Physics Department T37, Technical University Munich, 85748 Garching, Germany.
J Phys Chem B. 2010 Nov 4;114(43):13815-22. doi: 10.1021/jp107495f.
The influence of the salts KCl, NaCl, and NaI at molar concentrations on the α-helical folding kinetics of the alanine-based oligopeptide Ace-AEAAAKEAAAKA-Nme is investigated by means of (explicit-water) molecular dynamics simulations and a diffusional analysis. The mean first passage times for folding and unfolding are found to be highly salt-specific. In particular, the folding times increase about 1 order of magnitude for the sodium salts. The drastic slowing can be traced to long-lived, compact configurations of the partially folded peptide, in which sodium ions are tightly bound by several carbonyl and carboxylate groups. This multiple trapping leads to a nonexponential residence time distribution of the cations in the first solvation shell of the peptide. The analysis of α-helical folding in the framework of diffusion in a reduced (one-dimensional) free energy landscape further shows that the salt not only specifically modifies equilibrium properties but also induces kinetic barriers due to individual ion binding. In the sodium salts, for instance, the peptide's configurational mobility (or "diffusivity") can decrease about 1 order of magnitude. This study demonstrates the highly specific action of ions and highlights the intimate coupling of intramolecular friction and solvent effects in protein folding.
采用(显式水)分子动力学模拟和扩散分析研究了摩尔浓度的 KCl、NaCl 和 NaI 盐对基于丙氨酸的寡肽 Ace-AEAAAKEAAAKA-Nme 的 α-螺旋折叠动力学的影响。发现折叠和展开的平均首次通过时间具有高度的盐特异性。特别是,对于钠盐,折叠时间增加了大约 1 个数量级。这种剧烈的减缓可以追溯到部分折叠肽的长寿命、紧凑构象,其中钠离子被几个羰基和羧基基团紧密结合。这种多重捕获导致阳离子在肽的第一溶剂化壳中的停留时间分布呈非指数型。在简化(一维)自由能景观中的扩散框架内对 α-螺旋折叠的分析还表明,盐不仅特异性地改变平衡性质,而且由于单个离子结合而诱导动力学障碍。例如,在钠盐中,肽的构象迁移率(或“扩散率”)可能降低大约 1 个数量级。这项研究证明了离子的高度特异性作用,并强调了分子内摩擦和溶剂效应在蛋白质折叠中的紧密耦合。