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细菌中调控RNA对靶标的激活作用。

Target activation by regulatory RNAs in bacteria.

作者信息

Papenfort Kai, Vanderpool Carin K

机构信息

Department of Molecular Biology, Princeton University, Princeton, NJ 08540, USA Department of Biology I, Ludwig-Maximilians-University Munich, 82152 Martinsried, Germany

Department of Microbiology, University of Illinois at Urbana-Champaign, Urbana, IL 61801, USA.

出版信息

FEMS Microbiol Rev. 2015 May;39(3):362-78. doi: 10.1093/femsre/fuv016. Epub 2015 Apr 30.

Abstract

Bacterial small regulatory RNAs (sRNAs) are commonly known to repress gene expression by base pairing to target mRNAs. In many cases, sRNAs base pair with and sequester mRNA ribosome-binding sites, resulting in translational repression and accelerated transcript decay. In contrast, a growing number of examples of translational activation and mRNA stabilization by sRNAs have now been documented. A given sRNA often employs a conserved region to interact with and regulate both repressed and activated targets. However, the mechanisms underlying activation differ substantially from repression. Base pairing resulting in target activation can involve sRNA interactions with the 5(') untranslated region (UTR), the coding sequence or the 3(') UTR of the target mRNAs. Frequently, the activities of protein factors such as cellular ribonucleases and the RNA chaperone Hfq are required for activation. Bacterial sRNAs, including those that function as activators, frequently control stress response pathways or virulence-associated functions required for immediate responses to changing environments. This review aims to summarize recent advances in knowledge regarding target mRNA activation by bacterial sRNAs, highlighting the molecular mechanisms and biological relevance of regulation.

摘要

细菌小调节RNA(sRNA)通常通过与靶mRNA碱基配对来抑制基因表达。在许多情况下,sRNA与mRNA核糖体结合位点碱基配对并使其隔离,导致翻译抑制和转录本加速降解。相比之下,现在已有越来越多关于sRNA激活翻译和稳定mRNA的例子被记录下来。给定的sRNA通常利用一个保守区域与被抑制和被激活的靶标相互作用并进行调节。然而,激活的机制与抑制有很大不同。导致靶标激活的碱基配对可能涉及sRNA与靶mRNA的5′非翻译区(UTR)、编码序列或3′UTR的相互作用。通常,激活需要细胞核糖核酸酶和RNA伴侣Hfq等蛋白质因子的活性。细菌sRNA,包括那些起激活作用的sRNA,经常控制应激反应途径或对不断变化的环境做出即时反应所需的毒力相关功能。这篇综述旨在总结关于细菌sRNA激活靶mRNA的最新知识进展,突出调节的分子机制和生物学意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b8a0/4542691/accf6e05546c/fuv016fig1g.jpg

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