Department of Biology, University of North Carolina at Chapel Hill, Chapel Hill, North Carolina 27599, USA.
Lineberger Comprehensive Cancer Center, University of North Carolina at Chapel Hill, Chapel Hill, North Carolina 27514, USA.
RNA. 2022 Jan;28(1):88-96. doi: 10.1261/rna.079002.121. Epub 2021 Oct 20.
One proposed role for biomolecular condensates that contain RNA is translation regulation. In several specific contexts, translation has been shown to be modulated by the presence of a phase-separating protein and under conditions which promote phase separation, and likely many more await discovery. A powerful tool for determining the rules for condensate-dependent translation is the use of engineered RNA sequences, which can serve as reporters for translation efficiency. This Perspective will discuss design features to consider in engineering RNA reporters to determine the role of phase separation in translational regulation. Specifically, we will cover (i) how to engineer RNA sequence to recapitulate native protein/RNA interactions, (ii) the advantages and disadvantages for commonly used reporter RNA sequences, and (iii) important control experiments to distinguish between binding- and condensation-dependent translational repression. The goal of this review is to promote the design and application of faithful translation reporters to demonstrate a physiological role of biomolecular condensates in translation.
一种包含 RNA 的生物分子凝聚物的作用是翻译调控。在几种特定情况下,已经证明翻译受到相分离蛋白的存在和促进相分离的条件的调节,可能还有更多的有待发现。确定凝聚物依赖的翻译规则的有力工具是使用工程化的 RNA 序列,它可以作为翻译效率的报告器。本观点将讨论在工程化 RNA 报告器中考虑的设计特征,以确定相分离在翻译调控中的作用。具体来说,我们将涵盖 (i) 如何设计 RNA 序列来重现天然的蛋白质/RNA 相互作用,(ii) 常用报告 RNA 序列的优缺点,以及 (iii) 重要的对照实验,以区分结合和凝聚依赖性的翻译抑制。这篇综述的目的是促进忠实翻译报告器的设计和应用,以证明生物分子凝聚物在翻译中的生理作用。