Department of Molecular, Cellular and Developmental Biology, Department of Molecular Biophysics and Biochemistry, Howard Hughes Medical Institute, Yale University, New Haven, Connecticut 06520-8103.
Cold Spring Harb Perspect Biol. 2018 Nov 1;10(11):a032797. doi: 10.1101/cshperspect.a032797.
A growing collection of bacterial riboswitch classes is being discovered that sense central metabolites, coenzymes, and signaling molecules. Included among the various mechanisms of gene regulation exploited by these RNA regulatory elements are several that modulate messenger RNA (mRNA) translation. In this review, the mechanisms of riboswitch-mediated translation control are summarized to highlight both their diversity and potential ancient origins. These mechanisms include ligand-gated presentation or occlusion of ribosome-binding sites, control of alternative splicing of mRNAs, and the regulation of mRNA stability. Moreover, speculation on the potential for novel riboswitch discoveries is presented, including a discussion on the potential for the discovery of a greater diversity of mechanisms for translation control.
越来越多的细菌核糖开关类被发现,它们可以感应中心代谢物、辅酶和信号分子。这些 RNA 调控元件所利用的基因调控的各种机制中,有几种可以调节信使 RNA (mRNA) 翻译。在这篇综述中,总结了核糖开关介导的翻译控制机制,以突出它们的多样性和潜在的古老起源。这些机制包括配体门控呈现或封闭核糖体结合位点、控制 mRNA 的选择性剪接以及调节 mRNA 稳定性。此外,还对新的核糖开关发现的潜力进行了推测,包括讨论发现更多翻译控制机制的潜力。