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The Transcriptional Cascade in the Heat Stress Response of Arabidopsis Is Strictly Regulated at the Level of Transcription Factor Expression

机译:拟南芥热应激反应中的转录级联被严格调控转录因子表达水平。

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Group A1 heat shock transcription factors (HsfA1s) are the master regulators of the heat stress response (HSR) in plants. Upon heat shock, HsfA1s trigger a transcriptional cascade that is composed of many transcription factors. Despite the importance of HsfA1s and their downstream transcriptional cascade in the acquisition of thermotolerance in plants, the molecular basis of their activation remains poorly understood. Here, domain analysis of HsfA1d, one of several HsfA1s in Arabidopsis thaliana, demonstrated that the central region of HsfA1d is a key regulatory domain that represses HsfA1d transactivation activity through interaction with HEAT SHOCK PROTEIN70 (HSP70) and HSP90. We designated this region as the temperature-dependent repression (TDR) domain. We found that HSP70 dissociates from HsfA1d in response to heat shock and that the dissociation is likely regulated by an as yet unknown activation mechanism, such as HsfA1d phosphorylation. Overexpression of constitutively active HsfA1d that lacked the TDR domain induced expression of heat shock proteins in the absence of heat stress, thereby conferring potent thermotolerance on the overexpressors. However, transcriptome analysis of the overexpressors demonstrated that the constitutively active HsfA1d could not trigger the complete transcriptional cascade under normal conditions, thereby indicating that other factors are necessary to fully induce the HSR. These complex regulatory mechanisms related to the transcriptional cascade may enable plants to respond resiliently to various heat stress conditions.
机译:A1组热激转录因子(HsfA1s)是植物热应激反应(HSR)的主要调节因子。热休克后,HsfA1触发由许多转录因子组成的转录级联反应。尽管HsfA1及其下游转录级联在获取植物耐热性中很重要,但对其激活的分子基础仍知之甚少。在这里,对拟南芥中几种HsfA1之一的HsfA1d的结构域分析表明,HsfA1d的中央区域是通过与HEAT SHOCK PROTEIN70(HSP70)和HSP90相互作用抑制HsfA1d反式激活活性的关键调控域。我们将该区域指定为温度依赖性抑制(TDR)域。我们发现,HSP70响应热激而从HsfA1d解离,并且这种解离很可能受未知的激活机制(例如HsfA1d磷酸化)调控。缺乏TDR结构域的组成型活性HsfA1d的过表达在没有热应激的情况下诱导了热激蛋白的表达,从而使过表达子具有强大的耐热性。但是,对过量表达子的转录组分析表明,在正常条件下,组成型活性HsfA1d不能触发完整的转录级联反应,从而表明需要其他因素来充分诱导HSR。这些与转录级联有关的复杂调控机制可以使植物对各种热胁迫条件具有弹性。

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