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核苷酸转移反应的过渡态类似物:五价钒酸盐和磷酸酯二价阴离子的结构与稳定性

Transition state analogues for nucleotidyl transfer reactions: Structure and stability of pentavalent vanadate and phosphate ester dianions.

作者信息

Borden James, Crans Debbie C, Florián Jan

机构信息

Department of Chemistry, Loyola University Chicago, Chicago, Illinois 60626,USA.

出版信息

J Phys Chem B. 2006 Aug 3;110(30):14988-99. doi: 10.1021/jp060168s.

Abstract

The structures and energy of phosphate dimethyl ester and vanadate dimethyl ester have been calculated using B3LYP/TZVP density functional quantum chemical methods and polarized continuum (PCM) and Langevin dipoles solvation models. These calculations were carried out to obtain fundamental information on the ability of vanadate esters to function as transition state analogues for the nucleotidyl transfer reaction catalyzed by DNA polymerases. Base-catalyzed methanolysis of the phosphate and vanadate dimethyl esters were the model reactions examined in this study. The structures of the phosphate and vanadate dimethyl esters and pentavalent intermediates in aqueous solution were optimized and evaluated at the PCM/B3LYP/TZVP level. The three-dimensional free energy surfaces for the studied reactions were determined at the PCM/B3LYP/TZVP//B3LYP/TZVP level. Comparison with experimental structural data obtained from the Cambridge Structural Database and with the observed kinetics of phosphate diester hydrolysis demonstrated that the level of theory chosen for these studies was appropriate. The results showed that structurally and electrostatically the vanadate dimethylester and a five-coordinate nearly trigonal bipyramidal intermediate were reasonable analogues for the parent phosphorus systems. Despite these similarities in structure, the energetics of the two systems were different, and the transition states of the two model reactions were found on different areas of the potential energy surface. When the binding energy of a transition state-DNA polymerase complex was extrapolated to a transition state analogue-DNA polymerase complex, the formation of a simple dianionic pentavalent vanadate ester adduct in the enzyme active site was not found to be sufficiently favorable. This finding suggests that additional stabilization of this adduct is needed before this type of transition state analogue will be likely to yield stable adducts with this class of enzymes. New possible candidates for such complexes are suggested.

摘要

采用B3LYP/TZVP密度泛函量子化学方法以及极化连续介质(PCM)和朗之万偶极子溶剂化模型,计算了磷酸二甲酯和钒酸二甲酯的结构与能量。进行这些计算是为了获取关于钒酸酯作为DNA聚合酶催化的核苷酸转移反应过渡态类似物功能的基本信息。本研究中考察的模型反应是磷酸酯和钒酸二甲酯的碱催化甲醇解。在PCM/B3LYP/TZVP水平下,对水溶液中磷酸二甲酯、钒酸二甲酯和五价中间体的结构进行了优化和评估。在PCM/B3LYP/TZVP//B3LYP/TZVP水平下确定了所研究反应的三维自由能面。与从剑桥结构数据库获得的实验结构数据以及观察到的磷酸二酯水解动力学进行比较,结果表明为这些研究选择的理论水平是合适的。结果表明,从结构和静电角度来看,钒酸二甲酯和五配位近三角双锥中间体是母体磷体系的合理类似物。尽管这两个体系在结构上有这些相似之处,但两个体系的能量学不同,并且在势能面的不同区域发现了两个模型反应的过渡态。当将过渡态 - DNA聚合酶复合物的结合能外推到过渡态类似物 - DNA聚合酶复合物时,未发现酶活性位点中简单的二价阴离子五价钒酸酯加合物的形成足够有利。这一发现表明,在这类过渡态类似物可能与这类酶产生稳定加合物之前,需要对该加合物进行额外的稳定化处理。还提出了此类复合物新的可能候选物。

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