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从分子动力学模拟推断出的DNA碱基对步移变形性

DNA basepair step deformability inferred from molecular dynamics simulations.

作者信息

Lankas Filip, Sponer Jirí, Langowski Jörg, Cheatham Thomas E

机构信息

German Cancer Research Centre, 69120 Heidelberg, Germany.

出版信息

Biophys J. 2003 Nov;85(5):2872-83. doi: 10.1016/S0006-3495(03)74710-9.

Abstract

The sequence-dependent DNA deformability at the basepair step level was investigated using large-scale atomic resolution molecular dynamics simulation of two 18-bp DNA oligomers: d(GCCTATAAACGCCTATAA) and d(CTAGGTGGATGACTCATT). From an analysis of the structural fluctuations, the harmonic potential energy functions for all 10 unique steps with respect to the six step parameters have been evaluated. In the case of roll, three distinct groups of steps have been identified: the flexible pyrimidine-purine (YR) steps, intermediate purine-purine (RR), and stiff purine-pyrimidine (RY). The YR steps appear to be the most flexible in tilt and partially in twist. Increasing stiffness from YR through RR to RY was observed for rise, whereas shift and slide lack simple trends. A proposed measure of the relative importance of couplings identifies the slide-rise, twist-roll, and twist-slide couplings to play a major role. The force constants obtained are of similar magnitudes to those based on a crystallographic ensemble. However, the current data have a less complicated and less pronounced sequence dependence. A correlation analysis reveals concerted motions of neighboring steps and thus exposes limitations in the dinucleotide model. The comparison of DNA deformability from this and other studies with recent quantum-chemical stacking energy calculations suggests poor correlation between the stacking and flexibility.

摘要

利用两个18碱基对DNA寡聚物d(GCCTATAAACGCCTATAA)和d(CTAGGTGGATGACTCATT)的大规模原子分辨率分子动力学模拟,研究了碱基对步长水平上序列依赖性的DNA可变形性。通过对结构波动的分析,评估了所有10个独特步长相对于六个步长参数的谐振势能函数。在滚动的情况下,已识别出三组不同的步长:柔性嘧啶-嘌呤(YR)步长、中等嘌呤-嘌呤(RR)步长和刚性嘌呤-嘧啶(RY)步长。YR步长在倾斜方面似乎最灵活,在扭转方面部分灵活。对于上升,观察到从YR到RR再到RY的刚度增加,而位移和滑动缺乏简单趋势。一种提出的耦合相对重要性的度量方法确定了滑动-上升、扭转-滚动和扭转-滑动耦合起主要作用。获得的力常数与基于晶体学系综的力常数大小相似。然而,当前数据的序列依赖性较不复杂且不明显。相关性分析揭示了相邻步长的协同运动,从而暴露了二核苷酸模型的局限性。将本研究及其他研究中DNA可变形性与最近的量子化学堆积能计算进行比较,结果表明堆积与柔韧性之间的相关性较差。

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