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金属离子与RNA的结合。

Metal ion binding to RNA.

作者信息

Auffinger Pascal, Grover Neena, Westhof Eric

机构信息

Architecture et Reactivite de l'ARN, Université de Strasbourg, IBMC, CNRS, 15 rue René Descartes, F-67084, Strasbourg, France.

出版信息

Met Ions Life Sci. 2011;9:1-35.

Abstract

RNA crystal structures have provided a wealth of information on localized metal ions that are bound to specific sites, such as the RNA deep groove, the Hoogsteen face of guanine nucleotides and anionic phosphate oxygens. With a number of crystal structures being solved with heavy metal derivatives and other "reporter" ions, sufficient information is available to estimate global similarities and differences in ion binding properties and to begin determining the influence of RNA and ions on each other. Here we will discuss the ions that are observed bound to RNA, their coordination properties, and the roles they play in RNA structural studies. Analysis of the crystallographic data reinforces the fact that ion interactions with nucleic acids are not easily interchanged between similarly charged ions. The physiological relevance of RNA-ion interactions, mainly involving K+ and Mg2+ cations, needs to be analyzed with care as different structures are solved under very diverse ionic conditions. The analysis is complicated by the fact that the assignment is not always accurate, often done under sub-optimal conditions, which further limits the generalization about the types of interactions these ions can establish.

摘要

RNA晶体结构提供了大量关于与特定位点结合的局部金属离子的信息,这些位点如RNA深沟、鸟嘌呤核苷酸的Hoogsteen面以及阴离子磷酸氧。随着许多重金属衍生物和其他“报告”离子的晶体结构得到解析,已有足够的信息来估计离子结合特性的整体异同,并开始确定RNA和离子之间的相互影响。在这里,我们将讨论观察到的与RNA结合的离子、它们的配位特性以及它们在RNA结构研究中所起的作用。对晶体学数据的分析强化了这样一个事实,即离子与核酸之间的相互作用在带相同电荷的离子之间不容易相互转换。RNA-离子相互作用的生理相关性,主要涉及钾离子和镁离子,由于在非常不同的离子条件下解析出了不同的结构,因此需要谨慎分析。由于分配并不总是准确的,而且通常是在次优条件下进行的,这一事实使分析变得复杂,这进一步限制了对这些离子所能建立的相互作用类型的概括。

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