Carr Joanne M, Wales David J
University Chemical Laboratories, Lensfield Road, Cambridge CB2 1EW, United Kingdom.
J Chem Phys. 2005 Dec 15;123(23):234901. doi: 10.1063/1.2135783.
The results of basin-hopping global optimization simulations are presented for four small, alpha-helical proteins described by a coarse-grained potential. A step-taking scheme that incorporates the local conformational preferences extracted from a large number of high-resolution protein structures is compared with an unbiased scheme. In addition, the discrete path sampling method is used to investigate the folding of one of the proteins, namely, the villin headpiece subdomain. Folding times from kinetic Monte Carlo simulations and iterative calculations based on a Markovian first-step analysis for the resulting stationary-point database are in good mutual agreement, but differ significantly from the experimental values, probably because the native state is not the global free energy minimum for the potential employed.
本文展示了使用粗粒度势描述的四种小型α-螺旋蛋白的盆地跳跃全局优化模拟结果。将一种纳入从大量高分辨率蛋白质结构中提取的局部构象偏好的步长方案与一种无偏方案进行了比较。此外,使用离散路径采样方法研究了其中一种蛋白质,即绒毛蛋白头部结构域的折叠。动力学蒙特卡罗模拟和基于所得驻点数据库的马尔可夫第一步分析的迭代计算得出的折叠时间相互吻合良好,但与实验值有显著差异,这可能是因为对于所采用的势,天然态并非全局自由能最小值。