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RshA,一种调节分枝杆菌应激反应西格玛因子SigH活性的抗西格玛因子。

RshA, an anti-sigma factor that regulates the activity of the mycobacterial stress response sigma factor SigH.

作者信息

Song Taeksun, Dove Simon L, Lee Kon Ho, Husson Robert N

机构信息

Division of Infectious Diseases, Children's Hospital, Harvard Medical School, Enders 609, 300 Longwood Ave., Boston, MA 02115, USA.

出版信息

Mol Microbiol. 2003 Nov;50(3):949-59. doi: 10.1046/j.1365-2958.2003.03739.x.

Abstract

SigH, an alternative sigma factor of Mycobacterium tuberculosis, is a central regulator of the response to oxidative and heat stress. Exposure to these stresses results in increased expression of sigH itself, and of genes encoding additional regulators and effectors of the bacterial response to these stresses. In this work we show that RshA, a protein encoded by a gene in the sigH operon, is an anti-sigma factor of SigH. We demonstrate that RshA binds to SigH in vitro and in vivo. This protein-protein interaction, as well as the ability of RshA to inhibit SigH-dependent transcription, is redox-dependent, with RshA functioning as a negative regulator of SigH activity only under reducing conditions. The interaction of SigH and RshA is also disrupted in vitro by elevated temperature. RshA, a protein of 101 amino acids, contains five conserved cysteine residues of which two appear to be essential for RshA to inhibit SigH activity, suggesting that these cysteines may be important for the redox state dependence of RshA function. Our results indicate that RshA is a sensor that responds to oxidative stress, and also to heat stress, resulting in activation of SigH and expression of the SigH-dependent genes that allow M. tuberculosis to adapt to these stresses.

摘要

SigH是结核分枝杆菌的一种替代σ因子,是对氧化应激和热应激反应的核心调节因子。暴露于这些应激条件下会导致sigH自身以及编码细菌对这些应激反应的其他调节因子和效应器的基因表达增加。在这项研究中,我们表明RshA是sigH操纵子中一个基因编码的蛋白质,是SigH的抗σ因子。我们证明RshA在体外和体内均能与SigH结合。这种蛋白质-蛋白质相互作用以及RshA抑制SigH依赖性转录的能力是氧化还原依赖性的,RshA仅在还原条件下作为SigH活性的负调节因子发挥作用。SigH和RshA的相互作用在体外也会因温度升高而被破坏。RshA是一种由101个氨基酸组成的蛋白质,含有五个保守的半胱氨酸残基,其中两个似乎对RshA抑制SigH活性至关重要,这表明这些半胱氨酸可能对RshA功能的氧化还原状态依赖性很重要。我们的结果表明,RshA是一种对氧化应激和热应激都有反应的传感器,导致SigH激活以及SigH依赖性基因的表达,使结核分枝杆菌能够适应这些应激。

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