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鸟嘌呤脱氨反应的机理研究:计算研究。

Mechanistic study of the deamination reaction of guanine: a computational study.

机构信息

Department of Chemistry, Memorial University, St. John's, Newfoundland, Canada A1B 3X7.

出版信息

J Phys Chem A. 2011 Mar 17;115(10):2065-76. doi: 10.1021/jp1120806. Epub 2011 Feb 22.

DOI:10.1021/jp1120806
PMID:21338176
Abstract

The mechanism for the deamination of guanine with H(2)O, OH(-), H(2)O/OH(-) and for GuaH(+) with H(2)O has been investigated using ab initio calculations. Optimized geometries of the reactants, transition states, intermediates, and products were determined at RHF/6-31G(d), MP2/6-31G(d), B3LYP/6-31G(d), and B3LYP/6-31+G(d) levels of theory. Energies were also determined at G3MP2, G3MP2B3, G4MP2, and CBS-QB3 levels of theory. Intrinsic reaction coordinate (IRC) calculations were performed to characterize the transition states on the potential energy surface. Thermodynamic properties (ΔE, ΔH, and ΔG), activation energies, enthalpies, and Gibbs free energies of activation were also calculated for each reaction investigated. All pathways yield an initial tetrahedral intermediate and an intermediate in the last step that dissociates to products via a 1,3-proton shift. At the G3MP2 level of theory, deamination with OH(-) was found to have an activation energy barrier of 155 kJ mol(-1) compared to 187 kJ mol(-1) for the reaction with H(2)O and 243 kJ mol(-1) for GuaH(+) with H(2)O. The lowest overall activation energy, 144 kJ mol(-1) at the G3MP2 level, was obtained for the deamination of guanine with H(2)O/OH(-). Due to a lack of experimental results for guanine deamination, a comparison is made with those of cytosine, whose deamination reaction parallels that of guanine.

摘要

使用从头算计算研究了鸟嘌呤与 H(2)O、OH(-)、H(2)O/OH(-)和 GuaH(+)与 H(2)O 反应的脱氨机制。在 RHF/6-31G(d)、MP2/6-31G(d)、B3LYP/6-31G(d) 和 B3LYP/6-31+G(d)理论水平下确定了反应物、过渡态、中间体和产物的优化几何形状。还在 G3MP2、G3MP2B3、G4MP2 和 CBS-QB3 理论水平下确定了能量。进行了内在反应坐标 (IRC) 计算以在势能表面上表征过渡态。还计算了每个反应的热力学性质 (ΔE、ΔH 和 ΔG)、活化能、焓和吉布斯自由能。所有途径都生成初始四面体型中间体和最后一步的中间体,该中间体通过 1,3-质子转移分解为产物。在 G3MP2 理论水平下,与 OH(-)反应的脱氨被发现具有 155 kJ mol(-1)的活化能势垒,而与 H(2)O 反应的脱氨为 187 kJ mol(-1),与 H(2)O 的 GuaH(+)反应为 243 kJ mol(-1)。在 G3MP2 水平下,鸟嘌呤与 H(2)O 的脱氨获得最低的总活化能,为 144 kJ mol(-1)。由于鸟嘌呤脱氨的实验结果缺乏,因此将其与胞嘧啶进行了比较,胞嘧啶的脱氨反应与鸟嘌呤相似。

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