Ulyanov N B, Schmitz U, Kumar A, James T L
Department of Pharmaceutical Chemistry, University of California, San Francisco 94143-0446.
Biophys J. 1995 Jan;68(1):13-24. doi: 10.1016/S0006-3495(95)80181-5.
Conformational flexibility of molecules in solution implies that different conformers contribute to the NMR signal. This may lead to internal inconsistencies in the 2D NOE-derived interproton distance restraints and to conflict with scalar coupling-based torsion angle restraints. Such inconsistencies have been revealed and analyzed for the DNA octamer GTATAATG.CATATTAC, containing the Pribnow box consensus sequence. A number of subsets of distance restraints were constructed and used in the restrained Monte Carlo refinement of different double-helical conformers. The probabilities of conformers were then calculated by a quadratic programming algorithm, minimizing a relaxation rate-base residual index. The calculated distribution of conformers agrees with the experimental NOE data as an ensemble better than any single structure. A comparison with the results of this procedure, which we term PARSE (Probability Assessment via Relaxation rates of a Structural Ensemble), to an alternative method to generate solution ensembles showed, however, that the detailed multi-conformational description of solution DNA structure remains ambiguous at this stage. Nevertheless, some ensemble properties can be deduced with confidence, the most prominent being a distribution of sugar puckers with minor populations in the N-region and major populations in the S-region. Importantly, such a distribution is in accord with the analysis of independent experimental data--deoxyribose proton-proton scalar coupling constants.
溶液中分子的构象灵活性意味着不同的构象异构体对核磁共振信号有贡献。这可能导致基于二维核欧沃豪斯效应(NOE)得出的质子间距离约束存在内部不一致性,并与基于标量耦合的扭转角约束产生冲突。对于包含普里布诺框共有序列的DNA八聚体GTATAATG.CATATTAC,这种不一致性已被揭示并分析。构建了许多距离约束子集,并将其用于不同双螺旋构象异构体的受限蒙特卡罗精修。然后通过二次规划算法计算构象异构体的概率,使基于弛豫率的残差指数最小化。计算得到的构象异构体分布作为一个整体比任何单一结构都更符合实验NOE数据。然而,将我们称为PARSE(通过结构整体的弛豫率进行概率评估)的这个过程的结果与生成溶液整体的另一种方法进行比较表明,目前溶液DNA结构的详细多构象描述仍然不明确。尽管如此,一些整体性质可以有把握地推导出来,最显著的是糖环构象的分布,其中N区域有少量群体,S区域有大量群体。重要的是,这样的分布与独立实验数据——脱氧核糖质子-质子标量耦合常数的分析结果一致。