首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Arabidopsis IWS1 interacts with transcription factor BES1 and is involved in plant steroid hormone brassinosteroid regulated gene expression
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Arabidopsis IWS1 interacts with transcription factor BES1 and is involved in plant steroid hormone brassinosteroid regulated gene expression

机译:拟南芥IWS1与转录因子BES1相互作用并参与植物类固醇激素油菜素类固醇调节基因的表达

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摘要

Plant steroid hormones, brassinosteroids (BRs), regulate essential growth and developmental processes. BRs signal through membrane-localized receptor BRI1 and several other signaling components to regulate the BES1 and BZR1 family transcription factors, which in turn control the expression of hundreds of target genes. However, knowledge about the transcriptional mechanisms by which BES1/BZR1 regulate gene expression is limited. By a forward genetic approach, we have discovered that Arabidopsis thaliana Interact-With-Spt6 (AtIWS1), an evolutionarily conserved protein implicated in RNA polymerase II (RNAPII) postrecruitment and transcriptional elongation processes, is required for BR-induced gene expression. Loss-of-function mutations in AtIWS1 lead to overall dwarfism in Arabidopsis, reduced BR response, genome-wide decrease in BR-induced gene expression, and hypersensitivity to a transcription elongation inhibitor. Moreover, AtIWS1 interacts with BES1 both in vitro and in vivo. Chromatin immunoprecipitation experiments demonstrated that the presence of AtIWS1 is enriched in transcribed as well as promoter regions of the target genes under BR-induced conditions. Our results suggest that AtIWS1 is recruited to target genes by BES1 to promote gene expression during transcription elongation process. Recent genomic studies have indicated that a large number of genes could be regulated at steps after RNAPII recruitment; however, the mechanisms for such regulation have not been well established. The study therefore not only establishes an important role for AtIWS1 in plant steroid–induced gene expression but also suggests an exciting possibility that IWS1 protein can function as a target for pathway-specific activators, thereby providing a unique mechanism for the control of gene expression.
机译:植物类固醇激素,油菜素类固醇(BRs)调节基本的生长和发育过程。 BRs通过膜定位受体BRI1和其他几种信号传导元件进行信号传导,以调节BES1和BZR1家族的转录因子,进而控制数百种靶基因的表达。但是,有关BES1 / BZR1调节基因表达的转录机制的知识是有限的。通过前向遗传方法,我们发现拟南芥拟南芥与Spt6相互作用(AtIWS1)是BR诱导的基因表达所需的进化保守蛋白,涉及RNA聚合酶II(RNAPII)的招募和转录延伸过程。 AtIWS1中功能丧失的突变导致拟南芥中的整体矮化,BR反应降低,BR诱导的基因表达在全基因组范围内下降以及对转录延伸抑制剂的超敏性。此外,AtIWS1在体外和体内均与BES1相互作用。染色质免疫沉淀实验表明,在BR诱导的条件下,AtIWS1的存在丰富了靶基因的转录和启动子区域。我们的结果表明,BES1将AtIWS1募集到目标基因,以在转录延伸过程中促进基因表达。最近的基因组研究表明,RNAPII募集后的许多步骤都可以调控许多基因。但是,这种监管的机制尚未建立。因此,这项研究不仅确定了AtIWS1在植物类固醇诱导的基因表达中的重要作用,而且还提出了令人兴奋的可能性,即IWS1蛋白可以作为途径特异性激活剂的靶标,从而为基因表达的控制提供独特的机制。

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