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原子模拟揭示金属离子在胍基-I核糖开关中配体结合的关键作用。

Atomistic Simulations Reveal Crucial Role of Metal Ions for Ligand Binding in Guanidine-I Riboswitch.

作者信息

Franke Leon, Globisch Christoph, Karakurt Mehmet Can, Stephan Theresa, Peter Christine

机构信息

Department of Chemistry, University of Konstanz, Universitätsstraße 10, 78457, Konstanz, Germany.

出版信息

Macromol Rapid Commun. 2024 Dec;45(24):e2400606. doi: 10.1002/marc.202400606. Epub 2024 Sep 3.

Abstract

Riboswitches are structured ribonucleic acid (RNA) segments that act as specific sensors for small molecules in bacterial metabolism. Due to the flexible nature of these highly charged macromolecules, molecular dynamics simulations are instrumental to investigating the mechanistic details of their regulatory function. In the present study, the guanidine-I riboswitch serves as an example of how atomistic simulations can shed light on the effect of ions on the structure and dynamics of RNA and on ligand binding. Relying on two orthologous crystal structures from different bacterial species, it is demonstrated how the ion setup crucially determines whether the simulation yields meaningful insights into the conformational stability of the RNA, functionally relevant residues and RNA-ligand interactions. The ion setup in this context includes diffuse ions in solution and bound ions associated directly with the RNA, in particular a triad of 2 Mg ions and a K ion in close proximity to the guanidinium binding site. A detailed investigation of the binding pocket reveals that the K from the ion triad plays a decisive role in stabilizing the ligand binding by stabilizing important localized interactions, which in turn contribute to the overall shape of the folded state of the RNA.

摘要

核糖开关是结构化的核糖核酸(RNA)片段,在细菌代谢中作为小分子的特定传感器。由于这些高电荷大分子具有柔性,分子动力学模拟有助于研究其调节功能的机制细节。在本研究中,胍-I核糖开关作为一个例子,展示了原子模拟如何揭示离子对RNA结构和动力学以及配体结合的影响。基于来自不同细菌物种的两个直系同源晶体结构,证明了离子设置如何关键地决定模拟是否能对RNA的构象稳定性、功能相关残基以及RNA-配体相互作用产生有意义的见解。在此背景下的离子设置包括溶液中的扩散离子和直接与RNA相关的结合离子,特别是在胍盐结合位点附近的2个镁离子和1个钾离子组成的三联体。对结合口袋的详细研究表明,离子三联体中的钾离子通过稳定重要的局部相互作用在稳定配体结合中起决定性作用,这反过来又有助于RNA折叠状态的整体形状。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f695/11661666/663500b64dc1/MARC-45-2400606-g005.jpg

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