Physics of Synthetic Biological Systems - E14, Physics Department and ZNN, Technische Universität München, Am Coulombwall 4a, 85748 Garching, Germany.
Nucleic Acids Res. 2022 May 6;50(8):4784-4798. doi: 10.1093/nar/gkac275.
Regulatory RNA molecules have been widely investigated as components for synthetic gene circuits, complementing the use of protein-based transcription factors. Among the potential advantages of RNA-based gene regulators are their comparatively simple design, sequence-programmability, orthogonality, and their relatively low metabolic burden. In this work, we developed a set of riboswitch-inspired riboregulators in Escherichia coli that combine the concept of toehold-mediated strand displacement (TMSD) with the switching principles of naturally occurring transcriptional and translational riboswitches. Specifically, for translational activation and repression, we sequestered anti-anti-RBS or anti-RBS sequences, respectively, inside the loop of a stable hairpin domain, which is equipped with a single-stranded toehold region at its 5' end and is followed by regulated sequences on its 3' side. A trigger RNA binding to the toehold region can invade the hairpin, inducing a structural rearrangement that results in translational activation or deactivation. We also demonstrate that TMSD can be applied in the context of transcriptional regulation by switching RNA secondary structure involved in Rho-dependent termination. Our designs expand the repertoire of available synthetic riboregulators by a set of RNA switches with no sequence limitation, which should prove useful for the development of robust genetic sensors and circuits.
调控 RNA 分子已被广泛研究作为合成基因电路的组成部分,补充了基于蛋白质的转录因子的使用。基于 RNA 的基因调节剂的潜在优势包括它们相对简单的设计、序列可编程性、正交性,以及它们相对较低的代谢负担。在这项工作中,我们在大肠杆菌中开发了一组受核糖体开关启发的核糖调控器,将 toehold 介导的链置换(TMSD)的概念与天然存在的转录和翻译核糖体开关的开关原理相结合。具体来说,对于翻译激活和抑制,我们分别将反反 RBS 或反 RBS 序列隔离在稳定发夹结构的环内,该发夹结构在其 5' 端配备有单链 toehold 区域,其 3' 端有受调控的序列。触发 RNA 与 toehold 区域结合可以入侵发夹,诱导导致翻译激活或失活的结构重排。我们还证明,TMSD 可以通过切换涉及 Rho 依赖性终止的 RNA 二级结构应用于转录调控。我们的设计通过一组没有序列限制的 RNA 开关扩展了可用的合成核糖调控器的范围,这对于开发稳健的遗传传感器和电路应该是有用的。