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一种通用的 RNA 力场:RNA 分子片段的能量极小值的综合分析。

A general RNA force field: comprehensive analysis of energy minima of molecular fragments of RNA.

机构信息

School of Information Science & Engineering, Lanzhou University, No. 222 South Tianshui Road, Lanzhou, 730000, China.

3M Corporate Research Analytical Laboratory, Saint Paul, MN, 55114, USA.

出版信息

J Mol Model. 2021 Apr 26;27(5):137. doi: 10.1007/s00894-021-04746-9.

Abstract

Force fields are actively used to study RNA. Development of accurate force fields relies on a knowledge of how the variation of properties of molecules depends on their structure. Detailed scrutiny of RNA's conformational preferences is needed to guide such development. Towards this end, minimum energy structures for each of a set of 16 small RNA-derived molecules were obtained by geometry optimization at the HF/6-31G(d,p), B3LYP/apc-1, and MP2/cc-pVDZ levels of theory. The number of minima computed for a given fragment was found to be related to both its size and flexibility. Atomic electrostatic multipole moments of atoms occurring in the [HO-P(O)-CH-] fragment of 30 sugar-phosphate-sugar geometries were calculated at the HF/6-31G(d,p) and B3LYP/apc-1 levels of theory, and the transferability of these properties between different conformations was investigated. The atomic multipole moments were found to be highly transferable between different conformations with small standard deviations. These results indicate necessary elements of the development of accurate RNA force fields.

摘要

力场被广泛应用于 RNA 的研究。精确力场的开发依赖于对分子性质如何随其结构而变化的了解。需要详细研究 RNA 的构象偏好,以指导这种开发。为此,通过在 HF/6-31G(d,p)、B3LYP/apc-1 和 MP2/cc-pVDZ 理论水平上进行几何优化,获得了一组 16 个小分子 RNA 衍生分子的每个分子的最低能量结构。对于给定片段计算的极小值的数量与片段的大小和灵活性都有关系。在 HF/6-31G(d,p)和 B3LYP/apc-1 理论水平上计算了 [HO-P(O)-CH-] 片段中出现的原子的静电原子多极矩,并研究了这些性质在不同构象之间的可转移性。原子多极矩在不同构象之间具有高度的可转移性,标准偏差较小。这些结果表明了开发精确 RNA 力场所需的必要元素。

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