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 OMERI03G23890.1
Organism
Taxonomic ID
Taxonomic Lineage
cellular organisms; Eukaryota; Viridiplantae; Streptophyta; Streptophytina; Embryophyta; Tracheophyta; Euphyllophyta; Spermatophyta; Magnoliophyta; Mesangiospermae; Liliopsida; Petrosaviidae; commelinids; Poales; Poaceae; BOP clade; Oryzoideae; Oryzeae; Oryzinae; Oryza
Family NAC
Protein Properties Length: 319aa    MW: 34173.6 Da    PI: 6.3624
Description NAC family protein
Gene Model
Gene Model ID Type Source Coding Sequence
OMERI03G23890.1genomeOGEView CDS
Signature Domain? help Back to Top
Signature Domain
No. Domain Score E-value Start End HMM Start HMM End
1NAM179.31e-5551301128
              NAM   1 lppGfrFhPtdeelvveyLkkkvegkkleleevikevdiykvePwdLpkkvkaeekewyfFskrdkkyatgkrknratksgyWkatgkdkevls 94 
                      lppGfrFhPtdeelv++yL++kv++  + + ++i++vd++k+ePwdLp+k++ +ekewyfFs rd+ky+tg r+nrat+sgyWk+tgkdke+++
  OMERI03G23890.1   5 LPPGFRFHPTDEELVTYYLARKVSDFGFAT-RAIADVDLNKCEPWDLPSKASMGEKEWYFFSMRDRKYPTGIRTNRATDSGYWKTTGKDKEIFH 97 
                      79*************************999.89***************999999**************************************** PP

              NAM  95 kkgelvglkktLvfykgrapkgektdWvmheyrl 128
                       +g+l g+kktLvfy+grapkg kt+Wvmheyrl
  OMERI03G23890.1  98 -GGALAGMKKTLVFYRGRAPKGAKTSWVMHEYRL 130
                      .*******************************98 PP

Protein Features ? help Back to Top
3D Structure
Database Entry ID E-value Start End InterPro ID Description
SuperFamilySSF1019413.79E-653151IPR003441NAC domain
PROSITE profilePS5100560.3775151IPR003441NAC domain
PfamPF023654.4E-296130IPR003441NAC domain
Gene Ontology ? help Back to Top
GO Term GO Category GO Description
GO:0006355Biological Processregulation of transcription, DNA-templated
GO:0005634Cellular Componentnucleus
GO:0003677Molecular FunctionDNA binding
Sequence ? help Back to Top
Protein Sequence    Length: 319 aa     Download sequence    Send to blast
MEEGLPPGFR FHPTDEELVT YYLARKVSDF GFATRAIADV DLNKCEPWDL PSKASMGEKE  60
WYFFSMRDRK YPTGIRTNRA TDSGYWKTTG KDKEIFHGGA LAGMKKTLVF YRGRAPKGAK  120
TSWVMHEYRL QSKFPYKPAK DEWVVCRVFK KLCNLARPPR QSLDDDVAAD GASPPEMVDA  180
ELGELDVSSI LLGGGGSFAP LPSGALCHGG GDGFGAYMSW LQAAAAANQG MFQWPAATQA  240
GLLGGTVFAA AHKAAGTMPF GGGCSQQQAR DVGVSLANVG GGGGGGDALF GGAPLAKVDM  300
ECGEQAPQLD MDDSTWRAF
3D Structure ? help Back to Top
Structure
PDB ID Evalue Query Start Query End Hit Start Hit End Description
1ut4_A1e-56415116165NO APICAL MERISTEM PROTEIN
1ut4_B1e-56415116165NO APICAL MERISTEM PROTEIN
1ut7_A1e-56415116165NO APICAL MERISTEM PROTEIN
1ut7_B1e-56415116165NO APICAL MERISTEM PROTEIN
4dul_A1e-56415116165NAC domain-containing protein 19
4dul_B1e-56415116165NAC domain-containing protein 19
Search in ModeBase
Functional Description ? help Back to Top
Source Description
UniProtTranscription activator that binds to DNA in promoters of target genes on a specific bipartite motif 5'-[ACG][CA]GT[AG](5-6n)[CT]AC[AG]-3' (PubMed:23340744). Promotes lateral root development (PubMed:16359384). Triggers the expression of senescence-associated genes during age-, salt- and dark-induced senescence through a regulatory network that may involve cross-talk with salt- and H(2)O(2)-dependent signaling pathways (PubMed:9351240, PubMed:15295076, PubMed:20113437, PubMed:21303842). Regulates also genes during seed germination (PubMed:20113437). Regulates positively aging-induced cell death (PubMed:19229035). Involved in age-related resistance (ARR) against Pseudomonas syringae pv. tomato and Hyaloperonospora arabidopsidis (PubMed:19694953). Antagonizes GLK1 and GLK2 transcriptional activity, shifting the balance from chloroplast maintenance towards deterioration during leaf senescence (PubMed:23459204). Promotes the expression of senescence-associated genes, including ENDO1/BFN1, SWEET15/SAG29 and SINA1/At3g13672, during senescence onset (PubMed:23340744). {ECO:0000269|PubMed:15295076, ECO:0000269|PubMed:16359384, ECO:0000269|PubMed:19229035, ECO:0000269|PubMed:19694953, ECO:0000269|PubMed:20113437, ECO:0000269|PubMed:21303842, ECO:0000269|PubMed:23340744, ECO:0000269|PubMed:23459204, ECO:0000269|PubMed:9351240}.
