Wakeman Catherine A, Winkler Wade C, Dann Charles E
Department of Biochemistry, The University of Texas Southwestern Medical Center, Dallas, TX 75390-9038, USA.
Trends Biochem Sci. 2007 Sep;32(9):415-24. doi: 10.1016/j.tibs.2007.08.005. Epub 2007 Aug 30.
Riboswitches, metabolite-sensing RNA elements that are present in untranslated regions of the transcripts that they regulate, possess extensive tertiary structure to couple metabolite binding to genetic control. Here we discuss recently published structures from four riboswitch classes and compare these natural RNA structures to those of in-vitro-selected RNA aptamers, which bind ligands similar to those of the riboswitches. In addition, we examine the glmS riboswitch - the first example of a ribozyme-based riboswitch. This RNA provides the latest twist in the riboswitch field and portends exciting advances in the coming years. Our knowledge of the mechanisms underlying genetic regulation by riboswitches has increased mightily in recent years and will continue to grow as new riboswitch classes and ligands are discovered and structurally characterized.
核糖开关是存在于其所调控转录本非翻译区的代谢物感应RNA元件,具有广泛的三级结构,可将代谢物结合与基因调控联系起来。在此,我们讨论最近发表的四类核糖开关的结构,并将这些天然RNA结构与体外筛选的RNA适体的结构进行比较,后者结合的配体与核糖开关的配体相似。此外,我们研究了 glmS 核糖开关——基于核酶的核糖开关的首个实例。这种RNA为核糖开关领域带来了最新变化,并预示着未来几年令人兴奋的进展。近年来,我们对核糖开关进行基因调控的潜在机制的了解大幅增加,随着新的核糖开关类别和配体被发现并进行结构表征,这一了解还将继续深入。