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首页> 外文期刊>Molecular Microbiology >The structural basis for enhancer-dependent assembly and activation of the AAA transcriptional activator NorR
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The structural basis for enhancer-dependent assembly and activation of the AAA transcriptional activator NorR

机译:AAA转录激活因子NorR依赖增强子的组装和激活的结构基础

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摘要

sigma(54)-dependent transcription controls a wide range of stress-related genes in bacteria and is tightly regulated. In contrast to sigma(70), the sigma(54)-RNA polymerase holoenzyme forms a stable closed complex at the promoter site that rarely isomerises into transcriptionally competent open complexes. The conversion into open complexes requires the ATPase activity of activator proteins that bind remotely upstream of the transcriptional start site. These activators belong to the large AAA protein family and the majority of them consist of an N-terminal regulatory domain, a central AAA domain and a C-terminal DNA binding domain. Here we use a functional variant of the NorR activator, a dedicated NO sensor, to provide the first structural and functional characterisation of a full length AAA activator in complex with its enhancer DNA. Our data suggest an inter-dependent and synergistic relationship of all three functional domains and provide an explanation for the dependence of NorR on enhancer DNA. Our results show that NorR readily assembles into higher order oligomers upon enhancer binding, independent of activating signals. Upon inducing signals, the N-terminal regulatory domain relocates to the periphery of the AAA ring. Together our data provide an assembly and activation mechanism for NorR.
机译:依赖sigma(54)的转录控制细菌中多种与压力相关的基因,并且受到严格调节。与sigma(70)相比,sigma(54)-RNA聚合酶全酶在启动子位点形成稳定的封闭复合物,该复合物很少异构化为转录感受态开放复合物。转化为开放复合物需要激活蛋白的ATPase活性,该蛋白在转录起始位点的上游远程结合。这些激活剂属于大型AAA蛋白家族,其中大多数由N端调节域,中央AAA域和C端DNA结合域组成。在这里,我们使用NorR激活剂的功能变体(专用的NO传感器)来提供全长AAA激活剂及其增强子DNA的复合物的第一个结构和功能表征。我们的数据表明所有三个功能域之间的相互依赖和协同关系,并提供了对NorR对增强子DNA依赖性的解释。我们的结果表明,在增强子结合后,NorR可以轻松组装成更高阶的寡聚物,而与激活信号无关。诱导信号后,N端调节域重新定位到AAA环的外围。我们的数据一起提供了NorR的组装和激活机制。

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