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Visualizing Motional Correlations in Molecular Dynamics using Geometric Deformations

机译:使用几何变形可视化分子动力学中的运动相关性

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In macromolecules, an allosteric effect is said to occur when a change at one site of a molecule affects a distant site. Understanding these allosteric effects can be important for understanding how the functions of complex molecules such as proteins are regulated. One potential application of this knowledge is the development of small molecules that alter the function of proteins involved in diseases. Studying motional correlation can help researchers to discover how a change at a source site affects the target site and thus how allosteric ligands that could serve as drugs are able to exert their therapeutic effects. By improving our ability to analyze these correlated relationships, it may be possible to develop new medications to combat deadly diseases such as Hepatitis C. We present four visual techniques which represent motional correlation on rendered three-dimensional molecular models, providing new ways to view clusters of correlated residues and paths of allosteric interactions. These techniques give us a new way of investigating the presence of motional correlations in complex molecules. We compare each of these techniques to determine which are the most useful for representing motional correlations.
机译:在大分子中,当分子的一个位点的变化影响远处时,就会发生变构作用。了解这些变构效应对于了解如何调节复杂分子(如蛋白质)的功能非常重要。该知识的一种潜在应用是开发可改变涉及疾病的蛋白质功能的小分子。对运动相关性的研究可以帮助研究人员发现源部位的变化如何影响靶部位,以及因此可以用作药物的变构配体如何发挥治疗作用。通过提高我们分析这些相关关系的能力,可能有可能开发出新的药物来对抗致命的疾病,例如丙型肝炎。我们提出了四种视觉技术,它们在渲染的三维分子模型上代表运动相关性,提供了查看聚类的新方法相关残基和变构相互作用的路径。这些技术为我们提供了研究复杂分子中运动相关性存在的新方法。我们比较了每种技术,以确定哪种技术最能代表运动相关性。

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