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鸟嘌呤-鸟嘌呤堆积B-DNA的自洽场后量子化学特征

The post-SCF quantum chemistry characteristics of the guanine-guanine stacking B-DNA.

作者信息

Cysewski Piotr, Czyznikowska Zaneta, Zaleśny Robert, Czeleń Przemysław

机构信息

Department of Physical Chemistry, Collegium Medium, Nicolaus Copernicus University, Bydgoszcz, Poland.

出版信息

Phys Chem Chem Phys. 2008 May 21;10(19):2665-72. doi: 10.1039/b718635e. Epub 2008 Apr 14.

Abstract

The stacking interactions of two guanine molecules were analyzed detail at the DF-MP2/aug-cc-pVDZ level of theory for conformations appearing B-DNA. The dependence of intermolecular interaction energies on the pairs of step parameters (shift, slide, rise, tilt, roll and twist) was determined. The values of these parameters were chosen to cover the whole range of variability appearing crystallographic data. The scanning procedure was performed by subsequent changes of two variables with fixed values of the remaining base-pair and base-step BDNA parameters. Additionally, the hybrid variational-perturbational scheme was applied for the decomposition of the interaction energy into physically meaningful contributions at the MP2 level of theory. The significant impact of the mutual orientations of guanine bases was observed not only on the total intermolecular energy but also on its components. The second-order dispersion interaction is the most significant contribution to stabilization energy and is about eight times larger compared to the first-order electrostatic term with relaxation effects, which is also of stabilizing character. The dispersion interactions may vary up to 9.6 kcal mol(-1) between different guanine-guanine conformations. The parameters defining the mutual orientation of stacked guanine molecules have a different impact on the stabilization of the investigated complex. The following base-step parameters have only a minor impact on the stabilization energies: shift-slide, shift-roll, shift-twist, slide-twist and roll-twist. On the other hand, parameters such as rise and tilt significantly influence intermolecular interactions, i.e. strong attraction occurs only for a limited range of their values.

摘要

在DF-MP2/aug-cc-pVDZ理论水平下,对出现在B-DNA中的构象,详细分析了两个鸟嘌呤分子的堆积相互作用。确定了分子间相互作用能对步参数对(位移、滑动、上升、倾斜、滚动和扭转)的依赖性。选择这些参数的值以涵盖晶体学数据中出现的整个变化范围。扫描过程通过固定其余碱基对和碱基步BDNA参数的值,随后改变两个变量来进行。此外,在MP2理论水平下,应用混合变分-微扰方案将相互作用能分解为具有物理意义的贡献。观察到鸟嘌呤碱基的相互取向不仅对总分子间能量,而且对其组成部分都有显著影响。二阶色散相互作用是对稳定能的最显著贡献,与具有弛豫效应的一阶静电项相比,大约大八倍,一阶静电项也具有稳定性质。不同鸟嘌呤-鸟嘌呤构象之间的色散相互作用可能变化高达9.6 kcal mol(-1)。定义堆积鸟嘌呤分子相互取向的参数对所研究复合物的稳定性有不同影响。以下碱基步参数对稳定能只有轻微影响:位移-滑动、位移-滚动、位移-扭转、滑动-扭转和滚动-扭转。另一方面,诸如上升和倾斜等参数显著影响分子间相互作用,即仅在其值的有限范围内发生强吸引力。

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