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调节RssB活性:IraP,大肠杆菌中σ(S)稳定性的新型调节因子。

Modulating RssB activity: IraP, a novel regulator of sigma(S) stability in Escherichia coli.

作者信息

Bougdour Alexandre, Wickner Sue, Gottesman Susan

机构信息

Laboratory of Molecular Biology, National Cancer Institute, National Institutes of Health, Bethesda, Maryland 20892, USA.

出版信息

Genes Dev. 2006 Apr 1;20(7):884-97. doi: 10.1101/gad.1400306.

Abstract

The sigma(S) subunit of Escherichia coli RNA polymerase regulates the expression of stationary phase and stress response genes. sigma(S) is highly unstable in exponentially growing cells, whereas its stability increases dramatically upon starvation or under certain stress conditions. The degradation of sigma(S) is controlled by the phosphorylatable adaptor protein RssB and the ClpXP protease. RssB specifically directs sigma(S) to ClpXP. An unanswered question is how RssB-mediated degradation of sigma(S) is blocked by conditions such as glucose or phosphate starvation. We report here the identification and characterization of a new regulator of sigma(S) stability, IraP (inhibitor of RssB activity during phosphate starvation), that stabilizes sigma(S) both in vivo and in vitro. Deletion of iraP interferes with sigma(S) stabilization during phosphate starvation, but not during carbon starvation, and has a partial effect in stationary phase and nitrogen starvation. IraP interferes with RssB-dependent degradation of sigma(S) through a direct protein-protein interaction with RssB. A point mutant of IraP was isolated and found to be defective both for inhibition of sigma(S) degradation and interaction with RssB. Our results reveal a novel mechanism of regulation of sigma(S) stability through the regulation of RssB activity and identify IraP as a member of a new class of regulators, the anti-adaptor proteins.

摘要

大肠杆菌RNA聚合酶的σ(S)亚基调控稳定期基因和应激反应基因的表达。在指数生长期的细胞中,σ(S)极不稳定,而在饥饿或某些应激条件下,其稳定性会显著增加。σ(S)的降解由可磷酸化的衔接蛋白RssB和ClpXP蛋白酶控制。RssB特异性地将σ(S)导向ClpXP。一个尚未解决的问题是,葡萄糖或磷酸盐饥饿等条件如何阻断RssB介导的σ(S)降解。我们在此报告了一种新的σ(S)稳定性调节因子IraP(磷酸盐饥饿期间RssB活性抑制剂)的鉴定和特性,它在体内和体外均能稳定σ(S)。缺失iraP会干扰磷酸盐饥饿期间σ(S)的稳定,但不影响碳饥饿期间的稳定,并且在稳定期和氮饥饿中有部分影响。IraP通过与RssB直接的蛋白质-蛋白质相互作用干扰RssB依赖的σ(S)降解。分离出IraP的一个点突变体,发现其在抑制σ(S)降解和与RssB相互作用方面均有缺陷。我们的结果揭示了一种通过调节RssB活性来调控σ(S)稳定性的新机制,并将IraP鉴定为一类新的调节因子——抗衔接蛋白的成员。

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