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Kinetics and structural aspects of the cisplatin interactions with guanine: A quantum mechanical description

机译:顺铂与鸟嘌呤相互作用的动力学和结构方面:量子力学描述

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The interaction of cisplatin with guanine DNA bases has been investigated using ab initio Hartree-Fock (HF) and density functional levels of theory in gas phase and aqueous solution. The overall process was divided into three steps: the reaction of the monoaqua [Pt(NH3)(2)Cl(H2O)](+) species with guanine (G) (reaction 1), the hydrolysis process yielding the adduct [Pt(NH3)(2)(G) (H2O)](2+) (reaction 2) and the reaction with a second guanine leading to the product [Pt(NH3)(2)(G)(2)](2+) (reaction 3). The functionals B3LYP, BHandH, and mPW1PW91 were used in the present study, to develop an understanding of the role of the distinct models. The geometries presented for the intermediate structures were obtained by IRC calculations from the transition state structure for each reaction. The structural analysis for the intermediates and transition states showed that hydrogen bonds with the guanine O6 atom play an important role in stabilizing these species. The geometries were not very sensitive to the level of theory applied with the HF level, giving a satisfactory overall performance. However, the energy barriers and the rate constants were found to be strongly dependent on the level of calculation and basis set, with the DFT calculations giving more accurate results. For reaction 1 the rate constant calculated in aqueous solution at PCM-BH and H/6-311G* (k(1) = 7.55 X 10(-1) M-1 s(-1)) was in good agreement with the experiment (5.4 X 10(-1) M-1 s(-1)). The BH and H/6-31G* calculated gas phase rate constants for reactions 2 and 3 were: k(2) = 0.9 X 10(-6) M-1 s(-1) and k(3) = 2.99 X 10(-4) M-1 s(-1) in fairly good accordance with the experimental findings for reaction 2 (1.0 X 10(-6) M-1 s(-1)) and reaction 3 (3.0 X 10(-4) M-1 s(-1)). (C) 2006 Wiley Periodicals, Inc.
机译:已使用从头算起Hartree-Fock(HF)和气相和水溶液中理论的密度泛函水平研究了顺铂与鸟嘌呤DNA碱基的相互作用。整个过程分为三个步骤:单水[Pt(NH3)(2)Cl(H2O)](+)物种与鸟嘌呤(G)的反应(反应1),水解过程产生加合物[Pt( NH3)(2)(G)(H2O)](2+)(反应2)并与第二个鸟嘌呤反应生成产物[Pt(NH3)(2)(G)(2)](2+) (反应3)。在本研究中使用功能B3LYP,BHandH和mPW1PW91,以发展对不同模型的作用的理解。中间结构的几何形状是通过IRC计算从每个反应的过渡态结构中获得的。中间体和过渡态的结构分析表明,与鸟嘌呤O6原子的氢键在稳定这些物种中起重要作用。几何形状对应用于HF水平的理论水平不是很敏感,可以提供令人满意的总体性能。但是,发现能垒和速率常数在很大程度上取决于计算水平和基础集,而DFT计算得出的结果更准确。对于反应1,在PCM-BH和H / 6-311G *的水溶液中计算的速率常数(k(1)= 7.55 X 10(-1)M-1 s(-1))与实验吻合良好(5.4 X 10(-1)M-1 s(-1))。反应2和3的BH和H / 6-31G *计算出的气相速率常数为:k(2)= 0.9 X 10(-6)M-1 s(-1)和k(3)= 2.99 X 10 (-4)M-1 s(-1)与反应2(1.0 X 10(-6)M-1 s(-1))和反应3(3.0 X 10(-4)的实验结果相当吻合)M-1 s(-1))。 (C)2006年Wiley Periodicals,Inc.

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