Binding Motif ? help Back to Top
Motif ID Method Source Motif file
MP00364DAPTransfer from AT3G18400Download
Motif logo
Regulation -- Description ? help Back to Top
Source Description
UniProtINDUCTION: High levels during senescence (e.g. age-, salt- and dark-related) (PubMed:19229035, PubMed:20113437, PubMed:21511905, PubMed:22930749). By salt stress in an ethylene- and auxin-dependent manner (PubMed:16359384, PubMed:19608714, PubMed:20113437, PubMed:20404534). Induced by H(2)O(2) (PubMed:20404534). Accumulates in response to abscisic acid (ABA), ethylene (ACC) and auxin (NAA) (PubMed:16359384, PubMed:19608714). Repressed by high auxin (IAA) levels (PubMed:21511905). Age-related resistance (ARR)-associated accumulation (PubMed:19694953). Repressed by miR164 (PubMed:19229035). {ECO:0000269|PubMed:16359384, ECO:0000269|PubMed:19229035, ECO:0000269|PubMed:19608714, ECO:0000269|PubMed:19694953, ECO:0000269|PubMed:20113437, ECO:0000269|PubMed:20404534, ECO:0000269|PubMed:21511905, ECO:0000269|PubMed:22930749}.
UniProtINDUCTION: Repressed post-transcriptionally by miR164. {ECO:0000269|PubMed:15294871, ECO:0000269|PubMed:17098808, ECO:0000269|PubMed:18305205, ECO:0000305|PubMed:15723790}.
Regulation -- PlantRegMap ? help Back to Top
Source Upstream Regulator Target Gene
PlantRegMapRetrieveRetrieve
Annotation -- Nucleotide ? help Back to Top
Source Hit ID E-value Description
GenBankAK0626750.0AK062675.1 Oryza sativa Japonica Group cDNA clone:001-105-G11, full insert sequence.
Annotation -- Protein ? help Back to Top
Source Hit ID E-value Description
RefseqXP_015629240.10.0NAC domain-containing protein 79
SwissprotQ9FKA03e-77NAC92_ARATH; NAC domain-containing protein 92
SwissprotQ9FLR33e-77NAC79_ARATH; NAC domain-containing protein 79
TrEMBLA0A0E0D3U40.0A0A0E0D3U4_9ORYZ; Uncharacterized protein
STRINGOS03T0624600-010.0(Oryza sativa)
Orthologous Group ? help Back to Top
LineageOrthologous Group IDTaxa NumberGene Number
MonocotsOGMP79193450
Best hit in Arabidopsis thaliana ? help Back to Top
Hit ID E-value Description
AT3G18400.13e-92NAC domain containing protein 58
Publications ? help Back to Top
  1. Duarte JM, et al.
    Expression pattern shifts following duplication indicative of subfunctionalization and neofunctionalization in regulatory genes of Arabidopsis.
    Mol. Biol. Evol., 2006. 23(2): p. 469-78
    [PMID:16280546]
  2. Manacorda CA, et al.
    Salicylic acid determines differential senescence produced by two Turnip mosaic virus strains involving reactive oxygen species and early transcriptomic changes.
    Mol. Plant Microbe Interact., 2013. 26(12): p. 1486-98
    [PMID:23945002]
  3. Khan M,Rozhon W,Poppenberger B
    The role of hormones in the aging of plants - a mini-review.
    Gerontology, 2014. 60(1): p. 49-55
    [PMID:24135638]
  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. Vidal EA,Álvarez JM,Gutiérrez RA
    Nitrate regulation of AFB3 and NAC4 gene expression in Arabidopsis roots depends on NRT1.1 nitrate transport function.
    Plant Signal Behav, 2014. 9(3): p. e28501
    [PMID:24642706]
  6. Bohner A,Kojima S,Hajirezaei M,Melzer M,von Wirén N
    Urea retranslocation from senescing Arabidopsis leaves is promoted by DUR3-mediated urea retrieval from leaf apoplast.
    Plant J., 2015. 81(3): p. 377-87
    [PMID:25440717]
  7. Lee MH,Jeon HS,Kim HG,Park OK
    An Arabidopsis NAC transcription factor NAC4 promotes pathogen-induced cell death under negative regulation by microRNA164.
    New Phytol., 2017. 214(1): p. 343-360
    [PMID:28032643]
  8. Sakuraba Y,Bülbül S,Piao W,Choi G,Paek NC
    Arabidopsis EARLY FLOWERING3 increases salt tolerance by suppressing salt stress response pathways.
    Plant J., 2017. 92(6): p. 1106-1120
    [PMID:29032592]
  9. Kim H, et al.
    Circadian control of ORE1 by PRR9 positively regulates leaf senescence in Arabidopsis.
    Proc. Natl. Acad. Sci. U.S.A., 2018. 115(33): p. 8448-8453
    [PMID:30065116]