Université de Reims Champagne-Ardenne, CNRS, MEDyC, Reims, France.
Université de Reims Champagne-Ardenne, CNRS, MEDyC, Reims, France.
J Mol Graph Model. 2024 Dec;133:108876. doi: 10.1016/j.jmgm.2024.108876. Epub 2024 Oct 5.
Molecular dynamics (MD) simulations are important tools for studying the dynamic motions of macromolecules at the atomic level. With the increasing capabilities of high performance computing, MD simulations are becoming more widely used. This allows molecular modelers to simulate the molecular behavior of large molecular architectures for much longer trajectories. Appropriate visualization of MD trajectories is becoming essential to provide an immediate and intuitive understanding of a molecule's dynamics and function. In this study, we implement a novel 3D graphical representation, Dynamical Sheets Helper for RepresentAtion of SurfAce Descriptors (Dy-SheHeRASADe), to visualize the β sheet secondary structures of proteins in the context of molecular dynamics. Dy-SheHeRASADe is developed in UnityMol, an open source molecular viewer and prototyping platform. We considered β sheet fluctuations and hydrogen bond formation during molecular dynamics simulations to characterize the parts of β sheets with large motions or with labile bonds. We propose two visualization modes based on a surface representation of the β sheets calculated according to the positions of the α carbons and the hydrogen bonds between the β strands. The volumetric mode, in which this surface is enclosed in a semi-transparent volume that represents the fluctuation zone of the sheet during dynamics. The heatmap mode, in which the surface is colored according to the amplitude values of the α carbons. In addition, we quantify the β sheet fluctuations by displaying the values of the largest and smallest movements of the β sheets, the surface area of the sheets, and the number of hydrogen bonds.
分子动力学(MD)模拟是研究大分子在原子水平上动态运动的重要工具。随着高性能计算能力的不断提高,MD 模拟的应用越来越广泛。这使得分子建模人员能够模拟更大分子结构的分子行为,从而获得更长的轨迹。适当的 MD 轨迹可视化对于提供对分子动态和功能的直观理解变得至关重要。在这项研究中,我们实现了一种新颖的 3D 图形表示方法,即用于表示表面描述符的动态薄片助手(Dynamical Sheets Helper for RepresentAtion of SurfAce Descriptors,Dy-SheHeRASADe),用于在分子动力学背景下可视化蛋白质的β折叠二级结构。Dy-SheHeRASADe 是在开源分子查看器和原型制作平台 UnityMol 中开发的。我们考虑了在分子动力学模拟过程中β折叠的波动和氢键的形成,以表征具有较大运动或不稳定键的β折叠部分。我们提出了两种基于根据α碳原子位置和β链之间氢键计算的β折叠表面表示的可视化模式。体积模式,其中该表面被封闭在半透明体积中,该体积表示在动力学过程中薄片的波动区域。热图模式,其中表面根据α碳原子的振幅值着色。此外,我们通过显示β折叠的最大和最小运动值、折叠面积和氢键数来量化β折叠的波动。