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Heat shock regulation of sigmaS turnover: a role for DnaK and relationship between stress responses mediated by sigmaS and sigma32 in Escherichia coli.

机译:热激调节sigmaS转换:DnaK的作用以及大肠杆菌中sigmaS和sigma32介导的应激反应之间的关系。

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摘要

The cellular level of the rpoS-encoded sigmaS subunit of RNA polymerase increases in response to various stress situations that include starvation, high osmolarity, and shift to acid pH, and these different stress signals differentially affect rpoS translation and/or sigmaS stability. Here we demonstrate that sigmaS is also induced by heat shock and that this induction is exclusively due to an interference with sigmaS turnover. Some sigmaS-dependent genes exhibit similar heat shock induction, whereas others are not induced probably because they need additional regulatory factors that might not be present under conditions of heat shock or exponential growth. Despite its induction, sigmaS does not seem to contribute to heat adaptation but may induce cross-protection against different stresses. While sigmaS is not involved in the regulation of the heat shock sigma factor sigma32, the heat shock protein DnaK has a positive role in the posttranscriptional control of sigmaS. The present evidence suggests that DnaK is involved in the transduction of two of the signals that result in reduced sigmaS turnover, i.e., heat shock and carbon starvation. Heat shock induction of sigmaS also clearly indicates that a cessation of growth or even a reduction of the growth rate is not a prerequisite for the induction of sigmaS and sigmaS-dependent genes and underscores the importance of sigmaS as a general stress sigma factor.
机译:RNA聚合酶的rpoS编码的sigmaS亚基的细胞水平会响应各种应激情况而增加,这些情况包括饥饿,高渗透压和向酸性pH的转变,这些不同的应激信号差异性地影响rpoS翻译和/或sigmaS稳定性。在这里,我们证明sigmaS也是由热激引起的,并且这种诱导完全是由于对sigmaS转换的干扰。一些依赖sigmaS的基因表现出相似的热激诱导作用,而其他一些则未诱导,可能是因为它们需要在热激或指数增长条件下可能不存在的其他调节因子。尽管有sigmaS诱导,但sigmaS似乎没有促进热适应,但可能诱导交叉保护以抵抗不同的压力。尽管sigmaS不参与热休克sigma因子sigma32的调节,但热休克蛋白DnaK在sigmaS的转录后控制中具有积极作用。目前的证据表明,DnaK参与了导致sigmaS转换减少的两个信号的转导,即热休克和碳饥饿。对sigmaS的热激诱导也清楚地表明,停止生长甚至降低增长率不是诱导sigmaS和依赖sigmaS的基因的先决条件,并强调了sigmaS作为一般胁迫sigma因子的重要性。

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