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The influence of isolated and penta-hydrated Zn2+ on some of the intramolecular proton-transfer processes of thymine: a quantum chemical study

机译:分离的五水合Zn2 +对胸腺嘧啶分子内质子转移过程的影响:量子化学研究

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Zinc cation (Zn ~(2+) ) plays an important role in the chemistry of DNA base pairs. In this work, the influence of isolated and penta-hydrated Zn ~(2+) on some of the intramolecular proton-transfer processes of thymine (T) is investigated by the density functional theory method. It is shown that the calculated binding energies between Zn ~(2+) and T are exothermic in vacuum. Compared to T, Zn ~(2+) increases the stability of tautomer T′ by 28.7 kcal mol ~(?1) , promoting the intramolecular proton transfer of T. But in a micro-water environment, the attachment processes of Zn ~(2+) to T hydrates, penta-hydrated Zn ~(2+) to T, and penta-hydrated Zn ~(2+) to T hydrates lead to the rearrangement of molecules and the redistribution of charges. The conventional T is still the most stable form and the influence of Zn ~(2+) is much reduced and the proton transfer is thermodynamically unfavored. The detailed characterization is helpful to understand the genotoxicity of zinc ions.
机译:锌阳离子(Zn〜(2+))在DNA碱基对的化学中起重要作用。在这项工作中,通过密度泛函理论方法研究了分离的五水合Zn〜(2+)对胸腺嘧啶(T)分子内质子转移过程的影响。结果表明,计算得出的Zn〜(2+)与T之间的结合能在真空中是放热的。与T相比,Zn〜(2+)使互变异构体T'的稳定性提高28.7 kcal mol〜(?1),促进了T的分子内质子转移。但是,在微水环境中,Zn〜(2)的附着过程2+)至T水合物,五水合Zn〜(2+)至T水合物和五水合Zn〜(2+)至T水合物导致分子重排和电荷重新分布。常规的T仍是最稳定的形式,并且Zn〜(2+)的影响大大降低,并且质子转移在热力学上不利。详细的表征有助于理解锌​​离子的遗传毒性。

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