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Structure reactivity relationship in the reaction of DNA guanyl radicals with hydroxybenzoates

机译:DNA胍基与羟基苯甲酸酯反应中的结构反应性关系

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摘要

In DNA, guanine bases are the sites from which electrons are most easily removed. As a result of hole migration to this stable location on guanine, guanyl radicals are major intermediates in DNA damage produced by the direct effect of ionizing radiation (ionization of the DNA itself and not through the intermediacy of water radicals). We have modeled this process by employing gamma irradiation in the presence of thiocyanate ions, a method which also produces single electron oxidized guanyl radicals in plasmid DNA in aqueous solution. The stable products formed in DNA from these radicals are detected as strand breaks after incubation with the FPG protein. When a phenolic compound is present in the solution during gamma irradiation, the formation of guanyl radical species is decreased by electron donation from the phenol to the guanyl radical. We have quantified the rate of this reaction for four different phenolic compounds bearing carboxylate substituents as proton acceptors. A comparison of the rates of these reactions with the redox strengths of the phenolic compounds reveals that salicylate reacts ca. 10-fold faster than its structural analogs. This observation is consistent with a reaction mechanism involving a proton coupled electron transfer, because intra-molecular transfer of a proton from the phenolic hydroxyl group to the carboxylate group is possible only in salicylate, and is favored by the strong 6-membered ring intra-molecular hydrogen bond in this compound.
机译:在DNA中,鸟嘌呤碱基是最容易除去电子的位点。由于空穴迁移到鸟嘌呤上的这个稳定位置,鸟嘌呤自由基是DNA损伤的主要中间体,这种损伤是由电离辐射的直接作用(DNA本身的电离而不是通过水基的中介作用)产生的。我们已经通过在硫氰酸根离子存在下使用伽马辐射对该过程进行了建模,该方法还会在水溶液中的质粒DNA中产生单电子氧化的胍基。在与FPG蛋白孵育后,检测出这些自由基在DNA中形成的稳定产物为链断裂。当在伽马射线辐照期间溶液中存在酚类化合物时,通过从苯酚向鸟苷基团的电子给予,减少了鸟苷基团物质的形成。我们已经量化了带有羧酸盐取代基作为质子受体的四种不同酚类化合物的反应速度。将这些反应的速率与酚类化合物的氧化还原强度进行比较,结果表明水杨酸酯约能反应。比其结构类似物快10倍。该观察结果与涉及质子偶联电子转移的反应机理是一致的,因为质子从酚式羟基到羧酸酯基团的分子内转移仅在水杨酸酯中是可能的,并且受强的六元环内该化合物中的分子氢键。

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