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H-NS is a part of a thermally controlled mechanism for bacterial gene regulation.H-NS是细菌基因调控热控机制的一部分。
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2
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expresses foreign genes during infection by degrading their silencer.在感染过程中通过降解其沉默子来表达外源基因。
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Evolutionary and functional divergence of Sfx, a plasmid-encoded H-NS homolog, underlies the regulation of IncX plasmid conjugation.质粒编码的H-NS同源物Sfx的进化和功能差异是IncX质粒接合调控的基础。
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Decoding dissociation of sequence-specific protein-DNA complexes with non-equilibrium simulations.运用非平衡模拟技术解析序列特异性蛋白-DNA 复合物的解离。
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Lysis Cassette-Mediated Exoprotein Release in Yersinia entomophaga Is Controlled by a PhoB-Like Regulator.耶尔森氏昆虫致病杆菌中裂解盒介导的胞外蛋白释放受一种类PhoB调节因子控制。
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本文引用的文献

1
Expression of the gene encoding the major bacterial nucleoid protein H-NS is subject to transcriptional auto-repression.编码主要细菌类核蛋白H-NS的基因表达受到转录自抑制作用的调控。
Mol Microbiol. 1993 Oct;10(2):273-282. doi: 10.1111/j.1365-2958.1993.tb01953.x.
2
Interaction between the bacterial nucleoid associated proteins Hha and H-NS involves a conformational change of Hha.细菌类核相关蛋白Hha和H-NS之间的相互作用涉及Hha的构象变化。
Biochem J. 2005 Jun 15;388(Pt 3):755-62. doi: 10.1042/BJ20050002.
3
The extended interface: measuring non-local effects in biomolecular interactions.扩展界面:测量生物分子相互作用中的非局部效应。
Curr Opin Struct Biol. 2004 Oct;14(5):562-9. doi: 10.1016/j.sbi.2004.08.001.
4
Temporal global changes in gene expression during temperature transition in Yersinia pestis.鼠疫耶尔森菌温度转变过程中基因表达的时间性全局变化。
J Bacteriol. 2004 Sep;186(18):6298-305. doi: 10.1128/JB.186.18.6298-6305.2004.
5
H-NS: a universal regulator for a dynamic genome.H-NS:动态基因组的通用调控因子。
Nat Rev Microbiol. 2004 May;2(5):391-400. doi: 10.1038/nrmicro883.
6
Structure of the histone-like protein H-NS and its role in regulation and genome superstructure.类组蛋白H-NS的结构及其在调控和基因组超结构中的作用。
Curr Opin Microbiol. 2004 Apr;7(2):109-14. doi: 10.1016/j.mib.2004.02.001.
7
The virF promoter in Shigella: more than just a curved DNA stretch.志贺氏菌中的virF启动子:不仅仅是一段弯曲的DNA序列。
Mol Microbiol. 2004 Jan;51(2):523-37. doi: 10.1046/j.1365-2958.2003.03848.x.
8
On the role of H-NS in the organization of bacterial chromatin: from bulk to single molecules and back.论H-NS在细菌染色质组织中的作用:从整体到单分子再回归整体
Biophys J. 2003 Dec;85(6):4146-8. doi: 10.1016/S0006-3495(03)74826-7.
9
Vibrio cholerae H-NS domain structure and function with respect to transcriptional repression of ToxR regulon genes reveals differences among H-NS family members.霍乱弧菌H-NS结构域关于ToxR调控子基因转录抑制的结构与功能揭示了H-NS家族成员之间的差异。
Mol Microbiol. 2003 Oct;50(2):427-44. doi: 10.1046/j.1365-2958.2003.03701.x.
10
Crystal structure of the N-terminal dimerisation domain of VicH, the H-NS-like protein of Vibrio cholerae.霍乱弧菌类H-NS蛋白VicH的N端二聚化结构域的晶体结构
J Mol Biol. 2003 Nov 21;334(2):179-85. doi: 10.1016/j.jmb.2003.09.051.

H-NS是细菌基因调控热控机制的一部分。

H-NS is a part of a thermally controlled mechanism for bacterial gene regulation.

作者信息

Ono Shusuke, Goldberg Martin D, Olsson Tjelvar, Esposito Diego, Hinton Jay C D, Ladbury John E

机构信息

Department of Biochemistry and Molecular Biology, and Institute of Structural Molecular Biology, University College London, Gower Street, London WC1E 6BT, UK.

出版信息

Biochem J. 2005 Oct 15;391(Pt 2):203-13. doi: 10.1042/BJ20050453.

DOI:10.1042/BJ20050453
PMID:15966862
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1276917/
Abstract

Temperature is a primary environmental stress to which micro-organisms must be able to adapt and respond rapidly. Whereas some bacteria are restricted to specific niches and have limited abilities to survive changes in their environment, others, such as members of the Enterobacteriaceae, can withstand wide fluctuations in temperature. In addition to regulating cellular physiology, pathogenic bacteria use temperature as a cue for activating virulence gene expression. This work confirms that the nucleoid-associated protein H-NS (histone-like nucleoid structuring protein) is an essential component in thermoregulation of Salmonella. On increasing the temperature from 25 to 37 degrees C, more than 200 genes from Salmonella enterica serovar Typhimurium showed H-NS-dependent up-regulation. The thermal activation of gene expression is extremely rapid and change in temperature affects the DNA-binding properties of H-NS. The reduction in gene repression brought about by the increase in temperature is concomitant with a conformational change in the protein, resulting in the decrease in size of high-order oligomers and the appearance of increasing concentrations of discrete dimers of H-NS. The present study addresses one of the key complex mechanisms by which H-NS regulates gene expression.

摘要

温度是微生物必须能够快速适应和应对的主要环境压力。一些细菌局限于特定生态位,在环境变化时生存能力有限,而其他细菌,如肠杆菌科成员,能够承受温度的大幅波动。除了调节细胞生理外,病原菌还利用温度作为激活毒力基因表达的信号。这项研究证实,类核相关蛋白H-NS(类组蛋白核结构蛋白)是沙门氏菌温度调节的重要组成部分。将温度从25℃提高到37℃时,鼠伤寒沙门氏菌血清型超过200个基因表现出H-NS依赖的上调。基因表达的热激活极其迅速,温度变化会影响H-NS的DNA结合特性。温度升高导致的基因抑制减少与蛋白质的构象变化同时发生,导致高阶寡聚体大小减小,H-NS离散二聚体浓度增加。本研究探讨了H-NS调节基因表达的关键复杂机制之一。