Institute for Organic Chemistry and Chemical Biology, Max-von-Laue-Strasse 7, 60438 Frankfurt/M., Germany.
Department of Biology, Technical University of Darmstadt, Schnittspahnstrasse 10, 64287 Darmstadt, Germany.
Nucleic Acids Res. 2020 Dec 16;48(22):12415-12435. doi: 10.1093/nar/gkaa1013.
The current pandemic situation caused by the Betacoronavirus SARS-CoV-2 (SCoV2) highlights the need for coordinated research to combat COVID-19. A particularly important aspect is the development of medication. In addition to viral proteins, structured RNA elements represent a potent alternative as drug targets. The search for drugs that target RNA requires their high-resolution structural characterization. Using nuclear magnetic resonance (NMR) spectroscopy, a worldwide consortium of NMR researchers aims to characterize potential RNA drug targets of SCoV2. Here, we report the characterization of 15 conserved RNA elements located at the 5' end, the ribosomal frameshift segment and the 3'-untranslated region (3'-UTR) of the SCoV2 genome, their large-scale production and NMR-based secondary structure determination. The NMR data are corroborated with secondary structure probing by DMS footprinting experiments. The close agreement of NMR secondary structure determination of isolated RNA elements with DMS footprinting and NMR performed on larger RNA regions shows that the secondary structure elements fold independently. The NMR data reported here provide the basis for NMR investigations of RNA function, RNA interactions with viral and host proteins and screening campaigns to identify potential RNA binders for pharmaceutical intervention.
当前由β冠状病毒 SARS-CoV-2(SCoV2)引起的大流行情况突出了协调研究以抗击 COVID-19 的必要性。一个特别重要的方面是药物的开发。除了病毒蛋白,结构 RNA 元件作为药物靶点具有很大的潜力。寻找针对 RNA 的药物需要对其进行高分辨率结构表征。利用核磁共振(NMR)光谱技术,一个由 NMR 研究人员组成的全球联盟旨在表征 SCoV2 的潜在 RNA 药物靶点。在这里,我们报告了对位于 SCoV2 基因组 5'端、核糖体移码片段和 3'-非翻译区(3'-UTR)的 15 个保守 RNA 元件的特征描述,这些 RNA 元件的大规模生产和基于 NMR 的二级结构测定。NMR 数据得到了 DMS 足迹实验的二级结构探测的验证。与 DMS 足迹实验和对较大 RNA 区域进行的 NMR 实验相比,分离的 RNA 元件的 NMR 二级结构测定结果非常吻合,这表明二级结构元件独立折叠。这里报告的 NMR 数据为 RNA 功能的 NMR 研究、RNA 与病毒和宿主蛋白的相互作用以及筛选以识别潜在的 RNA 结合物以进行药物干预提供了基础。