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沃森-克里克 B-DNA 碱基对中结构变异性和分子间相互作用的本质。

Structural variability and the nature of intermolecular interactions in Watson-Crick B-DNA base pairs.

机构信息

Theoretical Chemistry Group, Institute of Physical and Theoretical Chemistry, Wrocław University of Technology, Wyb. Wyspianskiego 27, 50-370 Wrocław, Poland.

出版信息

J Phys Chem B. 2010 Jul 29;114(29):9629-44. doi: 10.1021/jp101258q.

Abstract

A set of nearly 100 crystallographic structures was analyzed using ab initio methods in order to verify the effect of the conformational variability of Watson-Crick guanine-cytosine and adenine-thymine base pairs on the intermolecular interaction energy and its components. Furthermore, for the representative structures, a potential energy scan of the structural parameters describing mutual orientation of the base pairs was carried out. The results were obtained using the hybrid variational-perturbational interaction energy decomposition scheme. The electron correlation effects were estimated by means of the second-order Møller-Plesset perturbation theory and coupled clusters with singles and doubles method adopting AUG-cc-pVDZ basis set. Moreover, the characteristics of hydrogen bonds in complexes, mimicking those appearing in B-DNA, were evaluated using topological analysis of the electron density. Although the first-order electrostatic energy is usually the largest stabilizing component, it is canceled out by the associated exchange repulsion in majority of the studied crystallographic structures. Therefore, the analyzed complexes of the nucleic acid bases appeared to be stabilized mainly by the delocalization component of the intermolecular interaction energy which, in terms of symmetry adapted perturbation theory, encompasses the second- and higher-order induction and exchange-induction terms. Furthermore, it was found that the dispersion contribution, albeit much smaller in terms of magnitude, is also a vital stabilizing factor. It was also revealed that the intermolecular interaction energy and its components are strongly influenced by four (out of six) structural parameters describing mutual orientation of bases in Watson-Crick pairs, namely shear, stagger, stretch, and opening. Finally, as a part of a model study, much of the effort was devoted to an extensive testing of the UBDB databank. It was shown that the databank quite successfully reproduces the electrostatic energy determined with the aid of ab initio methods.

摘要

使用从头算方法分析了近 100 个晶体结构,以验证 Watson-Crick 鸟嘌呤-胞嘧啶和腺嘌呤-胸腺嘧啶碱基对构象可变性对分子间相互作用能及其分量的影响。此外,针对代表性结构,对描述碱基对相互取向的结构参数进行了势能扫描。使用混合变分-微扰相互作用能分解方案得到了结果。电子相关效应通过二阶 Møller-Plesset 微扰理论和采用 AUG-cc-pVDZ 基组的单双激发耦合簇方法进行了估计。此外,使用电子密度拓扑分析评估了模拟 B-DNA 中氢键的特征。尽管一阶静电能通常是最大的稳定分量,但在大多数研究的晶体结构中,它被相关的交换排斥抵消了。因此,分析的核酸碱基复合物主要通过分子间相互作用能的离域分量稳定,根据对称适应微扰理论,该分量包含二阶和更高阶的诱导和交换诱导项。此外,发现尽管在量级上小得多,但色散贡献也是一个重要的稳定因素。还揭示了分子间相互作用能及其分量强烈受到描述 Watson-Crick 碱基对相互取向的四个(六个中的四个)结构参数的影响,即剪切、交错、拉伸和张开。最后,作为模型研究的一部分,大量工作致力于对 UBDB 数据库进行广泛测试。结果表明,该数据库非常成功地再现了借助从头算方法确定的静电能。

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