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Tautomeric transition in uracil and thymine nucleosides induced by deprotonated carboxylic group: ~1H NMR data

机译:去质子化羧基在尿嘧啶和胸腺嘧啶核苷中的互变异构转变:〜1H NMR数据

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In ~1H NMR spectra of four nucleosides of uracil and thymine - U, dU, T and rT - in anhydrous DMSO in the presence of carboxylate-ion there was observed disappearance of signals of the N3H aglycon protons and all the hydroxyl protons of glycosylic fragments. This changes were interpreted as a result of the N3H ? O2H proton transfer in the base residues under the complex formation between nucleosides and ligand molecules: one carboxylate-ion forms two H-bonds with groups O2H and O5'H, another - two H-bonds with hydroxyl groups O2'H and O3'H in the case of a riboside or one H-bond with group O3'H of a deoxyriboside. Orders of the complexes' stability were established, which from, particularly, the conclusion was drawn that the canonical nucleosides U and T form more stable complexes with carboxylate-ion, than metabolites dU and rT. Biological significance of the results obtained is pointed out.
机译:在无水DMSO中,在存在羧酸根离子的情况下,尿嘧啶和胸腺嘧啶的四个核苷-U,dU,T和rT-的〜1H NMR谱图中,观察到N3H糖苷酸质子和糖基片段的所有羟基质子信号消失。这种变化被解释为N3H的结果。 O2H质子在核苷和配体分子之间形成络合物的基础残基中转移:一个羧酸根离子与O2H和O5'H形成两个H键,另一个-与羟基O2'H和O3'H形成两个H键在核糖苷或与脱氧核糖苷的O3'H基团形成一个H键的情况下。建立了复合物稳定性的顺序,特别是从结论得出的结论是,规范核苷U和T与羧酸根离子相比,与代谢产物dU和rT形成更稳定的复合物。指出了所得结果的生物学意义。

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