Department of Biology, Chungbuk National University, Cheongju, 28644, Republic of Korea.
Department of Forest Bio-Resources, National Institute of Forest Science, Suwon, 16631, Republic of Korea.
Planta. 2019 Oct;250(4):1371-1377. doi: 10.1007/s00425-019-03233-z. Epub 2019 Jul 6.
The brassinosteroid-related BES1 and BZR1 transcription factors dynamically modulate downstream gene networks via the TPL-HDA19 co-repressor complex in BR-signaling pathways in Arabidopsis thaliana. Brassinosteroids (BRs) are plant steroid hormones that are essential for diverse growth and developmental processes across the whole life cycle of plants. In Arabidopsis thaliana, the BR-related transcription factors BRI1-EMS-SUPPRESSOR 1 (BES1) and BRASSINAZOLE-RESISTANT 1 (BZR1) regulate a range of global gene expression in response to BR and several external signaling cues; however, the molecular mechanisms by which they mediate the reprogramming of downstream transcription remain unclear. We here report that formation of a protein complex between BES1 and BZR1 and Histone Deacetylase 19 (HDA19) via the conserved ERF-associated amphiphilic repression (EAR) motif proved essential for regulation of BR-signaling-related gene expression. Defects in BR-related functions of BES1 and BZR1 proteins containing a mutated EAR motif were completely rescued by artificial fusion with EAR-repression domain (SRDX), TOPLESS (TPL), or HDA19 proteins. RNA-sequencing analysis of Arabidopsis plants over-expressing bes1-DmEAR or bes1-DmEAR-HDA19 revealed an essential role for HDA19 activity in regulation of BES1/BZR1-mediated BR signaling. In addition to BR-related gene expression, the BES1-HDA19 transcription factor complex was important for abiotic stress-related drought stress tolerance and organ boundary formation. These results suggested that integrating activation of BR-signaling pathways with the formation of the protein complex containing BES1/BZR1 and TPL-HDA19 via the EAR motif was important in fine-tuning BR-related gene networks in plants.
植物甾体激素油菜素内酯相关的 BES1 和 BZR1 转录因子通过 TPL-HDA19 共抑制复合物动态调节下游基因网络,参与拟南芥油菜素内酯信号通路。植物甾体激素油菜素内酯是植物生长发育所必需的激素,在植物整个生命周期的各种生长和发育过程中都发挥着重要作用。在拟南芥中,油菜素内酯相关转录因子 BRI1-EMS-SUPPRESSOR 1(BES1)和 BRASSINAZOLE-RESISTANT 1(BZR1)调节一系列对油菜素内酯和几种外部信号刺激的广泛的全局基因表达;然而,它们介导下游转录重编程的分子机制尚不清楚。我们在这里报告,BES1 和 BZR1 与 Histone Deacetylase 19(HDA19)通过保守的 ERF 相关的双极性重复抑制(EAR)基序形成蛋白质复合物,这对于油菜素内酯信号相关基因表达的调控是必不可少的。含有突变 EAR 基序的 BES1 和 BZR1 蛋白的油菜素内酯相关功能缺陷完全可以通过与 EAR 抑制域(SRDX)、TOPLESS(TPL)或 HDA19 蛋白的人工融合来挽救。过表达 bes1-DmEAR 或 bes1-DmEAR-HDA19 的拟南芥植株的 RNA-seq 分析表明,HDA19 活性在 BES1/BZR1 介导的油菜素内酯信号调控中起关键作用。除了油菜素内酯相关基因表达外,BES1-HDA19 转录因子复合物对于非生物胁迫相关的干旱胁迫耐受性和器官边界形成也很重要。这些结果表明,通过 EAR 基序整合油菜素内酯信号通路的激活与包含 BES1/BZR1 和 TPL-HDA19 的蛋白质复合物的形成,对于植物中油菜素内酯相关基因网络的精细调控是很重要的。