Chernyi A A, Il'ychova I A, Zibrov A S, Shchyolkina A K, Borisova O F, Mamaeva O K, Florentiev V L
V.A. Engelhardt Institute of Molecular Biology, USSR Academy of Sciences, Moscow.
J Biomol Struct Dyn. 1990 Dec;8(3):513-27. doi: 10.1080/07391102.1990.10507826.
The paper presents results obtained in conformational analysis of homopolymeric four-stranded poly(dT).poly(dA).poly(dA).poly(dT) DNA helices in which the pairs of strands with identical bases are parallel and have a two-fold symmetry axis. All possible models of base binding to yield a symmetric complex have been considered. The dihedral angles of sugar-phosphate backbones and helix parameters, which are consistent with the minima of conformational energy for four-stranded DNAs, have been determined using the results of optimization of conformational energy calculated at atom-atom approximation. Potential energy is shown to depend on the structure of base complexes and on the mutual orientation of unlike strands. Possible biological functions of four-stranded helices are discussed.
本文介绍了在同聚四链体聚(dT)·聚(dA)·聚(dA)·聚(dT)DNA螺旋构象分析中获得的结果,其中具有相同碱基的链对是平行的且具有二重对称轴。已经考虑了产生对称复合物的所有可能的碱基结合模型。利用在原子-原子近似下计算的构象能量优化结果,确定了与四链DNA构象能量最小值一致的糖-磷酸主链二面角和螺旋参数。结果表明,势能取决于碱基复合物的结构以及不同链的相互取向。本文还讨论了四链螺旋可能的生物学功能。