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Small RNAs in the control of RpoS, CsgD, and biofilm architecture of Escherichia coli

机译:控制RpoS,CsgD和大肠杆菌生物膜结构的小RNA

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摘要

Amyloid curli fibers and cellulose are extracellular matrix components produced in the stationary phase top layer of E. coli macrocolonies, which confer physical protection, strong cohesion, elasticity, and wrinkled morphology to these biofilms. Curli and cellulose synthesis is controlled by a three-level transcription factor (TF) cascade with the RpoS sigma subunit of RNA polymerase at the top, the MerR-like TF MlrA, and the biofilm regulator CsgD, with two c-di-GMP control modules acting as key switching devices. Additional signal input and fine-tuning is provided by an entire series of small RNAs-ArcZ, DsrA, RprA, McaS, OmrA/OmrB, GcvB, and RydC-that differentially control all three TF modules by direct mRNA interaction. This review not only summarizes the mechanisms of action of these sRNAs, but also addresses the question of how these sRNAs and the regulators they target contribute to building the intriguing three-dimensional microarchitecture and macromorphology of these biofilms.
机译:淀粉样卷曲纤维和纤维素是在大肠杆菌大菌落的固定相顶层中产生的细胞外基质成分,赋予这些生物膜物理保护,强大的内聚力,弹性和起皱的形态。 Curli和纤维素的合成由三级转录因子(TF)级联控制,RNA聚合酶的RpoS sigma亚基位于顶部,MerR样TF MlrA和生物膜调节剂CsgD,带有两个c-di-GMP控件用作钥匙开关设备的模块。整个小RNA系列包括ArcZ,DsrA,RprA,McaS,OmrA / OmrB,GcvB和RydC,它们提供了额外的信号输入和微调功能,它们通过直接的mRNA相互作用来差分控制所有三个TF模块。这篇综述不仅总结了这些sRNA的作用机理,而且还探讨了这些sRNA及其靶向的调节剂如何有助于构建这些生物膜的引人入胜的三维微结构和宏观形态的问题。

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