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大肠杆菌中运动性与卷曲菌毛介导的黏附之间的反向调节协调

Inverse regulatory coordination of motility and curli-mediated adhesion in Escherichia coli.

作者信息

Pesavento Christina, Becker Gisela, Sommerfeldt Nicole, Possling Alexandra, Tschowri Natalia, Mehlis Anika, Hengge Regine

机构信息

Institut für Biologie-Mikrobiologie, Freie Universität Berlin, 14195 Berlin, Germany.

出版信息

Genes Dev. 2008 Sep 1;22(17):2434-46. doi: 10.1101/gad.475808.

Abstract

During the transition from post-exponential to stationary phase, Escherichia coli changes from the motile-planktonic to the adhesive-sedentary "lifestyle." We demonstrate this transition to be controlled by mutual inhibition of the FlhDC/motility and sigma(S)/adhesion control cascades at two distinct hierarchical levels. At the top level, motility gene expression and the general stress response are inversely coordinated by sigma(70)/sigma(FliA)/sigma(S) competition for core RNA polymerase and the FlhDC-controlled FliZ protein acting as a sigma(S) inhibitor. At a lower level, the signaling molecule bis-(3'-5')-cyclic-diguanosine monophosphate (c-di-GMP) reduces flagellar activity and stimulates transcription of csgD, which encodes an essential activator of adhesive curli fimbriae expression. This c-di-GMP is antagonistically controlled by sigma(S)-regulated GGDEF proteins (mainly YegE) and YhjH, an EAL protein and c-di-GMP phosphodiesterase under FlhDC/FliA control. The switch from motility-based foraging to the general stress response and curli expression requires sigma(S)-modulated down-regulation of expression of the flagellar regulatory cascade as well as proteolysis of the flagellar master regulator FlhDC. Control of YhjH by FlhDC and of YegE by sigma(S) produces a fine-tuned checkpoint system that "unlocks" curli expression only after down-regulation of flagellar gene expression. In summary, these data reveal the logic and sequence of molecular events underlying the motile-to-adhesive "lifestyle" switch in E. coli.

摘要

在从指数后期到稳定期的转变过程中,大肠杆菌从运动性浮游状态转变为附着性固着“生活方式”。我们证明这种转变是由FlhDC/运动性和σ(S)/黏附控制级联在两个不同层次水平上的相互抑制所控制的。在顶层,运动性基因表达和一般应激反应通过σ(70)/σ(FliA)/σ(S)对核心RNA聚合酶的竞争以及FlhDC控制的FliZ蛋白作为σ(S)抑制剂而呈反向协调。在较低水平,信号分子双-(3'-5')-环二鸟苷单磷酸(c-di-GMP)降低鞭毛活性并刺激csgD的转录,csgD编码黏附性卷曲菌毛表达的必需激活剂。这种c-di-GMP受σ(S)调节的GGDEF蛋白(主要是YegE)和YhjH的拮抗控制,YhjH是一种EAL蛋白和在FlhDC/FliA控制下的c-di-GMP磷酸二酯酶。从基于运动性的觅食到一般应激反应和卷曲菌毛表达的转变需要σ(S)调节的鞭毛调节级联表达的下调以及鞭毛主调节因子FlhDC的蛋白水解。FlhDC对YhjH的控制和σ(S)对YegE的控制产生了一个微调的检查点系统,该系统仅在鞭毛基因表达下调后才“解锁”卷曲菌毛表达。总之,这些数据揭示了大肠杆菌中运动性到黏附性“生活方式”转变背后分子事件的逻辑和顺序。

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