Babu C Satheesan, Lim Carmay
Institute of Biomedical Sciences, Academia Sinica, Taipei 115, Taiwan.
J Phys Chem A. 2006 Jan 19;110(2):691-9. doi: 10.1021/jp054177x.
We have presented a strategy for deriving ion-water van der Waals (vdW) parameters that implicitly include the microscopic solvent molecular effects around the ion. The strategy can be used to obtain vdW parameters for metal cations of the same formal charge and known experimental hydration free energies. In this work, it was applied to derive the vdW parameters for 24 divalent metal ions with measured hydration free energies ranging from -300 to -572 kcal/mol, coordination numbers (CNs) from 4 to 15, and ion-O (water) distances from 1.67 to 2.90 angstroms. The strategy used to derive the vdW parameters employs (1) a numerical procedure that links the coupling parameter used in free energy simulations with the experimental hydration free energies and (2) the first-shell CNs and structure for the entire series of divalent cations. One of the parameter sets obtained (referred to as MWc) simultaneously reproduces the observed (i) relative hydration free energies, (ii) first-shell CNs, and (iii) average ion-water distances of all the dications studied. In particular, the MWc parameters reproduce the observed (i) decrease in the CN from 6 for Cu2+ to 4 for Be2+, (ii) no change in the CN of 6 for dications with hydration free energies between those of Cu2+ and Cd2+, and (iii) an expansion of the CN from 6 for Cd2+ to 9.5 for Ba2+. The ion-water parameters derived herein represent a first step in the simulations of metalloproteins, which will also require potential energy functions incorporating polarizability, charge transfer, and other electronic effects to accurately model the protein-metal interactions in aqueous solution.
我们提出了一种推导离子 - 水范德华(vdW)参数的策略,该策略隐含地包含了离子周围微观溶剂分子的影响。此策略可用于获取具有相同形式电荷且已知实验水化自由能的金属阳离子的vdW参数。在这项工作中,它被应用于推导24种二价金属离子的vdW参数,这些离子的测量水化自由能范围为 - 300至 - 572千卡/摩尔,配位数(CNs)为4至15,离子 - O(水)距离为1.67至2.90埃。用于推导vdW参数的策略采用(1)一种数值程序,该程序将自由能模拟中使用的耦合参数与实验水化自由能联系起来,以及(2)整个二价阳离子系列的第一壳层CNs和结构。获得的其中一组参数(称为MWc)同时再现了所观察到的(i)相对水化自由能,(ii)第一壳层CNs,以及(iii)所有研究的二价阳离子的平均离子 - 水距离。特别是,MWc参数再现了所观察到的(i)从Cu2 +的6降至Be2 +的4的CN下降,(ii)水化自由能介于Cu2 +和Cd2 +之间的二价阳离子的6的CN没有变化,以及(iii)从Cd2 +的6扩展到Ba2 +的9.5的CN。本文推导的离子 - 水参数代表了金属蛋白模拟的第一步,这还需要包含极化率、电荷转移和其他电子效应的势能函数,以准确模拟水溶液中的蛋白质 - 金属相互作用。