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RNA热传感器介导的温度驱动差异基因表达

Temperature-driven differential gene expression by RNA thermosensors.

作者信息

Krajewski Stefanie Sandra, Narberhaus Franz

机构信息

Microbial Biology, Ruhr University Bochum, Bochum, Germany.

Microbial Biology, Ruhr University Bochum, Bochum, Germany.

出版信息

Biochim Biophys Acta. 2014 Oct;1839(10):978-988. doi: 10.1016/j.bbagrm.2014.03.006. Epub 2014 Mar 21.

Abstract

Many prokaryotic genes are organized in operons. Genes organized in such transcription units are co-transcribed into a polycistronic mRNA. Despite being clustered in a single mRNA, individual genes can be subjected to differential regulation, which is mainly achieved at the level of translation depending on initiation and elongation. Efficiency of translation initiation is primarily determined by the structural accessibility of the ribosome binding site (RBS). Structured cis-regulatory elements like RNA thermometers (RNATs) can contribute to differential regulation of individual genes within a polycistronic mRNA. RNATs are riboregulators that mediate temperature-responsive regulation of a downstream gene by modulating the accessibility of its RBS. At low temperature, the RBS is trapped by intra-molecular base pairing prohibiting translation initiation. The secondary structure melts with increasing temperature thus liberating the RBS. Here, we present an overview of different RNAT types and specifically highlight recently discovered RNATs. The main focus of this review is on RNAT-based differential control of polycistronic operons. Finally, we discuss the influence of temperature on other riboregulators and the potential of RNATs in synthetic RNA biology. This article is part of a Special Issue entitled: Riboswitches.

摘要

许多原核基因以操纵子的形式组织。以这种转录单元组织的基因被共同转录成多顺反子mRNA。尽管聚集在单个mRNA中,但各个基因可受到差异调控,这主要在翻译水平上通过起始和延伸来实现。翻译起始效率主要由核糖体结合位点(RBS)的结构可及性决定。像RNA温度计(RNATs)这样的结构化顺式调控元件可促成多顺反子mRNA内各个基因的差异调控。RNATs是核糖调节因子,通过调节下游基因RBS的可及性来介导对其温度响应性调控。在低温下,RBS被分子内碱基配对所捕获,从而阻止翻译起始。随着温度升高,二级结构解链,从而释放RBS。在此,我们概述了不同类型的RNATs,并特别强调了最近发现的RNATs。本综述的主要重点是基于RNAT的多顺反子操纵子差异控制。最后,我们讨论了温度对其他核糖调节因子的影响以及RNATs在合成RNA生物学中的潜力。本文是名为“核糖开关”的特刊的一部分。

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