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Solvation free energies of molecules. The most stable anionic tautomers of uracil

机译:分子的溶剂化自由能。最稳定的尿嘧啶阴离子互变异构体

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摘要

Anionic states of nucleic acid bases are suspected to play a role in the radiation damage processes of DNA. Our recent studies suggested that the excess electron attachment to the nucleic acid bases can stabilize some rare tautomers, i.e. imine-enamine tautomers and other tautomers with a proton being transferred form nitrogen sites to carbon sites (with respect to the canonical tautomer). So far, these new anionic tautomers have been characterized by the gas phase electronic structure calculations and photoelectron spectroscopy experiments. In the current contribution we explore the effect of water solvation on the stability of the new anionic tautomers of uracil. The accurate free energies of solvation are calculated in a two step approach. The major contribution was calculated using the classical free energy perturbation adiabatic charging approach, where it is assumed that the solvated molecule has the charge distribution given by the polarizable continuum model. In the second step the free energy of solvation is refined by taking into account the real, average solvent charge distribution. This is done using our accelerated QM/MM simulations, where the QM energy of the solute is calculated in the mean potential averaged over many MD steps. We found that in water solution three of the recently identified anionic tautomers are 6.5 – 3.6 kcal/mol more stable than the anion of the canonical tautomer.
机译:怀疑核酸碱基的阴离子状态在DNA的辐射损伤过程中起作用。我们最近的研究表明,与核酸碱基的过量电子附着可以稳定一些稀有的互变异构体,即亚胺-烯胺互变异构体和其他互变异构体,质子从氮位转移到碳位(相对于典型互变异构体)。到目前为止,这些新的阴离子互变异构体已通过气相电子结构计算和光电子能谱实验表征。在当前的贡献中,我们探索了水溶剂化对新型尿嘧啶阴离子互变异构体稳定性的影响。溶剂化的准确自由能以两步法计算。使用经典的自由能摄动绝热带电方法计算了主要贡献,其中假定溶剂化分子具有可极化连续体模型给出的电荷分布。第二步,通过考虑实际平均溶剂电荷分布,精炼溶剂化的自由能。这是通过我们的加速QM / MM模拟完成的,其中溶质的QM能量是通过许多MD步长的平均平均电势计算得出的。我们发现,在水溶液中,最近发现的三种阴离子互变异构体比标准互变异构体的阴离子稳定6.5 – 3.6 kcal / mol。

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