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[使用原子-原子势函数对共面核酸碱基对中的相互作用进行模拟]

[Simulation of interactions in the co-planar nucleic acid base pairs using atom-atom potential functions].

作者信息

Poltev V I, Shuliupina N V

出版信息

Mol Biol (Mosk). 1984 Nov-Dec;18(6):1549-61.

PMID:6521736
Abstract

Calculations of the energy of nucleic acid base interactions as a function of parameters determining mutual position of two bases in a plane have been performed. Atom-atom potential functions used include terms proportional to the first (electrostatic), sixth (or tenth for the atoms of hydrogen bond) and 12th power of interatomic distance. The calculations have shown the existence of 27 energy minima which correspond to the formation of co-planar pairs with two (or three for G : C pair) almost linear N--H...O and N--H...N hydrogen bonds. The positions of nitrogen bases bound by two hydrogen bonds in every crystal of nucleic acid components, in the complexes of polynucleotides and in tRNA are near to the positions in one of these minima. In addition for every pair there exist energy minima which correspond to the formation of one N--H...O or N--H...N and one C--H...O or C--H...N hydrogen bond. Energy behavior near minima have been investigated. The results of our calculations are in agreement with experimental data and with the calculations which employ quantum mechanical results.

摘要

已针对核酸碱基相互作用能量作为确定平面内两个碱基相互位置的参数的函数进行了计算。所使用的原子 - 原子势函数包括与原子间距离的一次方(静电作用)、六次方(氢键原子为十次方)和十二次方成正比的项。计算表明存在27个能量最小值,它们对应于形成具有两个(G:C对为三个)几乎线性的N - H...O和N - H...N氢键的共面碱基对。在核酸组分的每个晶体、多核苷酸复合物和tRNA中,由两个氢键结合的氮碱基位置接近这些最小值之一中的位置。此外,对于每一对碱基,还存在对应于形成一个N - H...O或N - H...N以及一个C - H...O或C - H...N氢键的能量最小值。已研究了最小值附近的能量行为。我们的计算结果与实验数据以及采用量子力学结果的计算结果一致。

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