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首页> 外文期刊>Genes and Development: a Journal Devoted to the Molecular Analysis of Gene Expression in Eukaryotes, Prokaryotes, and Viruses >Inverse regulatory coordination of motility and curli-mediated adhesion in Escherichia coli.
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Inverse regulatory coordination of motility and curli-mediated adhesion in Escherichia coli.

机译:大肠杆菌的运动和卷曲介导的粘附的反向调节协调。

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摘要

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
机译:在从指数后阶段​​过渡到固定阶段的过程中,大肠埃希氏菌从活动浮游生物转变为粘着性必不可少的“生活方式”。我们证明了这种转变是通过在两个不同的层次级别上相互抑制FlhDC /运动性和sigma(S)/粘附控制级联来控制的。在最高级别,运动性基因表达和一般应激反应与sigma(70)/ sigma(FliA)/ sigma(S)对核心RNA聚合酶的竞争以及由FlhDC控制的FliZ蛋白起sigma(S)的竞争负相关。抑制剂。在较低的水平上,信号分子双-(3'-5')-环-鸟嘌呤单磷酸(c-di-GMP)降低鞭毛活性并刺激csgD的转录,后者编码粘附性卷曲菌毛表达的必要激活剂。在FlhDC / FliA控制下,此c-di-GMP受Sigma(S)调节的GGDEF蛋白(主要为YegE)和YhjH(一种EAL蛋白和c-di-GMP磷酸二酯酶)拮抗。从基于运动的觅食向一般应激反应和卷曲表达的转换需要鞭毛调节级联反应的表达经sigma(S)调节的下调以及鞭毛主调节剂FlhDC的蛋白水解。 FlhDC对YhjH的控制以及sigma(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“释放” curli表达。总之,这些数据揭示了从运动型到黏着型生活方式的分子事件的逻辑和顺序

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