Institute of Chemical Biology and Fundamental Medicine of the Siberian Branch of the Russian Academy of Science, Novosibirsk, Russia.
J Comput Chem. 2012 Mar 30;33(8):832-42. doi: 10.1002/jcc.22909. Epub 2012 Jan 25.
An advanced implicit solvent model of water-proton bath for protein simulations at constant pH is presented. The implicit water-proton bath model approximates the potential of mean force of a protein in water solvent in a presence of hydrogen ions. Accurate and fast computational implementation of the implicit water-proton bath model is developed using the continuum electrostatic Poisson equation model for calculation of ionization equilibrium and the corrected MSR6 generalized Born model for calculation of the electrostatic atom-atom interactions and forces. Molecular dynamics (MD) method for protein simulation in the potential of mean force of water-proton bath is developed and tested on three proteins. The model allows to run MD simulations of proteins at constant pH, to calculate pH-dependent properties and free energies of protein conformations. The obtained results indicate that the developed implicit model of water-proton bath provides an efficient way to study thermodynamics of biomolecular systems as a function of pH, pH-dependent ionization-conformation coupling, and proton transfer events.
本文提出了一种用于蛋白质模拟的 pH 恒定的质子溶剂化作用的先进隐式溶剂模型。该隐式水-质子浴模型近似于在氢离子存在下蛋白质在水溶剂中的平均力势能。通过连续静电泊松方程模型计算电离平衡,以及修正的 MSR6 广义 Born 模型计算静电原子-原子相互作用和力,实现了隐式水-质子浴模型的准确和快速计算实现。在水-质子浴平均力势中进行蛋白质分子动力学 (MD) 模拟的方法已经开发出来,并在三种蛋白质上进行了测试。该模型允许在 pH 恒定的条件下进行蛋白质 MD 模拟,以计算 pH 依赖性性质和蛋白质构象的自由能。所得结果表明,所开发的水-质子浴隐式模型为研究 pH 依赖性的生物分子系统的热力学提供了一种有效的方法,包括 pH 依赖性的离子化-构象偶联和质子转移事件。