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镁离子在RNA稳定性中的作用

On the role of magnesium ions in RNA stability.

作者信息

Misra V K, Draper D E

机构信息

Department of Chemistry, Johns Hopkins University, Baltimore, MD 21218, USA.

出版信息

Biopolymers. 1998;48(2-3):113-35. doi: 10.1002/(SICI)1097-0282(1998)48:2<113::AID-BIP3>3.0.CO;2-Y.

Abstract

Divalent cations, like magnesium, are crucial for the structural integrity and biological activity of RNA. In this article, we present a picture of how magnesium stabilizes a particular folded form of RNA. The overall stabilization of RNA by Mg2+ is given by the free energy of transferring RNA from a reference univalent salt solution to a mixed salt solution. This term has favorable energetic contributions from two distinct modes of binding: diffuse binding and site binding. In diffuse binding, fully hydrated Mg ions interact with the RNA via nonspecific long-range electrostatic interactions. In site binding, dehydrated Mg2+ interacts with anionic ligands specifically arranged by the RNA fold to act as coordinating ligands for the mental ion. Each of these modes has a strong coulombic contribution to binding; however, site binding is also characterized by substantial changes in ion solvation and other nonelectrostatic contributions. We will show how these energetic differences can be exploited to experimentally distinguish between these two classes of ions using analyses of binding polynomials. We survey a number of specific systems in which Mg(2+)-RNA interactions have been studied. In well-characterized systems such as certain tRNAs and some rRNA fragments these studies show that site-bound ions can play an important role in RNA stability. However, the crucial role of diffusely bound ions is also evident. We emphasize that diffuse binding can only be described rigorously by a model that accounts for long-range electrostatic forces. To fully understand the role of magnesium ions in RNA stability, theoretical models describing electrostatic forces in systems with complicated structures must be developed.

摘要

二价阳离子,如镁离子,对于RNA的结构完整性和生物活性至关重要。在本文中,我们展示了镁离子如何稳定RNA特定折叠形式的情况。Mg2+对RNA的整体稳定作用由RNA从参考单价盐溶液转移到混合盐溶液的自由能给出。该术语具有来自两种不同结合模式的有利能量贡献:扩散结合和位点结合。在扩散结合中,完全水合的镁离子通过非特异性长程静电相互作用与RNA相互作用。在位点结合中,脱水的Mg2+与由RNA折叠特异性排列的阴离子配体相互作用,作为金属离子的配位配体。这些模式中的每一种对结合都有很强的库仑贡献;然而,位点结合的特征还在于离子溶剂化的显著变化和其他非静电贡献。我们将展示如何利用这些能量差异,通过结合多项式分析来实验区分这两类离子。我们调查了许多研究Mg(2+)-RNA相互作用的特定系统。在某些特征明确的系统中,如某些tRNA和一些rRNA片段,这些研究表明,位点结合的离子在RNA稳定性中可以发挥重要作用。然而,扩散结合离子的关键作用也很明显。我们强调,扩散结合只能通过一个考虑长程静电力的模型来严格描述。为了充分理解镁离子在RNA稳定性中的作用,必须开发描述复杂结构系统中静电力的理论模型。

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