Hommais F, Krin E, Laurent-Winter C, Soutourina O, Malpertuy A, Le Caer J P, Danchin A, Bertin P
Unité de Régulation de l'Expression Génétique, Institut Pasteur, 28 rue du Docteur Roux, 75724 Paris, France.
Mol Microbiol. 2001 Apr;40(1):20-36. doi: 10.1046/j.1365-2958.2001.02358.x.
Despite many years of intense work investigating the function of nucleoid-associated proteins in prokaryotes, their role in bacterial physiology remains largely unknown. The two-dimensional protein patterns were compared and expression profiling was carried out on H-NS-deficient and wild-type strains of Escherichia coli K-12. The expression of approximately 5% of the genes and/or the accumulation of their protein was directly or indirectly altered in the hns mutant strain. About one-fifth of these genes encode proteins that are involved in transcription or translation and one-third are known to or were in silico predicted to encode cell envelope components or proteins that are usually involved in bacterial adaptation to changes in environmental conditions. The increased expression of several genes in the mutant resulted in a better ability of this strain to survive at low pH and high osmolarity than the wild-type strain. In particular, the putative regulator, YhiX, plays a central role in the H-NS control of genes required in the glutamate-dependent acid stress response. These results suggest that there is a strong relationship between the H-NS regulon and the maintenance of intracellular homeostasis.
尽管多年来一直在深入研究原核生物中类核相关蛋白的功能,但它们在细菌生理学中的作用仍然很大程度上未知。比较了二维蛋白质图谱,并对大肠杆菌K-12的H-NS缺陷型和野生型菌株进行了表达谱分析。在hns突变株中,约5%的基因表达和/或其蛋白质积累直接或间接地发生了改变。这些基因中约五分之一编码参与转录或翻译的蛋白质,三分之一已知或经计算机预测编码细胞包膜成分或通常参与细菌适应环境条件变化的蛋白质。突变株中几个基因表达的增加导致该菌株在低pH和高渗透压下比野生型菌株具有更好的存活能力。特别是,假定的调节因子YhiX在谷氨酸依赖性酸应激反应所需基因的H-NS控制中起核心作用。这些结果表明,H-NS调控子与细胞内稳态的维持之间存在密切关系。