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Regulation of the α-Crystallin Gene acr2 by the MprAB Two-Component System of Mycobacterium tuberculosis▿ †

机译:结核分枝杆菌MprAB两组分系统对α-晶体蛋白acr2的调控

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摘要

Coordinated regulation of molecular chaperones is an important feature of the bacterial stress response. The small molecular chaperone gene acr2 of Mycobacterium tuberculosis is activated by exposure to several stresses, including heat and the detergent sodium dodecyl sulfate (SDS). In this study, we show that acr2 is directly regulated by the MprAB two-component system, and that MprAB has both positive and negative effects on acr2 expression. mRNA analyses showed that acr2 expression levels were lower under SDS stress and control conditions but higher under heat shock in an mprAB deletion mutant than they were in the parental strain. Parental expression patterns were restored in an mprAB-complemented strain. Western blotting using an anti-Acr2 antibody showed that Acr2 protein synthesis correlated with mRNA levels. Primer extension identified one transcriptional start point (TSP) for acr2 in all three strains under control and stress conditions. Electrophoresis mobility shift assays revealed multiple MprA binding sites in the acr2 promoter, including one downstream and three upstream of the acr2 TSP, with one overlapping the binding sites predicted for SigE, SigH, and HspR. DNA footprinting confirmed that MprA protected large sections of the acr2 promoter region. Expression of several housekeeping genes under SDS stress also was evaluated, revealing the upregulation of large molecular chaperone genes and, unexpectedly, sigA, with slightly lower sigA mRNA levels detected in the mprAB deletion mutant than in the wild type. In contrast to Acr2, SigA protein synthesis did not correlate with mRNA expression. Overall, the data indicated that MprA has complex interactions with the acr2 promoter and indirect effects on major housekeeping genes.
机译:分子伴侣的协调调节是细菌应激反应的重要特征。结核分枝杆菌的小分子伴侣基因acr2通过暴露于多种压力下而被激活,这些压力包括加热和去污剂十二烷基硫酸钠(SDS)。在这项研究中,我们表明acr2受MprAB两组分系统直接调节,并且MprAB对acr2表达具有正向和负向影响。 mRNA分析显示,在mprAB缺失突变体中,在SDS胁迫和对照条件下acr2表达水平较低,但在热激条件下,acr2表达水平高于亲本菌株。在mprAB互补菌株中恢复了亲本表达模式。使用抗Acr2抗体的蛋白质印迹显示Acr2蛋白质合成与mRNA水平相关。引物延伸确定了在控制和胁迫条件下所有三个菌株中acr2的一个转录起始点(TSP)。电泳迁移率变动分析显示acr2启动子中有多个MprA结合位点,包括acr2 TSP的一个下游和三个上游,一个与SigE,SigH和HspR预测的结合位点重叠。 DNA足迹证实MprA保护acr2启动子区域的大部分。还评估了在SDS胁迫下几个持家基因的表达,揭示了大分子伴侣基因和sigA的上调,而在mprAB缺失突变体中检测到的sigA mRNA水平略低于野生型。与Acr2相反,SigA蛋白的合成与mRNA表达无关。总体而言,数据表明MprA与acr2启动子具有复杂的相互作用,并间接影响主要管家基因。

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