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小RNA分子的生理作用。

Physiological roles of small RNA molecules.

作者信息

Michaux Charlotte, Verneuil Nicolas, Hartke Axel, Giard Jean-Christophe

机构信息

Unité de Recherche Risques Microbiens (U2RM), Equipe Stress Virulence, Université de Caen, 14032 Caen, France.

Equipe Antibio-résistance, Université de Caen, 14032 Caen, France.

出版信息

Microbiology (Reading). 2014 Jun;160(Pt 6):1007-1019. doi: 10.1099/mic.0.076208-0. Epub 2014 Apr 2.

DOI:10.1099/mic.0.076208-0
PMID:24694375
Abstract

Unlike proteins, RNA molecules have emerged lately as key players in regulation in bacteria. Most reviews hitherto focused on the experimental and/or in silico methods used to identify genes encoding small RNAs (sRNAs) or on the diverse mechanisms of these RNA regulators to modulate expression of their targets. However, less is known about their biological functions and their implications in various physiological responses. This review aims to compile what is known presently about the diverse roles of sRNA transcripts in the regulation of metabolic processes, in different growth conditions, in adaptation to stress and in microbial pathogenesis. Several recent studies revealed that sRNA molecules are implicated in carbon metabolism and transport, amino acid metabolism or metal sensing. Moreover, regulatory RNAs participate in cellular adaptation to environmental changes, e.g. through quorum sensing systems or development of biofilms, and analyses of several sRNAs under various physiological stresses and culture conditions have already been performed. In addition, recent experiments performed with Gram-positive and Gram-negative pathogens showed that regulatory RNAs play important roles in microbial virulence and during infection. The combined results show the diversity of regulation mechanisms and physiological processes in which sRNA molecules are key actors.

摘要

与蛋白质不同,RNA分子最近已成为细菌调控中的关键角色。迄今为止,大多数综述都集中在用于鉴定编码小RNA(sRNA)的基因的实验和/或计算机方法上,或者集中在这些RNA调节因子调节其靶标表达的各种机制上。然而,人们对它们的生物学功能及其在各种生理反应中的影响了解较少。本综述旨在汇总目前已知的sRNA转录本在代谢过程调节、不同生长条件下、应激适应和微生物发病机制中的各种作用。最近的几项研究表明,sRNA分子与碳代谢和运输、氨基酸代谢或金属感应有关。此外,调节性RNA参与细胞对环境变化的适应,例如通过群体感应系统或生物膜的形成,并且已经对各种生理应激和培养条件下的几种sRNA进行了分析。此外,最近对革兰氏阳性和革兰氏阴性病原体进行的实验表明,调节性RNA在微生物毒力和感染过程中发挥着重要作用。综合结果显示了sRNA分子作为关键角色的调控机制和生理过程的多样性。

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