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Visual exploration of large normal mode spaces to study protein flexibility

机译:大型正常模式空间的视觉探索研究蛋白质的灵活性

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When studying the function of proteins, biochemists utilize normal mode decomposition to enable the analysis of structural changes on time scales that are too long for molecular dynamics simulation. Such a decomposition yields a high-dimensional parameter space that is too large to be analyzed exhaustively. We present a novel approach to reducing and exploring this vast space through the means of interactive visualization. Our approach enables the inference of relevant protein function from single structure dynamics through protein tunnel analysis while considering normal mode combinations spanning the whole normal modes space. Our solution, based on multiple linked 2D and 3D views, enables the quick and flexible exploration of individual modes and their effect on the dynamics of tunnels with relevance for the protein function. Once an interesting motion is identified, the exploration of possible normal mode combinations is steered via a visualization-based recommendation system. This helps to quickly identify a narrow, yet relevant set of normal modes that can be investigated in detail. Our solution is the result of close cooperation between visualization and the domain. The versatility and efficiency of our approach are demonstrated in several case studies. (C) 2020 Elsevier Ltd. All rights reserved.
机译:在研究蛋白质的功能时,Biochemist采用正常模式分解,使得对分子动力学模拟太长的时间尺度的结构变化的分析。这种分解产生了太大的高维参数空间,该空间太大而无法彻底地分析。我们提出了一种通过交互式可视化的手段来减少和探索这一巨大空间的新方法。我们的方法能够通过蛋白质隧道分析从单结构动力学推动相关蛋白质功能,同时考虑跨越整个正常模式空间的正常模式组合。我们的解决方案基于多个链接的2D和3D视图,可以快速灵活地探索各种模式及其对具有蛋白质功能相关性的隧道动态的影响。一旦识别出有趣的运动,就可以通过基于可视化的推荐系统对可能的正常模式组合进行探索。这有助于快速识别可以详细研究可以研究的狭窄但相关的正常模式集。我们的解决方案是可视化与域之间密切合​​作的结果。在几个案例研究中,我们的方法的多功能性和效率。 (c)2020 elestvier有限公司保留所有权利。

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