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A prehydrolysis state of an AAA+ ATPase supports transcription activation of an enhancer-dependent RNA polymerase

机译:AAA + ATPase的预水解状态支持增强子依赖性RNA聚合酶的转录激活

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摘要

ATP hydrolysis-dependent molecular machines and motors often drive regulated conformational transformations in cell signaling and gene regulation complexes. Conformational reorganization of a gene regulation complex containing the major variant form of bacterial RNA polymerase (RNAP), Eσ54, requires engagement with its cognate ATP-hydrolyzing activator protein. Importantly, this activated RNAP is essential for a number of adaptive responses, including those required for bacterial pathogenesis. Here we characterize the initial encounter between the enhancer-dependent Eσ54 and its cognate activator AAA+ ATPase protein, before ADP+Pi formation, using a small primed RNA (spRNA) synthesis assay. The results show that in a prehydrolysis state, sufficient activator-dependent rearrangements in Eσ54 have occurred to allow engagement of the RNAP active site with single-stranded promoter DNA to support spRNA synthesis, but not to melt the promoter DNA. This catalytically competent transcription intermediate has similarity with the open promoter complex, in that the RNAP dynamics required for DNA scrunching should be occurring. Significantly, this work highlights that prehydrolysis states of ATPases are functionally important in the molecular transformations they drive.
机译:依赖ATP水解的分子机器和马达通常在细胞信号传导和基因调控复合体中驱动受调控的构象转化。包含细菌RNA聚合酶(RNAP)主要变异形式Eσ54的基因调控复合物的构象重组需要与其同源的ATP水解激活蛋白结合。重要的是,这种激活的RNAP对于许多适应性反应都是必不可少的,包括细菌发病机理所必需的那些。在这里,我们使用小引物RNA(spRNA)合成分析表征了增强子依赖性Eσ54及其同源活化剂AAA + ATPase蛋白之间的初始相遇,然后形成ADP + Pi。结果表明,在预水解状态下,在Eσ54中发生了足够的依赖于活化剂的重排,以允许RNAP活性位点与单链启动子DNA结合以支持spRNA合成,但不使启动子DNA融化。这种具有催化作用的转录中间体与开放启动子复合物相似,因为应该发生DNA收缩所需的RNAP动力学。重要的是,这项工作强调了ATPase的预水解状态在其驱动的分子转化中在功能上很重要。

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