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细菌应激反应期间mRNA稳定性的调控

Regulation of mRNA Stability During Bacterial Stress Responses.

作者信息

Vargas-Blanco Diego A, Shell Scarlet S

机构信息

Department of Biology and Biotechnology, Worcester Polytechnic Institute, Worcester, MA, United States.

Program in Bioinformatics and Computational Biology, Worcester Polytechnic Institute, Worcester, MA, United States.

出版信息

Front Microbiol. 2020 Sep 9;11:2111. doi: 10.3389/fmicb.2020.02111. eCollection 2020.

Abstract

Bacteria have a remarkable ability to sense environmental changes, swiftly regulating their transcriptional and posttranscriptional machinery as a response. Under conditions that cause growth to slow or stop, bacteria typically stabilize their transcriptomes in what has been shown to be a conserved stress response. In recent years, diverse studies have elucidated many of the mechanisms underlying mRNA degradation, yet an understanding of the regulation of mRNA degradation under stress conditions remains elusive. In this review we discuss the diverse mechanisms that have been shown to affect mRNA stability in bacteria. While many of these mechanisms are transcript-specific, they provide insight into possible mechanisms of global mRNA stabilization. To that end, we have compiled information on how mRNA fate is affected by RNA secondary structures; interaction with ribosomes, RNA binding proteins, and small RNAs; RNA base modifications; the chemical nature of 5' ends; activity and concentration of RNases and other degradation proteins; mRNA and RNase localization; and the stringent response. We also provide an analysis of reported relationships between mRNA abundance and mRNA stability, and discuss the importance of stress-associated mRNA stabilization as a potential target for therapeutic development.

摘要

细菌具有非凡的感知环境变化的能力,能够迅速调节其转录和转录后机制以做出响应。在导致生长缓慢或停止的条件下,细菌通常会在一种已被证明是保守的应激反应中稳定其转录组。近年来,各种研究阐明了许多mRNA降解的潜在机制,但对应激条件下mRNA降解调控的理解仍然难以捉摸。在这篇综述中,我们讨论了已被证明会影响细菌中mRNA稳定性的多种机制。虽然其中许多机制是转录特异性的,但它们为全局mRNA稳定的可能机制提供了见解。为此,我们汇编了有关mRNA命运如何受RNA二级结构、与核糖体、RNA结合蛋白和小RNA的相互作用、RNA碱基修饰、5'端的化学性质、核糖核酸酶和其他降解蛋白的活性和浓度、mRNA和核糖核酸酶定位以及严紧反应影响的信息。我们还对报道的mRNA丰度与mRNA稳定性之间的关系进行了分析,并讨论了应激相关的mRNA稳定作为治疗开发潜在靶点的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8501/7509114/7332c2c0c854/fmicb-11-02111-g001.jpg

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