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首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Gyration- and inertia-tensor-based collective coordinates for metadynamics. Application on the conformational behavior of polyalanine peptides and Trp-cage folding
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Gyration- and inertia-tensor-based collective coordinates for metadynamics. Application on the conformational behavior of polyalanine peptides and Trp-cage folding

机译:基于动力学和惯性张量的集体动力学元坐标。在聚丙氨酸肽的构象行为和色氨酸笼折叠中的应用

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摘要

Effective simulations of proteins, their complexes, and other amino-acid polymers such as peptides or peptoids are critically dependent on the performance of the simulation methods and their ability to map the conformational space of the molecule in question. The most important step in this process is the choice of the coordinates in which the conformational sampling will be executed and their uniqueness regarding the capability to unambiguously determine the energy minimum on the free-energy hypersurface. In the presented study, we show that metadynamics and chosen collective coordinates-the principal moments of the tensors of gyration and inertia, the principal radii of gyration around the principal axes, asphericity, acylindricity, and anisotropy-can be used as a powerful combination to map the conformational space of peptides and proteins. We show that the combination of these coordinates with metadynamics produces a powerful tool for the study of biologically relevant molecules.
机译:蛋白质,它们的复合物和其他氨基酸聚合物(如肽或类肽)的有效模拟在很大程度上取决于模拟方法的性能及其绘制所讨论分子构象空间的能力。此过程中最重要的步骤是选择要在其中执行构象采样的坐标,以及它们关于明确确定自由能超表面上的最小能量的能力的唯一性。在本研究中,我们表明,可以将元动力学和选定的集体坐标(回转和惯性张量的主要矩,绕主轴回转的主要半径,非球面度,复性和各向异性)作为有效的组合来使用绘制肽和蛋白质的构象空间。我们表明,这些坐标与元动力学的结合为生物学相关分子的研究产生了强大的工具。

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