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结核分枝杆菌 SigE 特异性抗σ因子 RseA 可被依赖于磷酸化的 ClpC1P2 蛋白酶体水解失活。

RseA, the SigE specific anti-sigma factor of Mycobacterium tuberculosis, is inactivated by phosphorylation-dependent ClpC1P2 proteolysis.

机构信息

Department of Chemistry, 93/1 Acharya Prafulla Chandra Road, Kolkata 700009, India.

出版信息

Mol Microbiol. 2010 Feb;75(3):592-606. doi: 10.1111/j.1365-2958.2009.07008.x. Epub 2009 Dec 16.

Abstract

Central to the response of Mycobacterium tuberculosis to environmental stress is the regulation of genes under the control of alternative sigma factors. Sigma E of M. tuberculosis plays an important role in the intracellular life of the bacterium and regulates several genes which are important for maintaining the integrity of the cell envelope stress. This makes it important to understand how SigE is activated under stress. Here we elucidate the mechanisms regulating interaction of SigE with its cognate anti-sigma factor RseA. Cysteines 70 and 73 are required for redox-dependent interaction of RseA with SigE. Under surface stress, PknB-dependent phosphorylation of RseA on T39 is required for its cleavage by ClpC1P2 thereby activating the SigE regulon. Rv2745c (MSMEG_2694), a transcriptional regulator, activates the clp regulon in response to vancomycin-induced stress. Taken together with the previous report that Rv2745c is activated by SigE, our study uncovers a positive feedback loop that activates the sigE regulon under envelope stress.

摘要

分枝杆菌应对环境压力的核心是受替代σ因子控制的基因的调节。分枝杆菌的σ E 在细菌的细胞内生活中发挥重要作用,调节几个对维持细胞壁完整性的压力很重要的基因。这使得理解 SigE 在压力下如何被激活变得很重要。在这里,我们阐明了调节 SigE 与其同源反σ因子 RseA 相互作用的机制。Cys70 和 Cys73 是 RseA 与 SigE 发生氧化还原依赖性相互作用所必需的。在表面压力下,RseA 在 T39 上的 PknB 依赖性磷酸化是其被 ClpC1P2 切割所必需的,从而激活 SigE 调控子。Rv2745c(MSMEG_2694),一个转录调节剂,在万古霉素诱导的应激下激活 clp 调控子。与先前报道的 Rv2745c 被 SigE 激活的报告一起,我们的研究揭示了一个正反馈环,该环在包膜压力下激活 sigE 调控子。

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