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大肠杆菌RNA结合蛋白CsrA对运动性和flhDC表达的正向调控

Positive regulation of motility and flhDC expression by the RNA-binding protein CsrA of Escherichia coli.

作者信息

Wei B L, Brun-Zinkernagel A M, Simecka J W, Prüss B M, Babitzke P, Romeo T

机构信息

Department of Molecular Biology and Immunology, University of North Texas Health Science Center at Fort Worth, 3500 Camp Bowie Blvd., Fort Worth, TX 76107-2699, USA.

出版信息

Mol Microbiol. 2001 Apr;40(1):245-56. doi: 10.1046/j.1365-2958.2001.02380.x.

Abstract

Many species of bacteria devote considerable metabolic resources and genetic information to the ability to sense the environment and move towards or away from specific stimuli using flagella. In Escherichia coli and related species, motility is regulated by several global regulatory circuits, which converge to modulate the overall expression of the master operon for flagellum biosynthesis, flhDC. We now show that the global regulator CsrA of E. coli K-12 is necessary for motility under a variety of growth conditions, as a result of its role as an activator of flhDC expression. A chromosomally encoded flhDC'-'lacZ translational fusion was expressed at three- to fourfold higher levels in csrA wild-type strains than in isogenic csrA mutants. Purified recombinant CsrA protein stimulated the coupled transcription-translation of flhDC'-' lacZ in S-30 extracts and bound to the 5' segment of flhDC mRNA in RNA mobility shift assays. The steady-state level of flhDC mRNA was higher and its half-life was approximately threefold greater in a csrA wild-type versus a csrA mutant strain. Thus, CsrA stimulates flhDC gene expression by a post-transcriptional mechanism reminiscent of its function in the repression of glycogen biosynthesis.

摘要

许多细菌物种投入了大量的代谢资源和遗传信息,用于感知环境并利用鞭毛朝着特定刺激物移动或远离特定刺激物的能力。在大肠杆菌及相关物种中,运动性受几种全局调控回路的调节,这些回路共同作用以调节鞭毛生物合成的主操纵子flhDC的整体表达。我们现在表明,大肠杆菌K-12的全局调节因子CsrA在多种生长条件下对于运动性是必需的,这是由于它作为flhDC表达的激活剂所起的作用。一个染色体编码的flhDC'-'lacZ翻译融合体在csrA野生型菌株中的表达水平比同基因的csrA突变体菌株高3至4倍。纯化的重组CsrA蛋白在S-30提取物中刺激flhDC'-'lacZ的偶联转录-翻译,并在RNA迁移率变动分析中与flhDC mRNA的5'片段结合。与csrA突变体菌株相比,csrA野生型菌株中flhDC mRNA的稳态水平更高,其半衰期大约大三倍。因此,CsrA通过一种转录后机制刺激flhDC基因表达,这让人联想到它在抑制糖原生物合成中的功能。

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