van der Vaart Arjan, Karplus Martin
Department of Chemistry and Chemical Biology, Harvard University, Cambridge, Massachusetts 02138, USA.
J Chem Phys. 2007 Apr 28;126(16):164106. doi: 10.1063/1.2719697.
An efficient method for the calculation of minimum free energy pathways and free energy profiles for conformational transitions is presented. Short restricted perturbation-targeted molecular dynamics trajectories are used to generate an approximate free energy surface. Approximate reaction pathways for the conformational change are constructed from one-dimensional line segments on this surface using a Monte Carlo optimization. Accurate free energy profiles are then determined along the pathways by means of one-dimensional adaptive umbrella sampling simulations. The method is illustrated by its application to the alanine "dipeptide." Due to the low computational cost and memory demands, the method is expected to be useful for the treatment of large biomolecular systems.
提出了一种计算构象转变的最小自由能路径和自由能分布的有效方法。使用短受限微扰靶向分子动力学轨迹生成近似自由能表面。利用蒙特卡罗优化从该表面上的一维线段构建构象变化的近似反应路径。然后通过一维自适应伞形采样模拟沿着路径确定精确的自由能分布。该方法通过应用于丙氨酸“二肽”进行了说明。由于计算成本低和内存需求小,该方法有望用于处理大型生物分子系统。