7ET4 image
Deposition Date 2021-05-12
Release Date 2021-09-15
Last Version Date 2023-11-29
Entry Detail
PDB ID:
7ET4
Title:
Crystal structure of Arabidopsis TEM1 AP2 domain
Biological Source:
Source Organism:
Host Organism:
Method Details:
Experimental Method:
Resolution:
2.70 Å
R-Value Free:
0.23
R-Value Work:
0.20
R-Value Observed:
0.20
Space Group:
P 21 21 2
Macromolecular Entities
Polymer Type:polypeptide(L)
Molecule:AP2/ERF and B3 domain-containing transcription repressor TEM1
Gene (Uniprot):TEM1
Chain IDs:A, D, G, J
Chain Length:122
Number of Molecules:4
Biological Source:Arabidopsis thaliana
Polymer Type:polydeoxyribonucleotide
Molecule:DNA (12-mer)
Chain IDs:B, F, I, L
Chain Length:12
Number of Molecules:4
Biological Source:Arabidopsis thaliana
Polymer Type:polydeoxyribonucleotide
Molecule:DNA (12-mer)
Chain IDs:C, E, H, K
Chain Length:12
Number of Molecules:4
Biological Source:Arabidopsis thaliana
Primary Citation
TEM1 combinatorially binds to FLOWERING LOCUS T and recruits a Polycomb factor to repress the floral transition in Arabidopsis.
Proc.Natl.Acad.Sci.USA 118 ? ? (2021)
PMID: 34446554 DOI: 10.1073/pnas.2103895118

Abstact

Arabidopsis TEMPRANILLO 1 (TEM1) is a transcriptional repressor that participates in multiple flowering pathways and negatively regulates the juvenile-to-adult transition and the flowering transition. To understand the molecular basis for the site-specific regulation of FLOWERING LOCUS T (FT) by TEM1, we determined the structures of the two plant-specific DNA-binding domains in TEM1, AP2 and B3, in complex with their target DNA sequences from the FT gene 5'-untranslated region (5'-UTR), revealing the molecular basis for TEM1 specificity for its DNA targets. In vitro binding assays revealed that the combination of the AP2 and B3 binding sites greatly enhanced the overall binding of TEM1 to the FT 5'-UTR, indicating TEM1 combinatorically recognizes the FT gene 5'-UTR. We further showed that TEM1 recruits the Polycomb repressive complex 2 (PRC2) to the FT 5'-UTR. The simultaneous binding of the TEM1 AP2 and B3 domains to FT is necessary for deposition of H3K27me3 at the FT 5'-UTR and for the flowering repressor function of TEM1. Overall, our data suggest that the combinatorial recognition of FT 5'-UTR by TEM1 ensures H3K27me3 deposition to precisely regulate the floral transition.

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