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Influence of Na+ and Mg2+ ions on RNA structures studied with molecular dynamics simulations

机译:Na +和Mg2 +离子对RNA结构的影响的分子动力学模拟研究

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摘要

The structure of ribonucleic acid (RNA) polymers is strongly dependent on the presence of, in particular Mg2+ cations to stabilize structural features. Only in high-resolution X-ray crystallography structures can ions be identified reliably. Here, we perform molecular dynamics simulations of 24 RNA structures with varying ion concentrations. Twelve of the structures were helical and the others complex folded. The aim of the study is to predict ion positions but also to evaluate the impact of different types of ions (Na+ or Mg2+) and the ionic strength on structural stability and variations of RNA. As a general conclusion Mg2+ is found to conserve the experimental structure better than Na+ and, where experimental ion positions are available, they can be reproduced with reasonable accuracy. If a large surplus of ions is present the added electrostatic screening makes prediction of binding-sites less reproducible. Distinct differences in ion-binding between helical and complex folded structures are found. The strength of binding (ΔG for breaking RNA atom-ion interactions) is found to differ between roughly 10 and 26 kJ/mol for the different RNA atoms. Differences in stability between helical and complex folded structures and of the influence of metal ions on either are discussed.
机译:核糖核酸(RNA)聚合物的结构在很大程度上取决于是否存在Mg 2 + 阳离子来稳定结构特征。只有在高分辨率X射线晶体学结构中,才能可靠地识别离子。在这里,我们对24种具有不同离子浓度的RNA结构进行分子动力学模拟。其中的十二个结构是螺旋形的,其他的则是折叠的。该研究的目的是预测离子位置,同时评估不同类型的离子(Na + 或Mg 2 + )和离子强度对结构稳定性的影响。和RNA的变异。作为一般结论,发现Mg 2 + 比Na + 更好地保存了实验结构,并且在有可用离子位置的情况下,可以合理的精度复制它们。如果存在大量过量的离子,则增加的静电筛选功能会使结合位点的预测难以再现。发现在螺旋和复杂折叠结构之间离子结合的明显差异。发现不同RNA原子的结合强度(破坏RNA原子与离子相互作用的ΔG)大约在10至26 kJ / mol之间。讨论了螺旋形和复杂折叠结构之间的稳定性差异以及金属离子对二者的影响。

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