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Aligning Experimental and Theoretical Anisotropic B-Factors: Water Models, Normal-Mode Analysis Methods, and Metrics

机译:对齐实验性和理论各向异性B因素:水模型,正态分析方法和度量

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The strength of X-ray crystallography in providing the information for protein dynamics has been under appreciated. The anisotropic B-factors (ADPs) from high-resolution structures are invaluable in studying the relationship among structure, dynamics, and function. Here, starting from an in-depth evaluation of the metrics used for comparing the overlap between two ellipsoids, we applied normal-mode analysis (NMA) to predict the theoretical ADPs and then align them with experimental results. Adding an extra layer of explicitly treated water on protein surface significantly improved the energy minimization results and better reproduced the anisotropy of experimental ADPs. In comparing experimental and theoretical ADPs, we focused on the overlap in shape, the alignment of dominant directions, and the similarity in magnitude. The choices of water molecules, NMA methods, and the metrics for evaluating the overlap of ADPs determined final results. This study provides useful information for exploring the physical basis and the application potential of experimental ADPs.
机译:X射线晶体学在提供蛋白质动力学信息方面的实力已受到赞赏。高分辨率结构中的各向异性B因子(ADP)对于研究结构,动力学和功能之间的关系非常有价值。在这里,从对用于比较两个椭球之间重叠的指标进行深入评估开始,我们应用了正常模式分析(NMA)来预测理论ADP,然后将它们与实验结果对齐。在蛋白质表面添加额外的经过明确处理的水层可显着改善能量最小化效果,并更好地再现实验ADP的各向异性。在比较实验和理论ADP时,我们集中于形状的重叠,主导方向的对齐以及幅度的相似性。水分子的选择,NMA方法以及用于评估ADP重叠的度量确定了最终结果。这项研究为探索实验ADP的物理基础和应用潜力提供了有用的信息。

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