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Theoretical Studies on the Hydrolysis of Phosphate Diesters in the Gas Phase, Solution, and RNase A

机译:气相,溶液和RNase A中磷酸二酯水解的理论研究

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Density functional theory, polarizable continuum models and semiempirical hybrid quantum mechanical/molecular mechanical (QM/MM) calculations were applied to the hydrolysis of phosphate diesters in the gas phase, in solution, and in the enzyme RNase A.Neutralization of the negative charge of the pentacovalent phosphorane intermediates provides a substantial stabilization of the transition-states structures in the gas phase. Inclusion of solvent effects on the phosphate/phosphorane species was critical to reproducing the trends in reactivity observed experimentally. Finally, the catalytic mechanism, for the hydrolysis of uridine 2',3'-cyclic phosphate by RNase A was studied by QM/MM calculations. Our results suggest that the rate-limiting transition state of the reaction corresponds to the approach of a water molecule to the phosphate and its activation by His119. Thus, His 119 acts as a generalized base for the reaction. The water attack leads to a pentacovalent phosphorane transition state of formal charge-2; this excess of negative charge in the transition state is stabilized by a number of positively charged residues including His 12 and Lys41. In the second stage of the reaction, the phosphorane is converted into products. This part of the reaction proceeds without a detectable barrier, and it is facilitated by a proton transfer from Lys41 to the departing O_(2').
机译:密度泛函理论,可极化连续体模型和半经验混合量子力学/分子力学(QM / MM)计算应用于气相,溶液中和酶RNase A中磷酸二酯的水解。五价膦烷中间体可为气相中的过渡态结构提供充分的稳定性。包括溶剂对磷酸盐/磷烷物种的影响对于重现实验观察到的反应性趋势至关重要。最后,通过QM / MM计算研究了RNase A水解尿苷2',3'-环状磷酸酯的催化机理。我们的结果表明,该反应的限速过渡态对应于水分子接近磷酸盐及其被His119活化的途径。因此,His 119可作为反应的一般基础。水的侵蚀导致形成正式电荷2的五价正膦过渡态;过渡态中过量的负电荷通过包括His 12和Lys41在内的许多带正电荷的残基得以稳定。在反应的第二阶段,将膦烷转化为产物。反应的这一部分在没有可检测的障碍的情况下进行,并且通过从Lys41到离去的O_(2')的质子转移而得以促进。

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