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首页> 外文期刊>Journal of Biomolecular NMR >A comparison of methods for calculating NMR cross-relaxation rates (NOESY and ROESY intensities) in small peptides
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A comparison of methods for calculating NMR cross-relaxation rates (NOESY and ROESY intensities) in small peptides

机译:小肽中NMR交叉松弛率(NOESY和ROESY强度)的计算方法比较

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摘要

Three methods for calculating nuclear magnetic resonance cross-relaxation rates from molecular dynamics simulations of small flexible molecules have been compared in terms of their ability to reproduce relaxation data obtained experimentally and to produce consistent descriptions of the system. The importance of the accuracy of the simulation versus the amount of sampling of phase space has also been assessed by comparing different length simulations performed with different time step schemes. A nine-residue peptide from the protein HPr of index. E. Coli was used as a test system. The work shows that, in this case, single conformations or a limited ensemble of configurations are insufficient to properly describe the behavior of the peptide and that different approaches to incorporate molecular motions lead to significant differences in the cross-relaxation rates calculated. The correlation between the cross-relaxation rates calculated from simulations performed with different time step schemes was high and increased with increasing simulation length indicating that the extent of sampling is more important than the details of the atomic motion. [References: 41]
机译:从柔性小分子的分子动力学模拟中计算核磁共振交叉弛豫速率的三种方法已被比较,它们具有再现通过实验获得的弛豫数据并产生系统一致性描述的能力。通过比较在不同时间步长方案下执行的不同长度的仿真,还评估了仿真精度与相空间采样数量的重要性。来自指数HPr蛋白的九个残基肽。 E. Coli被用作测试系统。这项工作表明,在这种情况下,单一构象或有限的构象结合不足以恰当地描述肽的行为,而采用不同的分子运动方法可能会导致计算出的交叉松弛速率显着不同。由不同时间步长方案进行的仿真计算得出的交叉松弛速率之间的相关性很高,并且随着仿真长度的增加而增加,这表明采样程度比原子运动的细节更为重要。 [参考:41]

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