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首页> 外文期刊>Journal of Molecular Biology >Structural Mechanisms of Peptide Recognition and Allosteric Modulation of Gene Regulation by the RRNPP Family of Quorum-Sensing Regulators
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Structural Mechanisms of Peptide Recognition and Allosteric Modulation of Gene Regulation by the RRNPP Family of Quorum-Sensing Regulators

机译:RRNPP群体感应调节剂家族的肽识别和基因调控的变构调节的结构机制。

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The members of RRNPP family of bacterial regulators sense population density-specific secreted oligopeptides and modulate the expression of genes involved in cellular processes, such as sporulation, competence, virulence, biofilm formation, conjugative plasmid transfer and antibiotic resistance. Signaling by RRNPP regulators include several steps: generation and secretion of the signaling oligopeptides, re-internalization of the signaling molecules into the cytoplasm, signal sensing by the cytosolic RRNPP regulators, signal-specific allosteric structural changes in the regulators, and interaction of the regulators with their respective regulatory target and gene regulation. The recently determined structures of the RRNPP regulators provide insight into the mechanistic aspects for several steps in this signaling circuit. In this review, we discuss the structural principles underlying peptide specificity, regulatory target recognition, and ligand-induced allostery in RRNPP regulators and its impact on gene regulation. Despite the conserved tertiary structure of these regulators, structural analyses revealed unexpected diversity in the mechanism of activation and molecular strategies that couple the peptide-induced allostery to gene regulation. Although these structural studies provide a sophisticated understanding of gene regulation by RRNPP regulators, much needs to be learned regarding the target DNA binding by yet-to-be characterized RNPP regulators and the several aspects of signaling by Rgg regulators. (C) 2016 Elsevier Ltd. All rights reserved.
机译:RRNPP细菌调节剂家族的成员可感知种群密度特异性分泌的寡肽,并调节参与细胞形成过程的基因的表达,例如孢子形成,能力,毒力,生物膜形成,结合质粒转移和抗生素抗性。 RRNPP调节剂发出的信号包括几个步骤:信号寡肽的产生和分泌,信号分子重新内在化到细胞质中,胞质RRNPP调节剂进行信号感测,调节剂中信号特异性的变构结构改变以及调节剂的相互作用以及各自的调控目标和基因调控。最近确定的RRNPP调节器结构可深入了解此信号电路中几个步骤的机械方面。在这篇综述中,我们讨论了RRNPP调节剂中肽特异性,调节靶标识别和配体诱导的变构作用的基础结构原理及其对基因调节的影响。尽管这些调节剂的三级结构保守,但是结构分析显示出活化机制和分子策略中出乎意料的多样性,这些机制将肽诱导的变构与基因调控结合在一起。尽管这些结构研究提供了对RRNPP调控子对基因调控的深刻理解,但是关于尚未被表征的RNPP调控子与靶标DNA结合以及Rgg调控子的信号传导的许多方面,还需要学习很多知识。 (C)2016 Elsevier Ltd.保留所有权利。

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