Zhang Jing, Li Danbin, Zhang Jun, Chen Dongrong, Murchie Alastair I H
Fudan University Pudong Medical Center, Pudong, Shanghai 201399, China.
Key Laboratory of Metabolism and Molecular Medicine, Ministry of Education, School of Basic Medical Sciences, Fudan University, Shanghai 200032, China.
RNA. 2017 Apr;23(4):483-492. doi: 10.1261/rna.057539.116. Epub 2017 Jan 23.
Structured RNAs have a central role in cellular function. The capability of structured RNAs to adopt fixed architectural structures or undergo dynamic conformational changes contributes to their diverse role in the regulation of gene expression. Although numerous biophysical and biochemical tools have been developed to study structured RNAs, there is a continuing need for the development of new methods for the investigation of RNA structures, especially methods that allow RNA structure to be studied in solution close to its native cellular conditions. Here we use osmium tetroxide (OsO) as a chemical probe of RNA structure. In this method, we have used fluorescence-based sequencing technologies to detect OsO modified RNA. We characterized the requirements for OsO modification of RNA by investigating three known structured RNAs: the M-box, glycine riboswitch RNAs, and tRNA Our results show that OsO predominantly modifies RNA at uracils that are conformationally exposed on the surface of the RNA. We also show that changes in OsO reactivity at flexible positions in the RNA correlate with ligand-driven conformational changes in the RNA structure. Osmium tetroxide modification of RNA will provide insights into the structural features of RNAs that are relevant to their underlying biological functions.
结构化RNA在细胞功能中起着核心作用。结构化RNA采用固定结构或经历动态构象变化的能力,有助于其在基因表达调控中发挥多种作用。尽管已经开发了许多生物物理和生化工具来研究结构化RNA,但仍持续需要开发新方法来研究RNA结构,特别是能够在接近其天然细胞条件的溶液中研究RNA结构的方法。在这里,我们使用四氧化锇(OsO)作为RNA结构的化学探针。在这种方法中,我们使用基于荧光的测序技术来检测经OsO修饰的RNA。我们通过研究三种已知的结构化RNA:M盒、甘氨酸核糖开关RNA和tRNA,来表征RNA的OsO修饰所需条件。我们的结果表明,OsO主要在RNA表面构象暴露的尿嘧啶处修饰RNA。我们还表明,RNA中柔性位置的OsO反应性变化与RNA结构中配体驱动的构象变化相关。四氧化锇对RNA的修饰将为与RNA潜在生物学功能相关的结构特征提供见解。