首页> 外文期刊>Journal of Molecular Structure. Theochem: Applications of Theoretical Chemistry to Organic, Inorganic and Biological Problems >Interaction of psoralens with DNA-bases (I). An ab initio quantum chemical, density functional theory and second-order M?ller–Plesset perturbational study
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Interaction of psoralens with DNA-bases (I). An ab initio quantum chemical, density functional theory and second-order M?ller–Plesset perturbational study

机译:补骨脂素与DNA碱基的相互作用(I)。从头算量子化学,密度泛函理论和二阶M?ller-Plesset微扰研究

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摘要

High level quantum mechanical methods were used to study the intercalation complexes of psoralen and 8-methoxy psoralen with DNA. The energetics, structures and properties of isolated psoralen and 8-methoxy psoralen have been investigated. Their interactions with DNA bases and base pair were studied aiming to understand more about the nature of the intercalation binding forces between these intercalators and DNA. The geometry of adducts of psoralens with adenine and thymine as well as adenine–thymine base pair have been optimized in two main orientations, planar and stacked, by means of HF, DFT and MP2 levels of computation employing different basis sets. The different computational methods have been compared and the effect of the basis set has been discussed. The potential energy surface of the psoralen adducts with DNA-bases and base pair was explored and the global minimum was located for the planar adducts. The interaction energy ΔE was corrected for the basis set superposition error with the full counterpoise (CP) method, resulting in a more reliable estimation of the interaction energy. More reliable estimates of the interaction energy have been calculated using coupled-cluster methods (CCSD(T)). Effect of vertical distance and rotational angle between the stacked molecules on the interaction energy were investigated by the above three methods. Only, the MP2 method was shown to be valid for studying intercalation complexes. We found that, of the binding forces, charge transfer and dispersion play an important role with the latter predominating in our investigated systems. Ab initio methods which account for the electron correlation effects are the minimum level for studying the non-covalent interactions.
机译:用高级量子力学方法研究了补骨脂素和8-甲氧基补骨脂素与DNA的嵌入配合物。已经研究了分离的补骨脂素和8-甲氧基补骨脂素的能量,结构和性质。研究了它们与DNA碱基和碱基对的相互作用,旨在更多地了解这些嵌入剂与DNA之间的嵌入结合力的性质。补骨脂素与腺嘌呤和胸腺嘧啶以及腺嘌呤-胸腺嘧啶碱基对的加合物的几何结构已通过使用不同基集的HF,DFT和MP2计算水平在两个主要方向(平面和堆叠)上进行了优化。比较了不同的计算方法,并讨论了基集的效果。探索了具有DNA碱基和碱基对的补骨脂素加合物的势能面,并确定了平面加合物的整体最小值。使用完全平衡法(CP)方法针对基集叠加误差校正了相互作用能ΔE,从而可以更可靠地估计相互作用能。使用耦合簇方法(CCSD(T))已计算出更可靠的相互作用能估计。通过以上三种方法研究了分子间垂直距离和旋转角度对相互作用能的影响。仅MP2方法被证明对研究插层复合物有效。我们发现,在结合力中,电荷转移和分散起重要作用,后者在我们研究的系统中占主导地位。解决电子相关效应的从头算方法是研究非共价相互作用的最低水平。

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