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Plant Transcription
Factor Database
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Transcription Factor Information
Basic
Information? help
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TF ID |
AT5G07580.1 |
Organism |
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Taxonomic ID |
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Taxonomic Lineage |
cellular organisms; Eukaryota; Viridiplantae; Streptophyta; Streptophytina; Embryophyta; Tracheophyta; Euphyllophyta; Spermatophyta; Magnoliophyta; Mesangiospermae; eudicotyledons; Gunneridae; Pentapetalae; rosids; malvids; Brassicales; Brassicaceae; Camelineae; Arabidopsis
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Family |
ERF |
Protein Properties |
Length: 274aa MW: 31159.9 Da PI: 5.6601 |
Description |
ERF family protein |
Gene Model |
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Signature Domain? help Back to Top |
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No. |
Domain |
Score |
E-value |
Start |
End |
HMM Start |
HMM End |
1 | AP2 | 51.4 | 2.6e-16 | 176 | 226 | 2 | 55 |
AP2 2 gykGVrwdkkrgrWvAeIrdpsengkrkrfslgkfgtaeeAakaaiaarkkleg 55
+y+GVr+++ +g+++AeIrdp + k r++lg+f + +Aa+a++ a+ kl+g
AT5G07580.1 176 HYRGVRRRP-WGKFAAEIRDPAK--KGSRIWLGTFESDVDAARAYDCAAFKLRG 226
7********.**********954..34**********99*************98 PP
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Gene Ontology ? help Back to Top |
GO Term |
GO Category |
GO Description |
GO:0006355 | Biological Process | regulation of transcription, DNA-templated |
GO:0009409 | Biological Process | response to cold |
GO:0009414 | Biological Process | response to water deprivation |
GO:0009737 | Biological Process | response to abscisic acid |
GO:0009873 | Biological Process | ethylene-activated signaling pathway |
GO:1902074 | Biological Process | response to salt |
GO:0005634 | Cellular Component | nucleus |
GO:0003677 | Molecular Function | DNA binding |
GO:0003700 | Molecular Function | transcription factor activity, sequence-specific DNA binding |
Sequence ? help Back to Top |
Protein Sequence Length: 274 aa
Download sequence Send
to blast |
MTPSLKPLRE RQNHSFFFVS LPHPWLLKSC DYLLVSFLFS FPLLYKNQNI HSFCSIITCR 60 FFLSFVKMAS FEESSDLEAI QSHLLEDLLV CDGFMGDFDF DASFVSGLWC IEPHVPKQEP 120 DSPVLDPDSF VNEFLQVEGE SSSSSSPELN SSSSTYETDQ SVKKAERFEE EVDARHYRGV 180 RRRPWGKFAA EIRDPAKKGS RIWLGTFESD VDAARAYDCA AFKLRGRKAV LNFPLDAGKY 240 EAPANSGRKR KRSDVHEELQ RTQSNSSSSS CDAF
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Functional Description ? help
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Source |
Description |
TAIR | encodes a member of the ERF (ethylene response factor) subfamily B-3 of ERF/AP2 transcription factor family. The protein contains one AP2 domain. There are 18 members in this subfamily including ATERF-1, ATERF-2, AND ATERF-5. |
UniProt | Probably acts as a transcriptional activator. Binds to the GCC-box pathogenesis-related promoter element. May be involved in the regulation of gene expression by stress factors and by components of stress signal transduction pathways (By similarity). {ECO:0000250}. |
Function -- GeneRIF ? help
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- We propose a model whereby vascular cell division is regulated both by PXY signalling and ethylene/ERF signalling
[PMID: 23166504] - DEWAX2-mediated transcriptional repression may contribute to the total wax load in Arabidopsis leaves.[DEWAX2]
[PMID: 29425344]
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Annotation --
Nucleotide ? help
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Source |
Hit ID |
E-value |
Description |
GenBank | AB010070 | 0.0 | AB010070.1 Arabidopsis thaliana genomic DNA, chromosome 5, P1 clone:MBK20. |
GenBank | AL163912 | 0.0 | AL163912.1 Arabidopsis thaliana DNA chromosome 5, BAC clone T2I1 (ESSA project). |
GenBank | CP002688 | 0.0 | CP002688.1 Arabidopsis thaliana chromosome 5 sequence. |
Publications
? help Back to Top |
- Riechmann JL, et al.
