Liu Yun, Gregersen Brent A, Hengge Alvan, York Darrin M
Department of Chemistry, University of Minnesota, 207 Pleasant Street SE, Minneapolis, Minnesota 55455-0431, USA.
Biochemistry. 2006 Aug 22;45(33):10043-53. doi: 10.1021/bi060869f.
Primary and secondary kinetic and equilibrium isotope effects are calculated with density-functional methods for the in-line dianionic methanolysis of the native (unsubstituted) and thio-substituted cyclic phosphates. These reactions represent reverse reaction models for RNA transesterification under alkaline conditions. The effect of solvent is treated with explicit (single and double) water molecules and self-consistently with an implicit (continuum) solvation model. Singly substituted reactions at the nonbridging O(P1) position and bridging O(2)('), O(3)('), and O(5)(') positions and a doubly substituted reaction at the O(P1) and O(P2) positions were considered. Aqueous free energy barriers are calculated, and the structures and bond orders of the rate-controlling transition states are characterized. The results are consistent with available experimental data and provide useful information for the interpretation of measured isotope and thio effects used to probe mechanism in phosphoryl transfer reactions catalyzed by enzymes and ribozymes.
采用密度泛函方法计算了天然(未取代)和硫代取代环状磷酸酯的直链双阴离子甲醇解反应的一级和二级动力学及平衡同位素效应。这些反应代表了碱性条件下RNA酯交换反应的逆反应模型。溶剂效应通过显式(单分子和双分子)水分子进行处理,并与隐式(连续介质)溶剂化模型自洽。考虑了在非桥连O(P1)位置以及桥连O(2)(')、O(3)(')和O(5)(')位置的单取代反应,以及在O(P1)和O(P2)位置的双取代反应。计算了水相自由能垒,并对速率控制过渡态的结构和键级进行了表征。结果与现有实验数据一致,为解释用于探测酶和核酶催化的磷酰基转移反应机制的测量同位素和硫效应提供了有用信息。