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首页> 外文期刊>Journal of chemical theory and computation: JCTC >Computing pK_a Values with a Mixing Hamiltonian Quantum Mechanical/Molecular Mechanical Approach
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Computing pK_a Values with a Mixing Hamiltonian Quantum Mechanical/Molecular Mechanical Approach

机译:用混合哈密顿量子力学/分子力学方法计算pK_a值

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Accurate computation of the pK_a value of a compound in solution is important but challenging. Here, a new mixing quantum mechanical/molecular mechanical (QM/MM) Hamiltonian method is developed to simulate the free-energy change associated with the protonation/deprotonation processes in solution. The mixing Hamiltonian method is designed for efficient quantum mechanical free-energy simulations by alchemically varying the nuclear potential, i.e., the nuclear charge of the transforming nucleus. In pK_a calculation, the charge on the proton is varied in fraction between 0 and 1, corresponding to the fully deprotonated and protonated states, respectively. Inspired by the mixing potential QM/MM free energy simulation method developed previously [H. Hu and W. T. Yang, J. Chem. Phys. 200S, 123, 041102], this method succeeds many advantages of a large class of λ-coupled free-energy simulation methods and the linear combination of atomic potential approach. Theory and technique details of this method, along with the calculation results of the pK_a of methanol and methanethiol molecules in aqueous solution, are reported. The results show satisfactory agreement with the experimental data.
机译:准确计算溶液中化合物的pK_a值很重要,但具有挑战性。在这里,开发了一种新的混合量子力学/分子力学(QM / MM)哈密顿方法,以模拟与溶液中质子化/去质子化过程相关的自由能变化。混合哈密顿方法是通过炼金术地改变核势,即转化核的核电荷而设计的,用于有效的量子力学自由能模拟。在pK_a计算中,质子上的电荷分别在0和1之间变化,分别对应于完全去质子化和质子化的状态。受到先前开发的混合电位QM / MM自由能模拟方法的启发[H. Hu和W.T. Yang,J.Chem。物理[200S,123,041102],该方法继承了一大类λ耦合自由能模拟方法和原子势能线性组合方法的许多优点。报道了该方法的理论和技术细节,以及水溶液中甲醇和甲硫醇分子的pK_a的计算结果。结果表明与实验数据令人满意。

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