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结核分枝杆菌中tgs1-Rv3131基因的强烈差异诱导是由DevR与一个高亲和力位点和一个相邻的隐蔽低亲和力位点相互作用介导的。

Powerful induction of divergent tgs1-Rv3131 genes in Mycobacterium tuberculosis is mediated by DevR interaction with a high-affinity site and an adjacent cryptic low-affinity site.

作者信息

Chauhan Santosh, Tyagi Jaya Sivaswami

机构信息

Department of Biotechnology, All India Institute of Medical Sciences, New Delhi, India.

出版信息

J Bacteriol. 2009 Oct;191(19):6075-81. doi: 10.1128/JB.00310-09. Epub 2009 Jul 31.

Abstract

DevR activates the transcription of approximately 48 genes in response to hypoxia and other stresses and triggers metabolic downshift and dormancy development in Mycobacterium tuberculosis. tgs1 and Rv3131 encode triacylglycerol synthase and a putative nitroreductase, respectively, and both are members of the DevR regulon. This study aimed to understand how a single putative DevR binding site identified previously could sustain powerful induction of divergent tgs1-Rv3131 genes. DNase I footprinting revealed that phosphorylated DevR in fact binds to two sites symmetrically located at -42.5 and -63.5 bp from transcription start points of both genes. DevR first bound to the high-affinity site, P, and cooperatively recruited another DevR molecule to the secondary low-affinity site, S, to activate tgs1-Rv3131 transcription by approximately 210- and approximately 110-fold, respectively. The presence of a single P site significantly reduced activation of tgs1 expression and abolished Rv3131 activity, reinforcing the requirement of two binding sites for robust expression in both directions. P site inversion abolished tgs1 but not Rv3131 transcription despite DevR occupancy at both sites. The lack of tgs1 expression is most likely due to disruption of its -35 promoter element rather than inversion of the binding site per se. We conclude that (i) an overlap of a DevR binding site and -35 sequence is indispensable for promoter activation, (ii) DevR interaction with two binding sites is obligatory for synergistic activation of tgs1-Rv3131 promoters, and (iii) DevR interaction with binding sites of different affinities offers scope for temporal and differential expression of target genes.

摘要

DevR可响应缺氧和其他应激激活约48个基因的转录,并引发结核分枝杆菌的代谢下调和休眠发育。tgs1和Rv3131分别编码三酰甘油合酶和一种假定的硝基还原酶,二者均为DevR调控子的成员。本研究旨在了解先前鉴定出的单个假定DevR结合位点如何能够强力诱导tgs1-Rv3131基因的双向表达。DNA酶I足迹法显示,磷酸化的DevR实际上结合于两个位点,它们对称地位于两个基因转录起始点上游-42.5和-63.5 bp处。DevR首先结合高亲和力位点P,并协同招募另一个DevR分子至低亲和力二级位点S,从而分别将tgs1-Rv3131的转录激活约210倍和约110倍。单个P位点的存在显著降低了tgs1表达的激活,并消除了Rv3131的活性,这进一步证明了两个结合位点对于双向强劲表达的必要性。尽管DevR占据了两个位点,但P位点倒置消除了tgs1的转录,但未消除Rv3131的转录。tgs1缺乏表达很可能是由于其-35启动子元件被破坏,而非结合位点本身的倒置。我们得出以下结论:(i)DevR结合位点与-35序列的重叠对于启动子激活必不可少;(ii)DevR与两个结合位点的相互作用对于tgs1-Rv3131启动子的协同激活是必需的;(iii)DevR与不同亲和力结合位点的相互作用为靶基因的时序和差异表达提供了空间。

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