首页> 外文期刊>Biochimica et Biophysica Acta. Gene Regulatory Mechanisms >Structure and function of RapA: a bacterial Swi2/Snf2 protein required for RNA polymerase recycling in transcription.
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Structure and function of RapA: a bacterial Swi2/Snf2 protein required for RNA polymerase recycling in transcription.

机译:RapA的结构和功能:一种细菌Swi2 / Snf2蛋白,是转录中RNA聚合酶回收所必需的。

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One of the hallmarks of the Swi2/Snf2 family members is their ability to modify the interaction between DNA-binding protein and DNA in controlling gene expression. The studies of Swi2/Snf2 have been mostly focused on their roles in chromatin and/or nucleosome remodeling in eukaryotes. A bacterial Swi2/Snf2 protein named RapA from Escherichia coli is a unique addition to these studies. RapA is an RNA polymerase (RNAP)-associated protein and an ATPase. It binds nucleic acids including RNA and DNA. The ATPase activity of RapA is stimulated by its interaction with RNAP, but not with nucleic acids. RapA and the major sigma factor sigma70 compete for binding to core RNAP. After one transcription cycle in vitro, RNAP is immobilized in an undefined posttranscription/posttermination complex (PTC), thus becoming unavailable for reuse. RapA stimulates RNAP recycling by ATPase-dependent remodeling of PTC, leading to the release of sequestered RNAP, which then becomes available for reuse in another cycle of transcription. Recently, the crystal structure of RapA that is also the first full-length structure for the entire Swi2/Snf2 family was determined. The structure provides a framework for future studies of the mechanism of RNAP recycling in transcription. This article is part of a Special Issue entitled: Snf2/Swi2 ATPase structure and function.
机译:Swi2 / Snf2家族成员的标志之一是他们在控制基因表达中修饰DNA结合蛋白和DNA之间相互作用的能力。 Swi2 / Snf2的研究主要集中在它们在真核生物的染色质和/或核小体重塑中的作用。这些研究独特地添加了一种来自大肠杆菌的细菌Swi2 / Snf2蛋白,名为RapA。 RapA是与RNA聚合酶(RNAP)相关的蛋白质和ATPase。它结合包括RNA和DNA的核酸。 RapA与RNAP而非核酸的相互作用会刺激其ATPase活性。 RapA和主要的sigma因子sigma70竞争与核心RNAP的结合。在体外一个转录周期后,RNAP被固定在未定义的转录后/终止后复合体(PTC)中,因此无法重复使用。 RapA通过PTC的ATPase依赖性重塑刺激RNAP回收,从而导致螯合的RNAP释放,然后可用于另一转录循环。最近,确定了RapA的晶体结构,这也是整个Swi2 / Snf2家族的第一个全长结构。该结构为将来研究转录中的RNAP循环机制提供了框架。本文是名为“ Snf2 / Swi2 ATPase结构和功能”的特刊的一部分。

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