Khutorskiĭ V E, Poltev V I
Biofizika. 1976 Mar-Apr;21(2):201-7.
Calculations of intramolecular interaction energy of two-stranded helical homopolynucleotide in the function of nine conformational variables have been carried out by the method of atom-atom potential functions. Four of these variables determine mutual position of base pairs, other four--deoxiribose ring conformation and other one--orientation of this ring with respect to the base. For this purpose an algorythm connecting dependent variables with independent ones has been developed. The investigation of energy function has shown that in the space of conformational parameters there are two valleys, which correspond to A-and B-families of conformations. Experimentaly determined conformations of two-stranded helical polynucleotides are located along the bottoms of these valleys. Along the bottom of each valley the intramolecular interaction energy changes rather little when conformational parameters change within a wide range. The valleys are separated by an energetical barrier.
采用原子 - 原子势函数方法,对双链螺旋同聚核苷酸分子内相互作用能随九个构象变量的变化进行了计算。其中四个变量决定碱基对的相互位置,另外四个决定脱氧核糖环的构象,还有一个决定该环相对于碱基的取向。为此,开发了一种将因变量与自变量联系起来的算法。对能量函数的研究表明,在构象参数空间中有两个谷底,分别对应于A - 和B - 构象家族。实验测定的双链螺旋多核苷酸的构象位于这些谷底。沿着每个谷底,当构象参数在很宽的范围内变化时,分子内相互作用能变化很小。这些谷底由一个能量势垒隔开。