BIC 1 acts as a transcriptional coactivator to promote brassinosteroid signaling and plant growth
Transcriptional Activation
0301 basic medicine
Chromatin Immunoprecipitation
0303 health sciences
Light
Transcription, Genetic
Arabidopsis Proteins
Arabidopsis
Plant Development
Cryptochromes
03 medical and health sciences
Gene Expression Regulation, Plant
Brassinosteroids
Promoter Regions, Genetic
Signal Transduction
Transcription Factors
DOI:
10.15252/embj.2020104615
Publication Date:
2020-10-14T11:52:09Z
AUTHORS (6)
ABSTRACT
The BRASSINAZOLE-RESISTANT 1 (BZR1) transcription factor family plays an essential role in plant brassinosteroid (BR) signaling, but the signaling mechanism through which BZR1 and its homologs cooperate with certain coactivators to facilitate transcription of target genes remains incompletely understood. In this study, we used an efficient protein interaction screening system to identify blue-light inhibitor of cryptochromes 1 (BIC1) as a new BZR1-interacting protein in Arabidopsis thaliana. We show that BIC1 positively regulates BR signaling and acts as a transcriptional coactivator for BZR1-dependent activation of BR-responsive genes. Simultaneously, BIC1 interacts with the transcription factor PIF4 to synergistically and interdependently activate expression of downstream genes including PIF4 itself, and to promote plant growth. Chromatin immunoprecipitation assays demonstrate that BIC1 and BZR1/PIF4 interdependently associate with the promoters of common target genes. In addition, we show that the interaction between BIC1 and BZR1 is evolutionally conserved in the model monocot plant Triticum aestivum (bread wheat). Together, our results reveal mechanistic details of BR signaling mediated by a transcriptional activation module BIC1/BZR1/PIF4 and thus provide new insights into the molecular mechanisms underlying the integration of BR and light signaling in plants.
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