PlantTFDB
PlantRegMap/PlantTFDB v5.0
Plant Transcription Factor Database
Transcription Factor Information
Basic Information | Signature Domain | Sequence | 
Basic Information? help Back to Top
TF ID GSBRNA2T00099796001
Common NameGSBRNA2T00099796001
Organism
Taxonomic ID
Taxonomic Lineage
cellular organisms; Eukaryota; Viridiplantae; Streptophyta; Streptophytina; Embryophyta; Tracheophyta; Euphyllophyta; Spermatophyta; Magnoliophyta; Mesangiospermae; eudicotyledons; Gunneridae; Pentapetalae; rosids; malvids; Brassicales; Brassicaceae; Brassiceae; Brassica
Family WRKY
Protein Properties Length: 285aa    MW: 31491.5 Da    PI: 9.6936
Description WRKY family protein
Gene Model
Gene Model ID Type Source Coding Sequence
GSBRNA2T00099796001genomeGenoscopeView CDS
Signature Domain? help Back to Top
Signature Domain
No. Domain Score E-value Start End HMM Start HMM End
1WRKY94.76.5e-30206263359
                          -SS-EEEEEEE--TT-SS-EEEEEE-ST.T---EEEEEE-SSSTTEEEEEEES--SS- CS
                 WRKY   3 DgynWrKYGqKevkgsefprsYYrCtsa.gCpvkkkversaedpkvveitYegeHnhe 59 
                          D+y+WrKYGqK++kgs++pr+YY+C++  +Cp++k+ver+ +dp+++++tYe eH+h+
  GSBRNA2T00099796001 206 DEYSWRKYGQKPIKGSPHPRGYYKCSTFkECPARKHVERALDDPSMLIVTYEWEHDHN 263
                          9************************8766****************************7 PP

Protein Features ? help Back to Top
3D Structure
Database Entry ID E-value Start End InterPro ID Description
PfamPF105333.4E-17158202IPR018872Zn-cluster domain
Gene3DG3DSA:2.20.25.805.3E-31192263IPR003657WRKY domain
PROSITE profilePS5081128.885199265IPR003657WRKY domain
SuperFamilySSF1182908.24E-26202264IPR003657WRKY domain
SMARTSM007741.4E-34204264IPR003657WRKY domain
PfamPF031066.3E-26206262IPR003657WRKY domain
Gene Ontology ? help Back to Top
GO Term GO Category GO Description
GO:0006355Biological Processregulation of transcription, DNA-templated
GO:0003700Molecular Functiontranscription factor activity, sequence-specific DNA binding
GO:0043565Molecular Functionsequence-specific DNA binding
Sequence ? help Back to Top
Protein Sequence    Length: 285 aa     Download sequence    Send to blast
MAVDLMRFPK MDDQKAIQEA ASQGLQSMEH LIRVLSTNPP ERNNNVDCSE ITDFTVSKFK  60
TVISLLNRTG HARFRRGPVA SPQKHQSQIA KPEAAPVVVS QPQPSITLDF TKPTMDFAKE  120
NFSVSLNSSY MSSAITGDGS VSKGSSIFLA SQPVNSSEHE HSENFSGKIS GSGHGKCHCK  180
KSRKNKVKRT IRVPAISSKI ADIPPDEYSW RKYGQKPIKG SPHPRGYYKC STFKECPARK  240
HVERALDDPS MLIVTYEWEH DHNPSAMQQN VSSPGVNDFV FNSA*
3D Structure ? help Back to Top
Structure
PDB ID Evalue Query Start Query End Hit Start Hit End Description
2ayd_A2e-19192263272WRKY transcription factor 1
Search in ModeBase
Expression -- UniGene ? help Back to Top
UniGene ID E-value Expressed in
Bna.91061e-172leaf| microspore-derived embryo| root| seed
Expression -- Description ? help Back to Top
Source Description
UniprotTISSUE SPECIFICITY: In young, mature and senescent leaves. {ECO:0000269|PubMed:11722756}.
