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Dynamic channels in biomolecular systems: Path analysis and visualization

机译:生物分子系统中的动态通道:路径分析和可视化

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Analysis of protein dynamics suggests that internal cavities and channels can be rather dynamic structures. Here, we present a Voronoi-based algorithm to extract the geometry and the dynamics of cavities and channels from a molecular dynamics trajectory. The algorithm requires a pre-processing step in which the Voronoi diagram of the van der Waals spheres is used to calculate the cavity structure for each coordinate set of the trajectory. In the next step, we interactively compute dynamic channels by analyzing the time evolution of components of the cavity structure. Tracing of the cavity dynamics is supported by timeline visualization tools that allow the user to select specific components of the cavity structures for detailed exploration. All visualization methods are interactive and enable the user to animate the time-dependent molecular structure together with its cavity structure. To facilitate a comprehensive overview of the dynamics of a channel, we have also developed a visualization technique that renders a dynamic channel in a single image and color-codes time on its extension surface. We illustrate the usefullness of our tools by inspecting the structure and dynamics of internal cavities in the bacteriorhodopsin proton pump.
机译:对蛋白质动力学的分析表明,内腔和通道可能是相当动态的结构。在这里,我们提出了一种基于Voronoi的算法,可从分子动力学轨迹中提取腔体和通道的几何形状以及动力学。该算法需要预处理步骤,在该步骤中,使用范德华球的Voronoi图来计算轨迹的每个坐标集的腔结构。在下一步中,我们将通过分析型腔结构组件的时间演变来交互式地计算动态通道。时间线可视化工具支持腔动力学的追踪,该工具允许用户选择腔结构的特定组件进行详细探索。所有可视化方法都是交互式的,使用户可以对与时间相关的分子结构及其腔结构进行动画处理。为了便于全面了解通道的动态,我们还开发了一种可视化技术,该技术可以在单个图像中渲染动态通道,并在其扩展表面上对时间进行颜色编码。我们通过检查细菌视紫红质质子泵内腔的结构和动力学来说明我们工具的有用性。

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