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Structure of oxidatively damaged nucleic acid adducts. 3. Tautomerism, ionization and protonation of 8-hydroxyadenosine studied by 15N NMR spectroscopy.

机译:氧化损伤的核酸加合物的结构。 3.通过15N NMR光谱研究了8-羟基腺苷的互变异构,电离和质子化。

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摘要

Natural abundance 15N NMR spectroscopy and ancillary spectroscopic techniques have been employed to study the solution structure of 8-hydroxyadenosine. 8-Hydroxyadenosine is a naturally occurring oxidized nucleic acid adduct that is generally implied to have an 8-hydroxy tautomeric structure. 15N NMR chemical shifts and coupling constants, however, indicate that the modified base exists as an 8-keto tautomer. The pH dependence of 15N NMR and UV spectra showed the presence of two pKa's, at 2.9 and 8.7, corresponding to protonation at N1 and ionization at N7, respectively. The latter results in the formation of an 8-enolate structure. Unusual upfield shifts of the 1H and 15N resonances of the NH2 group, and a reduction in the one-bond coupling constant 1JN6-H6, is indicative of an unfavorable steric or electronic interaction between the NH2 group and the adjacent N7-H proton. This interaction results in a subtle change in the structure of the NH2 group. In addition to being a possible mechanism for alteration of hydrogen bonding in oxidized DNA, this type of interaction gives a better understanding into N7-N9 tautomerism of adenine. Furthermore, the structure of 8-hydroxyadenosine has been related to possible mechanisms for mutations.
机译:天然丰度15N NMR光谱和辅助光谱技术已被用于研究8-羟基腺苷的溶液结构。 8-羟基腺苷是天然存在的氧化核酸加合物,通常暗示其具有8-羟基互变异构结构。然而,15 N NMR化学位移和偶联常数表明,修饰的碱基以8-酮互变异构体的形式存在。 15N NMR和UV光谱的pH依赖性表明在2.9和8.7存在两个pKa,分别对应于N1的质子化和N7的电离。后者导致形成8-烯醇结构。 NH2基团的1H和15N共振出现异常的高场位移,以及单键耦合常数1JN6-H6的降低,表明NH2基团与相邻的N7-H质子之间的空间或电子相互作用不利。这种相互作用导致NH 2基团的结构发生细微变化。除了可能是改变氧化的DNA中氢键的可能机制外,这种相互作用还可以更好地了解腺嘌呤的N7-N9互变异构现象。此外,8-羟基腺苷的结构与突变的可能机制有关。

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    Cho, B P; Evans, F E;

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  • 年度 1991
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  • 正文语种 en
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