCTGGCCGTGGGCCAT
GTGGCCACGAGGCCCAAGGCCCTGTCGCTGCTTGTCCCCAGCGCGCTCTACCTGGCCCTCTACTCGCTGCAGCCG
CACAAGGAGACGCGCTTCGTCTTGTACCTGGTGCCGCCCCTGACTTGCCTTGCCGCCATGGGCGCAGCCCTGCTT
AGCACACGCCGCCACAAGTCGCTCTTGTACCGCCTCGCCACCCTGCTCCTCGCCGCCTCGCTCGTGTCCTGCTTC
GCCGCCAGCCTGGCCATGCTCGCCCTCTCCTCCCTCAACTACCCGGGCGGCGATGCCCTGGCCCAGCTCCGCGCG
CTGGCCCGCCACCAGTCGCCAGCCTCTGGCCCGCCCCTCCGCGTCCACGCCGATGTCTTGACGTGCATGACGGGC
CTGACCCTCTTTGGCCAGAACCCAGACGGCCTGCCCCTTGCCCTCTACCCTGCCCATGGCCTCGATGCCTTGTCC
CACGTCCAACAGCCCCTCTTGCTCTTTGACAGGACCGAAGATGCCGCCCAGCTGGCCCAGCCAGACTTTTGGCTT
GCCTTTGACTACGCCCTGGCCGAGAATCCCCGAGTCCCCCTCGGCGCCTGGGACATTGTCGGCGTCGTTGCCGGC
TTTGACGGCATGCAAGTCCTTGGCCCGGGCACGCCCGACCACCACCACCAGCACCGCCTGCTCGGCCGCGGCGCC
CATGTTGCCGCTCTCCAGCACGCCCTTCGCCCTTGGACCGGCGGCTGGTGGCTTGGCCCGCGCATGGCACCGCGC
ATTTACATTCTCAAGCGTCGCCCTGGGCCCATTGCCGCCTTTTAA
Gene >OphauG2|2135
ATGGACAGCCTCATGGTGGCCATGGCACTGCTGCACCTGGTAGCTTCGCCCTACACAAAGGTGGAAGAATCCTTC
AACCTGCAAGCCGCACACGACATCATGGTTTACGGCACGCCGCCCGACCCAAGCCACTCCTACGACCACTTTGTC
TTTGCCGGCGCCGTCCCACGCACCTTTGTCGGCGCCGCCCTGCTTGCCGCCCTGGCCAAGCCGTTTGTGTGGGCT
GCCGGCTTCCACCACGCCCAGTTTGTCGTGCGCGCTCTGCTGGCCGCTGCCAATGCTGCCAGCTTGGTCCTGCTG
CGCCGCACCCTGCTTCACGCCGCCGGAGCCCCAGCCGCCACCTGGTGGGCGCTCCTGATGCTGGGCCAGTTCCAC
GTCTGGTACTATCTATCGCGCACCCTGCCCAACATGTTTGCCTTTGGCCTGAGTGCGTGTCGCATGTGCCTGTCT
GTGTCGCTGAGCTGACTGGCCAGCCACAACGGCCTTTGCCTGTTTGCTGTCGTCCAGACGCGCCGCCCCCCAAGC
CCTTGGCCTGCTGGCCCTGGCCGCCGCCGTCTTCCGCGCCGAGCTGGCCATTCTGCTGGCCGCCACCGGCCTCCA
TCTGCTCGCCACCCGCACAACCTCCCTGCCAGTCATGGCCCGCGTCGTCGCCATGGCCACCGCCCTTGGCCTGGC
CCTCTCCCTGCCCCTCGACTCGTACTTTTGGCAGACTTGGCTGTGGCCCGAGCTGTGGGCCTTTCACTTCAACGC
CCTCTTGGGCTCCTCGTCGCTCTGGGGCACCGAGCCCTGGCACTACTACCTGACGTCGGCTCTGCCCCGTCTGCT
GCTCAACCCGCTTGCGCTGCCTCTTGCTTGCCTGGCCGTGGGCCATGTGGCCACGAGGCCCAAGGCCCTGTCGCT
GCTTGTCCCCAGCGCGCTCTACCTGGCCCTCTACTCGCTGCAGCCGCACAAGGAGACGCGCTTCGTCTTGTACCT
GGTGCCGCCCCTGACTTGCCTTGCCGCCATGGGCGCAGCCCTGCTTAGCACACGCCGCCACAAGTCGCTCTTGTA
CCGCCTCGCCACCCTGCTCCTCGCCGCCTCGCTCGTGTCCTGCTTCGCCGCCAGCCTGGCCATGCTCGCCCTCTC
CTCCCTCAACTACCCGGGCGGCGATGCCCTGGCCCAGCTCCGCGCGCTGGCCCGCCACCAGTCGCCAGCCTCTGG
CCCGCCCCTCCGCGTCCACGCCGATGTCTTGACGTGCATGACGGGCCTGACCCTCTTTGGCCAGAACCCAGACGG
CCTGCCCCTTGCCCTCTACCCTGCCCATGGCCTCGATGCCTTGTCCCACGTCCAACAGCCCCTCTTGCTCTTTGA
CAGGACCGAAGATGCCGCCCAGCTGGCCCAGCCAGACTTTTGGCTTGCCTTTGACTACGCCCTGGCCGAGAATCC
CCGAGTCCCCCTCGGCGCCTGGGACATTGTCGGCGTCGTTGCCGGCTTTGACGGCATGCAAGTCCTTGGCCCGGG
CACGCCCGACCACCACCACCAGCACCGCCTGCTCGGCCGCGGCGCCCATGTTGCCGCTCTCCAGCACGCCCTTCG
CCCTTGGACCGGCGGCTGGTGGCTTGGCCCGCGCATGGCACCGCGCATTTACATTCTCAAGCGTCGCCCTGGGCC
CATTGCCGCCTTTTAA

© 2022 - Robin Ohm - Utrecht University - The Netherlands

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