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组蛋白样蛋白H-NS在大肠杆菌中σS及许多σS依赖性基因的生长阶段依赖性和渗透压调节中的作用。

Role for the histone-like protein H-NS in growth phase-dependent and osmotic regulation of sigma S and many sigma S-dependent genes in Escherichia coli.

作者信息

Barth M, Marschall C, Muffler A, Fischer D, Hengge-Aronis R

机构信息

Department of Biology, University of Konstanz, Germany.

出版信息

J Bacteriol. 1995 Jun;177(12):3455-64. doi: 10.1128/jb.177.12.3455-3464.1995.

Abstract

The sigma S subunit of RNA polymerase (encoded by the rpoS gene) is the master regulator in a complex regulatory network that controls stationary-phase induction and osmotic regulation of many genes in Escherichia coli. Here we demonstrate that the histone-like protein H-NS is also a component of this network, in which it functions as a global inhibitor of gene expression during the exponential phase of growth. On two-dimensional gels, at least 22 sigma S-controlled proteins show increased expression in an hns mutant. H-NS also inhibits the expression of sigma S itself by a mechanism that acts at the posttranscriptional level. Our results indicate that relief of repression by H-NS plays a role in stationary-phase induction as well as in hyperosmotic induction of rpoS translation. Whereas certain sigma S-dependent genes (e.g., osmY) are only indirectly regulated by H-NS via its role in the control of sigma S expression, others are also H-NS-regulated in a sigma S-independent manner. (For this latter class of genes, rpoS hns double mutants show higher levels of expression than mutants deficient in rpoS alone.) In addition, we demonstrate that the slow-growth phenotype of hns mutants is suppressed in hns rpoS double mutants and that many second-site suppressor mutants that spontaneously arise from hns strains carry lesions that affect the expression of sigma S.

摘要

RNA聚合酶的σS亚基(由rpoS基因编码)是一个复杂调控网络中的主要调节因子,该网络控制着大肠杆菌中许多基因的稳定期诱导和渗透调节。在此我们证明,类组蛋白H-NS也是这个网络的一个组成部分,在其中它在生长指数期作为基因表达的全局抑制剂发挥作用。在二维凝胶上,至少22种受σS控制的蛋白质在hns突变体中表达增加。H-NS还通过一种在转录后水平起作用的机制抑制σS自身的表达。我们的结果表明,H-NS抑制作用的解除在rpoS翻译的稳定期诱导以及高渗诱导中发挥作用。某些依赖σS的基因(如osmY)仅通过H-NS在控制σS表达中的作用而间接受到其调控,而其他基因也以不依赖σS的方式受到H-NS的调控。(对于后一类基因,rpoS hns双突变体的表达水平高于仅缺乏rpoS的突变体。)此外,我们证明hns rpoS双突变体抑制了hns突变体的缓慢生长表型,并且许多从hns菌株自发产生的第二位点抑制突变体携带影响σS表达的损伤。

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