Arabidopsis transcription factors: genome-wide comparative analysis among eukaryotes. Science, 2000. 290(5499): p. 2105-10 [PMID:11118137] - Gutierrez RA,Ewing RM,Cherry JM,Green PJ
Identification of unstable transcripts in Arabidopsis by cDNA microarray analysis: rapid decay is associated with a group of touch- and specific clock-controlled genes. Proc. Natl. Acad. Sci. U.S.A., 2002. 99(17): p. 11513-8 [PMID:12167669] - Schein M,Yang Z,Mitchell-Olds T,Schmid KJ
Rapid evolution of a pollen-specific oleosin-like gene family from Arabidopsis thaliana and closely related species. Mol. Biol. Evol., 2004. 21(4): p. 659-69 [PMID:14739246] - Fiebig A,Kimport R,Preuss D
Comparisons of pollen coat genes across Brassicaceae species reveal rapid evolution by repeat expansion and diversification. Proc. Natl. Acad. Sci. U.S.A., 2004. 101(9): p. 3286-91 [PMID:14970339] - Liu F, et al.
Global transcription profiling reveals comprehensive insights into hypoxic response in Arabidopsis. Plant Physiol., 2005. 137(3): p. 1115-29 [PMID:15734912] - Ehlting J, et al.
Global transcript profiling of primary stems from Arabidopsis thaliana identifies candidate genes for missing links in lignin biosynthesis and transcriptional regulators of fiber differentiation. Plant J., 2005. 42(5): p. 618-40 [PMID:15918878] - Mazzella MA, et al.
Phytochrome control of the Arabidopsis transcriptome anticipates seedling exposure to light. Plant Cell, 2005. 17(9): p. 2507-16 [PMID:16024587] - Branco-Price C,Kawaguchi R,Ferreira RB,Bailey-Serres J
Genome-wide analysis of transcript abundance and translation in Arabidopsis seedlings subjected to oxygen deprivation. Ann. Bot., 2005. 96(4): p. 647-60 [PMID:16081496] - Wang J, et al.
Genomewide nonadditive gene regulation in Arabidopsis allotetraploids. Genetics, 2006. 172(1): p. 507-17 [PMID:16172500] - Pischke MS,Huttlin EL,Hegeman AD,Sussman MR
A transcriptome-based characterization of habituation in plant tissue culture. Plant Physiol., 2006. 140(4): p. 1255-78 [PMID:16489130] - Truman W,de Zabala MT,Grant M
Type III effectors orchestrate a complex interplay between transcriptional networks to modify basal defence responses during pathogenesis and resistance. Plant J., 2006. 46(1): p. 14-33 [PMID:16553893] - van der Graaff E, et al.
Transcription analysis of arabidopsis membrane transporters and hormone pathways during developmental and induced leaf senescence. Plant Physiol., 2006. 141(2): p. 776-92 [PMID:16603661] - Broekgaarden C, et al.
Genotypic variation in genome-wide transcription profiles induced by insect feeding: Brassica oleracea--Pieris rapae interactions. BMC Genomics, 2007. 8: p. 239 [PMID:17640338] - Etchells JP,Provost CM,Turner SR
Plant vascular cell division is maintained by an interaction between PXY and ethylene signalling. PLoS Genet., 2012. 8(11): p. e1002997 [PMID:23166504] - Kim H,Go YS,Suh MC
DEWAX2 Transcription Factor Negatively Regulates Cuticular Wax Biosynthesis in Arabidopsis Leaves. Plant Cell Physiol., 2018. 59(5): p. 966-977 [PMID:29425344] - Riechmann JL,Meyerowitz EM
The AP2/EREBP family of plant transcription factors. Biol. Chem., 1998. 379(6): p. 633-46 [PMID:9687012]
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