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RfaH 与转录延伸复合物结合时的变构偶联。

Allosteric couplings upon binding of RfaH to transcription elongation complexes.

机构信息

Institute for Biological and Medical Engineering, Schools of Engineering, Medicine and Biological Sciences, Pontificia Universidad Católica de Chile, Santiago, Chile.

ANID - Millennium Science Initiative Program - Millennium Institute for Integrative Biology (iBio), Santiago, Chile.

出版信息

Nucleic Acids Res. 2022 Jun 24;50(11):6384-6397. doi: 10.1093/nar/gkac453.

Abstract

In every domain of life, NusG-like proteins bind to the elongating RNA polymerase (RNAP) to support processive RNA synthesis and to couple transcription to ongoing cellular processes. Structures of factor-bound transcription elongation complexes (TECs) reveal similar contacts to RNAP, consistent with a shared mechanism of action. However, NusG homologs differ in their regulatory roles, modes of recruitment, and effects on RNA synthesis. Some of these differences could be due to conformational changes in RNAP and NusG-like proteins, which cannot be captured in static structures. Here, we employed hydrogen-deuterium exchange mass spectrometry to investigate changes in local and non-local structural dynamics of Escherichia coli NusG and its paralog RfaH, which have opposite effects on expression of xenogenes, upon binding to TEC. We found that NusG and RfaH regions that bind RNAP became solvent-protected in factor-bound TECs, whereas RNAP regions that interact with both factors showed opposite deuterium uptake changes when bound to NusG or RfaH. Additional changes far from the factor-binding site were observed only with RfaH. Our results provide insights into differences in structural dynamics exerted by NusG and RfaH during binding to TEC, which may explain their different functional outcomes and allosteric regulation of transcriptional pausing by RfaH.

摘要

在生命的各个领域,NusG 样蛋白都与延伸中的 RNA 聚合酶 (RNAP) 结合,以支持连续的 RNA 合成,并将转录与正在进行的细胞过程偶联。结合因子的转录延伸复合物 (TEC) 的结构揭示了与 RNAP 的相似接触,这与共同的作用机制一致。然而,NusG 同源物在其调节作用、募集方式和对 RNA 合成的影响方面存在差异。这些差异中的一些可能是由于 RNAP 和 NusG 样蛋白的构象变化,而这些变化在静态结构中无法捕捉到。在这里,我们使用氘氢交换质谱法来研究大肠杆菌 NusG 及其类似物 RfaH 的局部和非局部结构动力学变化,这两种蛋白在结合 TEC 时对异源基因的表达具有相反的影响。我们发现,与 RNAP 结合的 NusG 和 RfaH 区域在因子结合的 TEC 中变得对溶剂具有保护作用,而与这两个因子相互作用的 RNAP 区域在与 NusG 或 RfaH 结合时显示出相反的氘吸收变化。只有 RfaH 才会观察到远离因子结合位点的额外变化。我们的结果提供了关于 NusG 和 RfaH 在结合 TEC 时产生的结构动力学差异的见解,这可能解释了它们在功能结果和 RfaH 对转录暂停的变构调节方面的差异。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/86d3/9226497/47ea0f891996/gkac453fig1.jpg

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