Whitnell Robert M, Hurst Dow P, Reggio Patricia H, Guarnieri Frank
Chemistry Department, Guilford College, Greensboro, North Carolina 27410, USA.
J Comput Chem. 2008 Apr 15;29(5):741-52. doi: 10.1002/jcc.20822.
Conformational Memories (CM) is a simulated annealing/Monte Carlo method that explores peptide and protein dihedral conformational space completely and efficiently, independent of the original conformation. Here we extend the CM method to include the variation of a randomly chosen bond angle, in addition to the standard variation of two or three randomly chosen dihedral angles, in each Monte Carlo trial of the CM exploratory and biased phases. We test the hypothesis that the inclusion of variable bond angles in CM leads to an improved sampling of conformational space. We compare the results with variable bond angles to CM with no bond angle variation for the following systems: (1) the pentapeptide Met-enkephalin, which is a standard test case for conformational search methods; (2) the proline ring pucker in a 17mer model peptide, (Ala)(8)Pro(Ala)(8); and (3) the conformations of the Ser 7.39 chi(1) in transmembrane helix 7 (TMH7) of the cannabinoid CB1 receptor, a 25-residue system. In each case, analysis of the CM results shows that the inclusion of variable bond angles results in sampling of regions of conformational space that are inaccessible to CM calculations with only variable dihedral angles, and/or a shift in conformational populations from those calculated when variable bond angles are not included. The incorporation of variable bond angles leads to an improved sampling of conformational space without loss of efficiency. Our examples show that this improved sampling leads to better exploration of biologically relevant conformations that have been experimentally validated.
构象记忆(CM)是一种模拟退火/蒙特卡罗方法,可完全有效地探索肽和蛋白质二面角构象空间,与原始构象无关。在此,我们扩展了CM方法,除了在CM探索阶段和偏向阶段的每次蒙特卡罗试验中对两个或三个随机选择的二面角进行标准变化外,还包括一个随机选择的键角的变化。我们检验了在CM中纳入可变键角会导致构象空间采样得到改善的假设。我们将可变键角的结果与无键角变化的CM结果进行比较,用于以下系统:(1)五肽甲硫氨酸脑啡肽,这是构象搜索方法的标准测试案例;(2)17聚体模型肽(Ala)8Pro(Ala)8中的脯氨酸环皱;(3)大麻素CB1受体跨膜螺旋7(TMH7)中Ser 7.39 χ1的构象,这是一个25个残基的系统。在每种情况下,对CM结果的分析表明,纳入可变键角会导致仅使用可变二面角的CM计算无法访问的构象空间区域的采样,和/或构象群体从不包括可变键角时计算的群体发生转移。可变键角的纳入导致构象空间采样得到改善且效率不损失。我们的例子表明,这种改进的采样能更好地探索已通过实验验证的生物学相关构象。