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Calculations of the Energetics of Oxidation of Aqueous Nucleosides and the Effects of Prototropic Equilibria

机译:核苷水溶液氧化能的计算和质子平衡的影响

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Recently the calculated standard reduction potentials of the radical-cations of N-methyl substituted DNA bases have been reported that agree fairly well with the experimental results. However, there are issues reflecting the fact that the experimental results usually relate, to the couple E degrees(Nuc center dot,H+/NucH(+)), whereas the calculated results are for the E degrees(Nuc(center dot+)/Nuc) couple. To calculate the midpoint reduction potential at PH 7 (E-m7), it is important to have accurate acid dissociation constants (pKs) for both,ground-state bases and their radicals, and the effects of uncertainty in some of these values (e.g., that of the adenosine radical) must be considered. Calculations of the pKs of the radicals of the nucleic acid bases (as nucleosides) have been performed to explore the effects the various pKs have on calculating the Values of E-m7 and to see what improvements Can be made with the accuracy of the calculations.
机译:最近,已经报道了计算的N-甲基取代的DNA碱基的自由基阳离子的标准还原电位,其与实验结果非常吻合。但是,存在一些问题反映出这样一个事实,即实验结果通常与夫妇的E度(Nuc中心点,H + / NucH(+))有关,而计算结果是针对E度的(Nuc(中心点+)/ Nuc ) 一对。为了计算PH 7(E-m7)时的中点还原电位,重要的是要有基态碱及其自由基的准确酸解离常数(pKs),以及其中某些值的不确定性影响(例如,必须考虑腺苷基团的自由基)。已经进行了核酸碱基(作为核苷)的自由基的pK的计算,以探索各种pK对计算E-m7值的影响,并查看可以用计算的准确性进行哪些改进。

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