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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 >Regulon and promoter analysis of the E. coli heat-shock factor, sigma32, reveals a multifaceted cellular response to heat stress.
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Regulon and promoter analysis of the E. coli heat-shock factor, sigma32, reveals a multifaceted cellular response to heat stress.

机译:大肠杆菌热休克因子sigma32的调节子和启动子分析揭示了细胞对热应激的多方面反应。

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摘要

The heat-shock response (HSR), a universal cellular response to heat, is crucial for cellular adaptation. In Escherichia coli, the HSR is mediated by the alternative sigma factor, sigma32. To determine its role, we used genome-wide expression analysis and promoter validation to identify genes directly regulated by sigma32 and screened ORF overexpression libraries to identify sigma32 inducers. We triple the number of genes validated to be transcribed by sigma32 and provide new insights into the cellular role of this response. Our work indicates that the response is propagated as the regulon encodes numerous global transcriptional regulators, reveals that sigma70 holoenzyme initiates from 12% of sigma32 promoters, which has important implications for global transcriptional wiring, and identifies a new role for the response in protein homeostasis, that of protecting complex proteins. Finally, this study suggests that the response protects the cell membrane and responds to its status: Fully 25% of sigma32 regulon members reside in the membrane and alter its functionality; moreover, a disproportionate fraction of overexpressed proteins that induce the response are membrane localized. The intimate connection of the response to the membrane rationalizes why a major regulator of the response resides in that cellular compartment.
机译:热休克反应(HSR)是细胞对热量的普遍反应,对细胞适应至关重要。在大肠杆菌中,高铁由替代的sigma因子sigma32介导。为了确定其作用,我们使用了全基因组表达分析和启动子验证来鉴定直接受sigma32调控的基因,并筛选ORF过表达文库以鉴定sigma32诱导物。我们将被sigma32转录的基因数量增加了三倍,并提供了对该反应的细胞作用的新见解。我们的工作表明,由于调控因子编码许多全球转录调节因子,因此反应得以传播,揭示sigma70全酶从sigma32启动子的12%启动,这对全球转录途径具有重要意义,并确定了反应在蛋白质稳态中的新作用,保护复杂蛋白质。最后,这项研究表明这种反应可以保护细胞膜并对其状态作出反应:完全25%的sigma32 regulon成员驻留在膜中并改变其功能;此外,诱导反应的过表达蛋白质的不成比例的部分在膜上定位。响应与膜的紧密联系合理化了为什么响应的主要调节剂驻留在该细胞室内。

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