Institute of Organic Chemistry, Bulgarian Academy of Sciences, 1113 Sofia, Bulgaria.
J Phys Chem A. 2010 Dec 23;114(50):13154-62. doi: 10.1021/jp1063879. Epub 2010 Nov 23.
It has long been postulated that rare tautomeric or ionized forms of nucleic acid bases may play a role in mispair formation. Therefore, ab initio quantum chemical investigations on the tautomeric equilibrium in 5-fluorouracil (5FU) and its anions (deprotonated from N1, AN1, and from N3, AN3) and their tautomeric forms in water were performed. The effect of the water as solvent was introduced using solute-solvent clusters (four water molecules). The influence of the water molecules on the tautomeric reactions between different forms was considered by multiple proton transfer mechanisms. We show that when a water dimer is located in the reaction site between the two pairs of N-H and C═O groups, the assistive effect of the water molecules is strengthened. All calculations of the solute-water complexes were carried out at an MP2 level of theory and supplemented with correction for higher order correlation terms at CCSD(T) level, using the 6-31+G(d,p) basis set. The ab initio calculated frequencies and Raman intensities of 5FU and its anions AN1, AN3, and dianion are in good agreement with the experimental Raman frequencies in aqueous solution at different pH. In order to establish the pH-induced structural transformation in the molecule of 5FU, further (1)H, (19)F, and (13)C NMR spectra in water solution for pH = 6.9-13.8 were acquired and the chemical shift alterations were determined as a function of pH. On the basis of NMR spectroscopic data obtained for 5FU in aqueous solution at alkaline pH, we suggest the existence of a mixture of the anionic tautomeric forms predicted by our theoretical calculations.
长期以来,人们一直假设核酸碱基的稀有互变异构体或离子形式可能在碱基错配形成中起作用。因此,我们对 5-氟尿嘧啶(5FU)及其阴离子(从 N1 去质子化,AN1,和从 N3 去质子化,AN3)以及它们在水中的互变异构形式的 tautomeric 平衡进行了从头算量子化学研究。使用溶剂化溶质簇(四个水分子)引入了溶剂的影响。通过多种质子转移机制考虑了水分子对不同形式之间互变异构反应的影响。我们表明,当水分子位于两对 N-H 和 C═O 基团之间的反应位点时,水分子的辅助作用得到加强。所有溶质-水复合物的计算均在 MP2 理论水平上进行,并在 CCSD(T)水平上用更高阶相关项进行了修正,使用 6-31+G(d,p)基组。在不同 pH 值的水溶液中,与实验拉曼频率具有良好的一致性。为了确定 5FU 分子中 pH 诱导的结构转变,我们进一步在水溶液中(1)H、(19)F 和(13)C NMR 光谱在 pH = 6.9-13.8 时获得,并确定了随 pH 变化的化学位移变化。基于在碱性 pH 值下在水溶液中获得的 5FU 的 NMR 光谱数据,我们建议存在我们的理论计算所预测的阴离子互变异构形式的混合物。