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首页> 外文期刊>Genes and Development: a Journal Devoted to the Molecular Analysis of Gene Expression in Eukaryotes, Prokaryotes, and Viruses >Decline in ribosomal fidelity contributes to the accumulation and stabilization of the master stress response regulator sigmaS upon carbon starvation.
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Decline in ribosomal fidelity contributes to the accumulation and stabilization of the master stress response regulator sigmaS upon carbon starvation.

机译:碳饥饿时,核糖体保真度的下降有助于主应力反应调节因子sigmaS的积累和稳定。

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摘要

The sigma(S) subunit of RNA polymerase is a master regulator of Escherichia coli that retards cellular senescence and bestows cells with general stress protective functions during growth arrest. We show that mutations and drugs triggering translational errors elevate sigma(S) levels and stability. Furthermore, mutations enhancing translational fidelity attenuate induction of the rpoS regulon and prevent stabilization of sigma(S) upon carbon starvation. Destabilization of sigma(S) by increased proofreading requires the presence of the sigma(S) recognition factor SprE (RssB) and the ClpXP protease. The data further suggest that sigma(S) becomes stabilized upon starvation as a result of ClpP sequestration and this sequestration is enhanced by oxidative modifications of aberrant proteins produced by erroneous translation. ClpP overproduction counteracted starvation-induced stabilization of sigma(S), whereas overproduction of a ClpXP substrate (ssrA-tagged GFP) stabilized sigma(S) in exponentially growing cells. We present a model for the sequence of events leading to the accumulation and activation of sigma(S) upon carbon starvation, which are linked to alterations in both ribosomal fidelity and efficiency.
机译:RNA聚合酶的sigma(S)亚基是大肠杆菌的主要调节因子,可在生长停滞期间延缓细胞衰老并赋予细胞一般的应激保护功能。我们表明突变和药物触发翻译错误提高了西格玛(S)的水平和稳定性。此外,增强翻译保真度的突变减弱了rpoS regulon的诱导并阻止了碳饥饿时sigma(S)的稳定。通过增加校对来使s(S)不稳定,需要存在sigma(S)识别因子SprE(RssB)和ClpXP蛋白酶。数据进一步表明,由于ClpP隔离,饥饿后sigma(S)变得稳定,并且通过错误翻译产生的异常蛋白质的氧化修饰增强了隔离。 ClpP过量生产抵消了饥饿诱导的sigma(S)稳定,而ClpXP底物(ssrA标签的GFP)的过量生产稳定了指数生长细胞中的sigma(S)。我们提出了导致碳饥饿时西格玛(S)积累和激活的事件序列的模型,这些事件与核糖体保真度和效率的改变有关。

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