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Interplay between the beta ' clamp and the beta ' jaw domains during DNA opening by the bacterial RNA polymerase at sigma(54)-dependent promoters

机译:细菌RNA聚合酶在依赖sigma(54)的启动子打开DNA期间,β'钳位和β'钳位域之间的相互作用

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摘要

The bacterial RNA polymerase (RNAP) is a multi-subunit, structurally flexible, complex molecular machine, in which activities associated with DNA opening for transcription-competent open promoter complex (OC) formation reside in the catalytic beta and beta' subunits and the dissociable sigma subunit. OC formation is a multi-step process that involves several structurally conserved mobile modules of beta, beta', and sigma. Here, we present evidence that two flexible modules of beta', the beta' jaw and the beta' clamp and a conserved regulatory Region I domain of sigma(54), jointly contribute to the maintenance of stable DNA strand separation around the trancription start site in OCs formed at sigma(54)-dependent promoters. Clearly, regulated interplay between the mobile modules of the beta' and the sigma subunits of the RNAP appears to be necessary for stable OC formation. (c) 2006 Elsevier Ltd. All rights reserved.
机译:细菌RNA聚合酶(RNAP)是一个多亚基,结构灵活,复杂的分子机器,其中与DNA开放有关的具有转录能力的开放启动子复合物(OC)形成的活性驻留在催化性β和β'亚基中,并且可分离sigma亚基。 OC形成是一个多步骤的过程,涉及几个结构保守的beta,beta'和sigma移动模块。在这里,我们提供的证据表明,β'的两个灵活模块,β'的下颌和β'的钳位以及sigma(54)的保守I区调控域共同有助于维持转录起始位点周围稳定的DNA链分离在由sigma(54)依赖性启动子形成的OC中的表达。显然,对于稳定的OC形成而言,β'和RNAP的σ亚基的移动模块之间的调节相互作用似乎是必需的。 (c)2006 Elsevier Ltd.保留所有权利。

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