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揭示 RNA 三螺旋连接点的独特折叠相。

Revealing the distinct folding phases of an RNA three-helix junction.

机构信息

School of Applied and Engineering Physics, Cornell University, Ithaca, NY, USA.

Department of Chemistry and Institute for Computational Engineering and Sciences (ICES) University of Texas at Austin, Austin, TX, USA.

出版信息

Nucleic Acids Res. 2018 Aug 21;46(14):7354-7365. doi: 10.1093/nar/gky363.

Abstract

Remarkable new insight has emerged into the biological role of RNA in cells. RNA folding and dynamics enable many of these newly discovered functions, calling for an understanding of RNA self-assembly and conformational dynamics. Because RNAs pass through multiple structures as they fold, an ensemble perspective is required to visualize the flow through fleetingly populated sets of states. Here, we combine microfluidic mixing technology and small angle X-ray scattering (SAXS) to measure the Mg-induced folding of a small RNA domain, the tP5abc three helix junction. Our measurements are interpreted using ensemble optimization to select atomically detailed structures that recapitulate each experimental curve. Structural ensembles, derived at key stages in both time-resolved studies and equilibrium titrations, reproduce the features of known intermediates, and more importantly, offer a powerful new structural perspective on the time-progression of folding. Distinct collapse phases along the pathway appear to be orchestrated by specific interactions with Mg ions. These key interactions subsequently direct motions of the backbone that position the partners of tertiary contacts for later bonding, and demonstrate a remarkable synergy between Mg and RNA across numerous time-scales.

摘要

人们对 RNA 在细胞中的生物学作用有了新的认识。RNA 的折叠和动态变化使其具有许多新发现的功能,这就需要人们了解 RNA 的自组装和构象动力学。由于 RNA 在折叠过程中会经历多种结构,因此需要采用整体视角来可视化短暂存在的状态集的流动。在这里,我们结合微流混合技术和小角 X 射线散射(SAXS)来测量小 RNA 结构域 tP5abc 三螺旋连接的镁诱导折叠。我们使用整体优化来解释测量结果,以选择能够重现每个实验曲线的原子细节结构。在时间分辨研究和平衡滴定的关键阶段得出的结构整体,再现了已知中间产物的特征,更重要的是,为折叠的时间进程提供了一个强大的新结构视角。沿途径的明显崩溃阶段似乎是由与 Mg 离子的特定相互作用协调的。这些关键相互作用随后指导骨架的运动,为以后的键合定位三级接触的伴侣,并在多个时间尺度上展示了 Mg 和 RNA 之间的惊人协同作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f527/6101490/13586452a2eb/gky363fig1.jpg

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