Poltev V I, Shulyupina N V
Institute of Biological Physics, USSR Academy of Sciences, Moscow Region.
J Biomol Struct Dyn. 1986 Feb;3(4):739-65. doi: 10.1080/07391102.1986.10508459.
Energy of interaction between nitrogen bases of nucleic acid has been calculated as a function of parameters determining the mutual position of two bases. Refined atom-atom potential functions are suggested. These functions contain terms proportional to the first (electrostatics), sixth (or tenth for the atoms forming a hydrogen bond) and twelfth (repulsion of all atoms) powers of interatomic distance. Calculations have shown that there are two groups of minima of the base interaction energy. The minima of the first group correspond to coplanar arrangement of the base pairs and hydrogen bond formation. The minima of the second group correspond to the position of bases one above the other in almost parallel planes. There are 28 energy minima corresponding to the formation of coplanar pairs with two (three for the G:C pair) almost linear N-H . . . O and (or) N-H . . . N hydrogen bonds. The position of nitrogen bases paired by two such H-bonds in any crystal of nucleic acid component in polynucleotide complexes and in tRNA is close to the position in one of these minima. Besides, for each pair there are energy minima corresponding to the formation of a single N-H . . . O or N-H . . . N and one C-H . . . O or C-H . . . N hydrogen bond. The form of potential surface in the vicinity of minima has been characterized. The results of calculations agree with the experimental data and with more rigorous calculations based on quantum-mechanical approach.
核酸中氮碱基之间的相互作用能已根据决定两个碱基相互位置的参数进行了计算。提出了改进的原子 - 原子势函数。这些函数包含与原子间距离的一次方(静电作用)、六次方(对于形成氢键的原子为十次方)和十二次方(所有原子间的排斥作用)成比例的项。计算表明,碱基相互作用能存在两组最小值。第一组最小值对应于碱基对的共面排列和氢键形成。第二组最小值对应于碱基在几乎平行的平面中一个位于另一个上方的位置。有28个能量最小值对应于形成具有两个(G:C对为三个)几乎线性的N - H...O和(或)N - H...N氢键的共面对。在多核苷酸复合物和tRNA中的任何核酸成分晶体中,由两个这样的氢键配对的氮碱基的位置接近这些最小值之一中的位置。此外,对于每一对,都有能量最小值对应于形成单个N - H...O或N - H...N以及一个C - H...O或C - H...N氢键。已对最小值附近的势面形式进行了表征。计算结果与实验数据以及基于量子力学方法的更严格计算结果一致。