Functional Description ? help Back to Top
Source Description
UniProtTranscription factor. Interacts specifically with the W box (5'-(T)TGAC[CT]-3'), a frequently occurring elicitor-responsive cis-acting element (By similarity). Regulates rhizobacterium B.cereus AR156-induced systemic resistance (ISR) to P.syringae pv. tomato DC3000, probably by activating the jasmonic acid (JA)- signaling pathway (PubMed:26433201). {ECO:0000250, ECO:0000269|PubMed:26433201}.
Cis-element ? help Back to Top
SourceLink
PlantRegMapGSBRNA2T00099796001
Regulation -- Description ? help Back to Top
Source Description
UniProtINDUCTION: Strongly during leaf senescence (PubMed:11722756). Repressed by rhizobacterium B.cereus AR156 in leaves, and to a lower extent, by P.fluorescens WCS417r (PubMed:26433201). {ECO:0000269|PubMed:11722756, ECO:0000269|PubMed:26433201}.
Regulation -- PlantRegMap ? help Back to Top
Source Upstream Regulator Target Gene
PlantRegMapRetrieve-
Annotation -- Nucleotide ? help Back to Top
Source Hit ID E-value Description
GenBankAK3527961e-110AK352796.1 Thellungiella halophila mRNA, complete cds, clone: RTFL01-05-N09.
Annotation -- Protein ? help Back to Top
Source Hit ID E-value Description
RefseqXP_013593365.10.0PREDICTED: probable WRKY transcription factor 11 isoform X1
SwissprotQ9SV151e-159WRK11_ARATH; Probable WRKY transcription factor 11
TrEMBLA0A0D3DH770.0A0A0D3DH77_BRAOL; Uncharacterized protein
TrEMBLA0A3P6F8R60.0A0A3P6F8R6_BRAOL; Uncharacterized protein
STRINGBo7g115250.10.0(Brassica oleracea)
Orthologous Group ? help Back to Top
LineageOrthologous Group IDTaxa NumberGene Number
MalvidsOGEM25082772
Best hit in Arabidopsis thaliana ? help Back to Top
Hit ID E-value Description
AT4G31550.11e-153WRKY DNA-binding protein 11
Publications ? help Back to Top
  1. Haas BJ, et al.
    Full-length messenger RNA sequences greatly improve genome annotation.
    Genome Biol., 2002. 3(6): p. RESEARCH0029
    [PMID:12093376]
  2. Brand LH,Kirchler T,Hummel S,Chaban C,Wanke D
    DPI-ELISA: a fast and versatile method to specify the binding of plant transcription factors to DNA in vitro.
    Plant Methods, 2010. 6: p. 25
    [PMID:21108821]
  3. Brand LH, et al.
    Screening for protein-DNA interactions by automatable DNA-protein interaction ELISA.
    PLoS ONE, 2013. 8(10): p. e75177
    [PMID:24146751]
  4. Ding Y, et al.
    Four distinct types of dehydration stress memory genes in Arabidopsis thaliana.
    BMC Plant Biol., 2013. 13: p. 229
    [PMID:24377444]
  5. Ali MA,Wieczorek K,Kreil DP,Bohlmann H
    The beet cyst nematode Heterodera schachtii modulates the expression of WRKY transcription factors in syncytia to favour its development in Arabidopsis roots.
    PLoS ONE, 2014. 9(7): p. e102360
    [PMID:25033038]
  6. Chalhoub B, et al.
    Plant genetics. Early allopolyploid evolution in the post-Neolithic Brassica napus oilseed genome.
    Science, 2014. 345(6199): p. 950-3
    [PMID:25146293]
  7. Jiang CH, et al.
    Transcription factors WRKY70 and WRKY11 served as regulators in rhizobacterium Bacillus cereus AR156-induced systemic resistance to Pseudomonas syringae pv. tomato DC3000 in Arabidopsis.
    J. Exp. Bot., 2016. 67(1): p. 157-74
    [PMID:26433201]
  8. Ali MA, et al.
    Transcription factors WRKY11 and WRKY17 are involved in abiotic stress responses in Arabidopsis.
    J. Plant Physiol., 2018. 226: p. 12-21
    [PMID:29689430]