Li Wenjin, Rudack Till, Gerwert Klaus, Gräter Frauke, Schlitter Jürgen
CAS-MPG Partner Institute and Key Laboratory for Computational Biology, Shanghai Institutes for Biological Sciences, Chinese Academy of Sciences, 320 Yue Yang Road, Shanghai 200031, China.
Heidelberg Institute for Theoretical Studies, Schloss-Wolfsbrunnenweg 35, 69118 Heidelberg, Germany.
J Chem Theory Comput. 2012 Oct 9;8(10):3596-604. doi: 10.1021/ct300022m. Epub 2012 May 29.
The mechanism of the hydrolysis of phosphate monoesters, a ubiquitous biological reaction, has remained under debate. We here investigated the hydrolysis of a nonenzymatic model system, the monomethyl phosphate dianion, by hybrid quantum mechanical and molecular mechanical simulations. The solvation effects were taken into account with explicit water. Detailed free energy landscapes in two-dimensional and three-dimensional space were resolved using the multidimensional potential of mean constraint force, a newly developed method that was demonstrated to be powerful for free energy calculations along multiple coordinates. As in previous theoretical studies, the associative and dissociative pathways were indistinguishable. Furthermore, the associative pathway was investigated in great detail. We propose a rotation of an O-H bond in the transition between two pentacoordinated structures, during which an overall transition state was identified with an activation energy of 50 kcal/mol. This is consistent with experimental data. The results support a concerted proton transfer from the nucleophilic water to the phosphate group, and then to the leaving group.
磷酸单酯水解是一种普遍存在的生物反应,其机制一直存在争议。我们在此通过量子力学和分子力学混合模拟研究了一种非酶模型系统——磷酸二甲酯二价阴离子的水解反应。采用显式水考虑溶剂化效应。利用新开发的多维平均约束力势解析二维和三维空间中的详细自由能面,该方法在沿多个坐标进行自由能计算方面已被证明非常有效。与之前的理论研究一样,缔合和解离途径难以区分。此外,对缔合途径进行了详细研究。我们提出在两个五配位结构之间的转变过程中,O-H键会发生旋转,在此期间确定了一个总活化能为50千卡/摩尔的整体过渡态。这与实验数据一致。结果支持亲核水向磷酸基团、然后向离去基团的协同质子转移。