Cassano Adam G, Anderson Vernon E, Harris Michael E
Center for RNA Molecular Biology and Department of Biochemistry, Case Western Reserve University School of Medicine, Cleveland, Ohio 44106, USA.
J Am Chem Soc. 2002 Sep 18;124(37):10964-5. doi: 10.1021/ja020823j.
Phosphodiester hydrolysis has been the subject of intense study due to its importance in biology. Despite the numerous significant analyses of phosphodiester cleavage mechansim, comparatively little is known about the nucleophiles in these reactions. To determine whether hydroxide acts as a nucleophile or a general base in the hydrolysis of thymidine-5'-p-nitrophenyl phosphate,we determined solvent deuterium isotope effects (D2Ok), ionic strength effects, and 18O isotope effects on the solvent nucleophile (18knuc). The D2Ok for hydroxide-catalyzed phosphodiester hydrolysis is slightly inverse (0.9 +/- 0.1), suggesting that a proton transfer does not occur in the transition state. A significant alpha effect is observed with hydroperoxide, demonstrating that oxyanions can act as nucleophiles in the reaction. Additionally, the ionic strength dependencies of hydroxide and hydroperoxide catalysis are indistinguishable, suggesting that they act by the same mechanism. Finally, the 18knuc for the hydroxide-catalyzed reaction is 1.068 +/- 0.007, well in excess of the equilibrium 18O isotope effect between water and hydroxide (1.040 +/- 0.003). Together, the data are most consistent with direct nucleophilic attack by hydroxide. From the observed 18knuc and the known equilibrium component, the kinetic component of the isotope effect was calculated to be 1.027 +/- 0.010. This large kinetic component suggests that little bond order to the nucleophile occurs in the transition state.
由于磷酸二酯水解在生物学中的重要性,它一直是深入研究的主题。尽管对磷酸二酯裂解机制进行了大量重要分析,但对于这些反应中的亲核试剂却知之甚少。为了确定在胸苷-5'-对硝基苯磷酸酯水解中氢氧根是作为亲核试剂还是一般碱起作用,我们测定了溶剂氘同位素效应(D2Ok)、离子强度效应以及对溶剂亲核试剂的18O同位素效应(18knuc)。氢氧根催化的磷酸二酯水解的D2Ok略呈反比(0.9±0.1),这表明在过渡态中没有发生质子转移。用过氧化物观察到显著的α效应,表明氧阴离子在反应中可作为亲核试剂。此外,氢氧根和过氧化物催化的离子强度依赖性无法区分,这表明它们通过相同的机制起作用。最后,氢氧根催化反应的18knuc为1.068±0.007,远超过水和氢氧根之间的平衡18O同位素效应(1.040±0.003)。总体而言,这些数据与氢氧根的直接亲核攻击最为一致。根据观察到的18knuc和已知的平衡组分,计算出同位素效应的动力学组分为1.027±0.010。这个大的动力学组分表明在过渡态中与亲核试剂的键级变化很小。