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Solution structure and dynamics of the A-T tract DNA decamer duplex d(GGTAATTACC)2: implications for recognition by minor groove binding drugs

机译:A-T脱氧核糖核酸双链体d(GGTAATTACC)2的溶液结构和动力学:小沟结合药物识别的意义

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pThe structure of the DNA decamer duplex d(GGTAATTACC)sub2/sub has been determined using NMR distance restraints and molecular dynamics simulations of 500 ps to 1 ns in aqueous solution at 300 K. Using both canonical A and canonical B starting structures [root-mean-square deviation (RMSD) 4.6 ?; 1 ? = 10sup-10/sup m], with and without experimental restraints, we show that all four simulations converge to a similar envelope of final conformations with B-like helical parameters (pairwise RMSD 1.27-2.03 ? between time-averaged structures). While the two restrained simulations reach a stable trajectory after 300-400 ps, the unrestrained trajectories take longer to equilibrate. We have analysed the dynamic aspects of these structures (sugar pucker, helical twist, roll, propeller twist and groove width) and show that the minor groove width in the AATT core of the duplex fluctuates significantly, sampling both wide and narrow conformations. The structure does not have the highly pre-organized narrow minor groove generally regarded as essential for recognition and binding by small molecules, suggesting that ligand binding carries with it a significant component of ‘induced-fit’. Our simulations show that there are significant differences in structure between the TpA step (where p = phosphate) and the ApA and ApT steps, where a large roll into the major groove at the TpA step appears to be an important factor in widening the minor groove at this position./p
机译:> DNA十聚体双链体d(GGTAATTACC) 2 的结构已通过NMR距离限制和在300 K水溶液中500 ps至1 ns的分子动力学模拟来确定。规范的B起始结构[均方根偏差(RMSD)4.6?; 1个= 10 -10 m],无论有没有实验约束,我们都显示所有四个模拟都收敛到最终构象的相似包络,并带有类似B的螺旋形参数(成对RMSD 1.27-2.03?平均结构)。虽然两个约束模拟在300-400 ps之后达到稳定的轨迹,但不受约束的轨迹需要更长的时间才能达到平衡。我们已经分析了这些结构的动态方面(糖皱,螺旋形扭曲,滚动,螺旋桨扭曲和凹槽宽度),并显示了双相AATT核中的较小凹槽宽度明显波动,同时采样了宽和窄构型。该结构没有通常被视为对小分子识别和结合必不可少的高度预先组织的狭窄小沟,这表明配体结合带有“诱导拟合”的重要组成部分。我们的仿真表明,TpA步骤(其中p =磷酸盐)与ApA和ApT步骤之间在结构上存在显着差异,其中在TpA步骤中大卷入主凹槽似乎是加宽小凹槽的重要因素在这个位置。

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