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嘌呤结合型核糖开关的结构与机制。

Structure and mechanism of purine-binding riboswitches.

机构信息

Department of Chemistry and Biochemistry, University of Colorado at Boulder, 80309-0596, USA.

出版信息

Q Rev Biophys. 2012 Aug;45(3):345-81. doi: 10.1017/S0033583512000078. Epub 2012 Jul 31.

Abstract

A riboswitch is a non-protein coding sequence capable of directly binding a small molecule effector without the assistance of accessory proteins to regulate expression of the mRNA in which it is embedded. Currently, over 20 different classes of riboswitches have been validated in bacteria with the promise of many more to come, making them an important means of regulating the genome in the bacterial kingdom. Strikingly, half of the known riboswitches recognize effector compounds that contain a purine or related moiety. In the last decade, significant progress has been made to determine how riboswitches specifically recognize these compounds against the background of many other similar cellular metabolites and transduce this signal into a regulatory response. Of the known riboswitches, the purine family containing guanine, adenine and 2'-deoxyguanosine-binding classes are the most extensively studied, serving as a simple and useful paradigm for understanding how these regulatory RNAs function. This review provides a comprehensive summary of the current state of knowledge regarding the structure and mechanism of these riboswitches, as well as insights into how they might be exploited as therapeutic targets and novel biosensors.

摘要

核糖开关是一种非蛋白编码序列,能够在不借助辅助蛋白的情况下直接结合小分子效应物,从而调节其所在 mRNA 的表达。目前,已经在细菌中验证了超过 20 种不同类别的核糖开关,预计还会有更多的核糖开关被发现,这使得它们成为调节细菌基因组的重要手段。引人注目的是,已知的核糖开关中有一半识别的效应物化合物含有嘌呤或相关部分。在过去的十年中,在确定核糖开关如何特异性识别这些化合物,同时区分许多其他类似的细胞代谢物,并将这种信号转导为调节反应方面取得了重大进展。在已知的核糖开关中,嘌呤家族包括鸟嘌呤、腺嘌呤和 2'-脱氧鸟苷结合类,是研究最广泛的,它们为理解这些调节 RNA 的功能提供了一个简单而有用的范例。本文综述了目前关于这些核糖开关的结构和机制的知识状况,以及它们如何被用作治疗靶点和新型生物传感器的见解。

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