Shen Fusheng, Luo Zhipu, Liu Hehua, Wang Rui, Zhang Shenglong, Gan Jianhua, Sheng Jia
Department of Chemistry, University at Albany, State University of New York, Albany, NY 12222, USA.
The RNA Institute, University at Albany, State University of New York, Albany, NY 12222, USA.
Nucleic Acids Res. 2017 Apr 7;45(6):3537-3546. doi: 10.1093/nar/gkw1307.
2΄-5΄-linked RNAs play important roles in many biological systems. In addition, the mixture of 2΄-5΄ and 3΄-5΄ phosphodiester bonds have emerged as a plausible structural element in prebiotic RNAs. Toward our mechanistic studies of RNA folding and structures with heterogeneous backbones, we recently reported two crystal structures of a decamer RNA duplex containing two and six 2΄-5΄-linkages, showing how RNA duplexes adjust the structures to accommodate these non-canonical linkages (Proc. Natl. Acad. Sci. USA, 2014, 111, 3050-3055). Herein, we present two additional high-resolution crystal structures of the same RNA duplex containing four and eight 2΄-5΄-linkages at different positions, providing new insights into the effects of these modifications and a dynamic view of RNA structure changes with increased numbers of 2΄-5΄-linkages in the same duplex. Our results show that the local structural perturbations caused by 2΄-5΄ linkages can be distributed to nearly all the nucleotides with big ranges of changes in different geometry parameters. In addition, hydration pattern and solvation energy analysis indicate less favorable solvent interactions of 2΄-5΄-linkages comparing to the native 3΄-5΄-linkages. This study not only promotes our understanding of RNA backbone flexibility, but also provides a knowledge base for studying the biochemical and prebiotic significance of RNA 2΄-5΄-linkages.
2′-5′连接的RNA在许多生物系统中发挥着重要作用。此外,2′-5′和3′-5′磷酸二酯键的混合物已成为益生元RNA中一种合理的结构元件。为了对具有异质骨架的RNA折叠和结构进行机理研究,我们最近报道了一种含有两个和六个2′-5′连接的十聚体RNA双链体的两个晶体结构,展示了RNA双链体如何调整结构以容纳这些非经典连接(《美国国家科学院院刊》,2014年,111卷,3050 - 3055页)。在此,我们展示了同一RNA双链体在不同位置含有四个和八个2′-5′连接的另外两个高分辨率晶体结构,为这些修饰的影响提供了新的见解,并呈现了在同一双链体中随着2′-5′连接数量增加RNA结构变化的动态视图。我们的结果表明,由2′-5′连接引起的局部结构扰动可分布到几乎所有核苷酸,不同几何参数有大范围变化。此外,水合模式和溶剂化能分析表明,与天然的3′-5′连接相比,2′-5′连接的溶剂相互作用不太有利。这项研究不仅促进了我们对RNA骨架灵活性的理解,也为研究RNA 2′-5′连接的生化和益生元意义提供了知识库。