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与 RpoC、RpoB 及其同源 CIN 启动子的交替σ因子 ComX 的结构分析揭示了一种独特的启动子融解机制。

Structural analysis of alternate sigma factor ComX with RpoC, RpoB and its cognate CIN promoter reveals a distinctive promoter melting mechanism.

机构信息

Centre of Advanced study in Crystallography and Biophysics, University of Madras, Chennai, India.

Department of Biological sciences, National University of Singapore, Singapore, Singapore.

出版信息

J Biomol Struct Dyn. 2022 Sep;40(14):6272-6285. doi: 10.1080/07391102.2021.1882338. Epub 2021 Feb 8.

Abstract

Alternate sigma factors play a major role in the survival of pathogenic bacteria such as in adverse environment conditions. Stress induced sigma factors mediate gene expression under conditions of pathogenesis, dormancy and unusual environmental cues. In the present work, ComX, an alternate sigma factor from has been characterized. The structures of ComX, RpoB β subunit and RpoC β' subunit of RNA polymerase have been predicted using comparative and homology modelling respectively and validated. Attempts have been made to study RpoB-RpoC-ComX complex interactions with Double Strand (DS) and Single Strand (SS) promoter regions. Stability of these complexes and the promoter melting mechanism have been analysed using Molecular Dynamic (MD) simulations. This study suggests that ComX, although identifies promoter analogous to the alternate sigma factor SigH of , follows a distinctive promoter flip out mechanism.Communicated by Ramaswamy H. Sarma.

摘要

替代σ因子在病原菌(如 )的生存中起着重要作用,如在不利的环境条件下。应激诱导的σ因子在发病、休眠和异常环境线索条件下介导基因表达。在本工作中,从 中鉴定了一个替代σ因子 ComX。使用比较和同源建模分别预测了 ComX、RNA 聚合酶的 RpoBβ亚基和 RpoCβ'亚基的结构,并进行了验证。尝试研究 RpoB-RpoC-ComX 复合物与双链(DS)和单链(SS)启动子区域的相互作用。使用分子动力学(MD)模拟分析了这些复合物的稳定性和启动子融化机制。这项研究表明,ComX 虽然识别类似于替代σ因子 SigH 的启动子,但它遵循一种独特的启动子翻转机制。由 Ramaswamy H. Sarma 传达。

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