Fungal Genomics

at Utrecht University

General Properties

Protein IDPro_DTO377G3_2|g936.t1
Gene name
Locationscaffold_01:2482339..2483389
Strand+
Gene length (bp)1050
Transcript length (bp)882
Coding sequence length (bp)882
Protein length (aa) 294

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PFAM Domains

PFAM Domain ID Short name Long name E-value Start End
PF00583 Acetyltransf_1 Acetyltransferase (GNAT) family 5.5E-15 118 264
PF13673 Acetyltransf_10 Acetyltransferase (GNAT) domain 3.2E-14 196 285
PF13508 Acetyltransf_7 Acetyltransferase (GNAT) domain 2.5E-10 196 265

GO

GO Term Description Terminal node
GO:0008080 N-acetyltransferase activity Yes
GO:0016410 N-acyltransferase activity No
GO:0016407 acetyltransferase activity No
GO:0016740 transferase activity No
GO:0016746 acyltransferase activity No
GO:0016747 acyltransferase activity, transferring groups other than amino-acyl groups No
GO:0003674 molecular_function No
GO:0003824 catalytic activity No

SignalP

[Help with interpreting these statistics]
SignalP signal predicted Location
(based on Ymax)
D score
(significance: > 0.45)
No 1 - 52 0.45

Transmembrane Domains

(None)

Transcription Factor Class

(None)

Expression data

Analysis 1: Genome-wide gene expression in conidia of Penicillium roqueforti during growth at various temperatures and for various amounts of time. Published in Punt et al., 2020.

