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用于模拟大规模大分子构象变化的新空间扭曲方法。

New space warping method for the simulation of large-scale macromolecular conformational changes.

作者信息

Jaqaman Khuloud, Ortoleva Peter J

机构信息

Department of Chemistry, Indiana University, Bloomington, Indiana 47405, USA.

出版信息

J Comput Chem. 2002 Mar;23(4):484-91. doi: 10.1002/jcc.10040.

Abstract

A space warping method, facilitating the modeling of large-scale conformational changes in mesoscopic systems, is presented. The method uses a set of "global (or collective) coordinates" that capture overall behavior, in conjunction with the set of atomic coordinates. Application of the space warping method to energy minimization is discussed. Several simulations where the method is used to determine the energy minimizing structures of simple central force systems are analyzed. Comparing the results and behavior of the space warping method to simulations involving atomic coordinates only, it is found that the space warping method scales better with system size and also finds lower minima when the potential energy surface has multiple minima. It is shown that the transformation of [Ala16]+ in vacuo from linear to globular is captured efficiently using the space warping method.

摘要

本文提出了一种空间扭曲方法,该方法有助于对介观系统中的大规模构象变化进行建模。该方法使用一组“全局(或集体)坐标”来捕获整体行为,并结合原子坐标集。文中讨论了空间扭曲方法在能量最小化方面的应用。分析了几个使用该方法确定简单中心力系统能量最小化结构的模拟。将空间扭曲方法的结果和行为与仅涉及原子坐标的模拟进行比较,发现空间扭曲方法在系统规模增大时表现更优,并且当势能面存在多个最小值时,它能找到更低的最小值。结果表明,使用空间扭曲方法可以有效地捕捉真空中 [Ala16]+ 从线性到球状的转变。

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