Mehdizadeh Aghdam Elnaz, Hejazi Mohammad Saeid, Barzegar Abolfazl
Department of Pharmaceutical Biotechnology, Faculty of Pharmacy, Tabriz University of Medical Sciences, Tabriz, Iran; Molecular Medicine Research Center, Tabriz University of Medical Sciences, Tabriz, Iran; Student Research Committee, Tabriz University of Medical Sciences, Tabriz, Iran.
Department of Pharmaceutical Biotechnology, Faculty of Pharmacy, Tabriz University of Medical Sciences, Tabriz, Iran; Molecular Medicine Research Center, Tabriz University of Medical Sciences, Tabriz, Iran.
Gene. 2016 Nov 5;592(2):244-59. doi: 10.1016/j.gene.2016.07.035. Epub 2016 Jul 16.
Riboswitches are generally located in 5'-UTR region of mRNAs and specifically bind small ligands. Following ligand binding, gene expression is controlled mostly by transcription termination, translation inhibition or mRNA degradation processes. More than 30 classes of known riboswitches have been identified by now. Most riboswitches consist of an aptamer domain and an expression platform. The aptamer domain of each class of riboswitch is a conserved structure and stabilizes specific structures of the expression platforms through binding to specific compounds. In this review, we are highlighting most aspects of riboswitch research including the novel riboswitch discoveries, routine methods for discovering and investigating riboswitches along with newly discovered classes and mechanistic principles of riboswitch-mediated gene expression control. Moreover, we will give an overview about the potential of riboswitches as therapeutic targets for antibiotic design and also their utilization as biosensors for molecular detection.
核糖开关通常位于mRNA的5'-UTR区域,能特异性结合小配体。配体结合后,基因表达主要通过转录终止、翻译抑制或mRNA降解过程来控制。到目前为止,已鉴定出30多种已知的核糖开关类别。大多数核糖开关由一个适体结构域和一个表达平台组成。每类核糖开关的适体结构域是一个保守结构,通过与特定化合物结合来稳定表达平台的特定结构。在这篇综述中,我们重点介绍了核糖开关研究的大多数方面,包括新型核糖开关的发现、发现和研究核糖开关的常规方法,以及新发现的核糖开关类别和核糖开关介导的基因表达控制的机制原理。此外,我们还将概述核糖开关作为抗生素设计治疗靶点的潜力,以及它们作为分子检测生物传感器的应用。