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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 >Pro_DTO377G3_2|g936.t1
MSDQSEYLSDSMSGQDNGLRPLSNADDLSLGNPNSDLARIMSRAGIQLANGFPVDDDEDDDEDELDEDYSAVDQD
DDANDFPYWFRRPPSHNRTKLDELHPFVQLLSISNVEDCVKVEEAFPEQERCSPDKFRYRLSRCPELSLGLFTLP
LLAEGETKPRPTLVGHIIATRTSEPIVTDRSMQLPTNWKNERWSIEDGQAVGHEEGGRTIAIHSLAVDPKHQGKQ
VGSTLMKSYIHRIREAQIADRIAIIVHDHLIPFYESFGFESHGPSKCQFGGGNWVDMILEFGPEPLEE*
Coding >Pro_DTO377G3_2|g936.t1
ATGTCCGATCAGAGCGAATACCTCTCCGACTCCATGTCCGGCCAGGACAACGGGCTCAGGCCGTTGTCTAATGCG
GACGACTTGTCTCTCGGAAACCCTAACAGCGATTTGGCTCGTATCATGAGCCGTGCTGGCATTCAATTAGCCAAT
GGATTTCCAGTCGATGACGACGAGGACGACGACGAGGACGAGCTGGATGAGGACTATTCTGCCGTTGATCAGGAT
GACGACGCAAACGATTTCCCATACTGGTTCCGCCGCCCACCCTCCCACAACCGCACAAAGCTGGATGAGCTGCAT
CCTTTTGTTCAATTGCTCTCCATATCTAATGTGGAAGATTGTGTGAAAGTGGAGGAAGCTTTCCCCGAGCAGGAG
CGTTGCTCTCCCGATAAGTTCCGCTACCGTCTCAGCAGATGCCCCGAGCTCAGCCTGGGCCTCTTCACTCTTCCT
TTGCTCGCAGAAGGAGAAACAAAACCTCGCCCAACGCTCGTCGGACACATCATTGCCACTCGCACTTCAGAGCCC
ATTGTGACAGATCGGTCGATGCAACTTCCGACCAACTGGAAAAACGAGCGTTGGTCCATTGAGGACGGACAAGCT
GTTGGTCACGAAGAAGGCGGTCGCACTATTGCCATTCATTCGCTTGCTGTGGACCCAAAGCATCAGGGCAAGCAG
GTCGGAAGCACATTGATGAAGTCATATATCCACCGTATTAGAGAGGCCCAGATTGCTGATCGCATCGCGATCATT
GTACACGATCACCTGATCCCCTTCTACGAGTCATTTGGCTTCGAGTCCCATGGCCCTAGCAAGTGCCAGTTCGGT
GGGGGTAATTGGGTCGATATGATCTTGGAGTTTGGCCCCGAGCCTCTTGAGGAGTAG
Transcript >Pro_DTO377G3_2|g936.t1
ATGTCCGATCAGAGCGAATACCTCTCCGACTCCATGTCCGGCCAGGACAACGGGCTCAGGCCGTTGTCTAATGCG
GACGACTTGTCTCTCGGAAACCCTAACAGCGATTTGGCTCGTATCATGAGCCGTGCTGGCATTCAATTAGCCAAT
GGATTTCCAGTCGATGACGACGAGGACGACGACGAGGACGAGCTGGATGAGGACTATTCTGCCGTTGATCAGGAT
GACGACGCAAACGATTTCCCATACTGGTTCCGCCGCCCACCCTCCCACAACCGCACAAAGCTGGATGAGCTGCAT
CCTTTTGTTCAATTGCTCTCCATATCTAATGTGGAAGATTGTGTGAAAGTGGAGGAAGCTTTCCCCGAGCAGGAG
CGTTGCTCTCCCGATAAGTTCCGCTACCGTCTCAGCAGATGCCCCGAGCTCAGCCTGGGCCTCTTCACTCTTCCT
TTGCTCGCAGAAGGAGAAACAAAACCTCGCCCAACGCTCGTCGGACACATCATTGCCACTCGCACTTCAGAGCCC
ATTGTGACAGATCGGTCGATGCAACTTCCGACCAACTGGAAAAACGAGCGTTGGTCCATTGAGGACGGACAAGCT
GTTGGTCACGAAGAAGGCGGTCGCACTATTGCCATTCATTCGCTTGCTGTGGACCCAAAGCATCAGGGCAAGCAG
GTCGGAAGCACATTGATGAAGTCATATATCCACCGTATTAGAGAGGCCCAGATTGCTGATCGCATCGCGATCATT
GTACACGATCACCTGATCCCCTTCTACGAGTCATTTGGCTTCGAGTCCCATGGCCCTAGCAAGTGCCAGTTCGGT
GGGGGTAATTGGGTCGATATGATCTTGGAGTTTGGCCCCGAGCCTCTTGAGGAGTAG
Gene >Pro_DTO377G3_2|g936.t1
ATGTCCGATCAGAGCGAATACCTCTCCGACTCCATGTCCGGCCAGGACAACGGGCTCAGGCCGTTGTCTAATGCG
GACGACTTGTCTCTCGGAAACCCTAACAGCGATTTGGCTCGTATCATGAGCCGTGCTGGCATTCAATTAGCCAAT
GGATTTCCAGTCGATGACGACGAGGACGACGACGAGGACGAGCTGGATGAGGACTATTCTGCCGTTGATCAGGAT
GACGACGCAAACGATTTCCCATACTGGTTCCGCCGCCCACCCTCCCACAACCGCACAAAGCTGGATGAGCTGCAT
CCTTTTGTTCAATTGCTCTCCATATCTAATGTGGAAGATTGTGTGAAAGTGGAGGAAGCTTTCCCCGAGCAGGAG
CGTTGCTCTCCCGATAAGGTATGGCTACCCGGATTCAATTACACCATAGAGCATCAATTCAACATTCAAATCATC
TCACTTGATATGAATTGATGCGACTTCAGACGGATGGAGACTTCATTGCTAATAATTTCATAGTTCCGCTACCGT
CTCAGCAGATGCCCCGAGCTCAGCCTGGGCCTCTTCACTCTTCCTTTGCTCGCAGAAGGAGAAACAAAACCTCGC
CCAACGCTCGTCGGACACATCATTGCCACTCGCACTTCAGAGCCCATTGTGACAGATCGGTCGATGCAACTTCCG
ACCAACTGGAAAAACGAGCGTTGGTCCATTGAGGACGGACAAGCTGTTGGTCACGAAGAAGGCGGTCGCACTATT
GCCATTCATTCGCTTGCTGTGGACCCAAAGCATCAGGGCAAGCAGGTCGGAAGCACATTGATGAAGTCATATATC
CACCGTATTAGAGAGGCCCAGATTGCTGATCGCATCGCGATCATTGTACACGATCACCTGATCCCCTTCTACGAG
TCATTTGGCTTCGAGTCCCATGGCCCTAGCAAGTGCCAGTTCGGTGGGGGTAATTGGGTCGATATGGTATGTTCT
CTTTTTAACTGTCAGCAAATATATACTGACCCTAAATAGATCTTGGAGTTTGGCCCCGAGCCTCTTGAGGAGTAG

© 2022 - Robin Ohm - Utrecht University - The Netherlands

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