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Influence of π-stacking on the N7 and 06 proton affinity of guanine

机译:π堆积对鸟嘌呤N7和06质子亲和力的影响

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摘要

The influence of π-stacking interactions between guanine (G) and the side chain of tyrosine (Tyr) on the N7 and 06 proton affinities of guanine and on the capability of these sites to act as hydrogen bond acceptors is analyzed at the B3LYP-D, M05-2X and MP2 levels of theory. With all methods, results from full geometry optimizations indicate that stacking interactions increase the N7 and 06 proton affinities by about 5-6 kcal mol~(-1), the increase being slightly larger for N7. Consistently with these results, hydrogen bond distances between guanine and one water molecule decrease in the stacked system. Moreover, interaction energy between H2O and (G-Tyr) is found to be 2-3 kcal mol~(-1) larger than in G-H2O. This strengthening arises from the additional Tyr-H2O stabilizing interactions and from a cooperative interplay between stacking and hydrogen bond forces.
机译:在B3LYP-D上分析了鸟嘌呤(G)和酪氨酸侧链(Tyr)之间的π堆积相互作用对鸟嘌呤N7和06质子亲和力以及这些位点作为氢键受体的能力的影响。 ,M05-2X和MP2的水平理论。对于所有方法,完全几何优化的结果表明堆垛相互作用使N7和06质子亲和力增加了约5-6 kcal mol〜(-1),对于N7而言,增加量更大。与这些结果一致,鸟嘌呤和一个水分子之间的氢键距离在堆叠系统中减小。此外,发现H 2 O和(G-Tyr)之间的相互作用能比G-H 2 O中的相互作用能量大2-3kcal mol·(-1)。这种增强是由于额外的Tyr-H2O稳定相互作用以及堆积和氢键作用力之间的协同作用所致。

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