首页> 外文期刊>Free Radical Biology and Medicine: The Official Journal of the Oxygen Society >An essential difference in the reactivity of the glutathione adducts of the structurally closely related flavonoids monoHER and quercetin.
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An essential difference in the reactivity of the glutathione adducts of the structurally closely related flavonoids monoHER and quercetin.

机译:结构密切相关的类黄酮monoHER和槲皮素的谷胱甘肽加合物的反应性存在本质区别。

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摘要

During the scavenging of free radicals flavonoids are oxidized to electrophilic quinones. Glutathione (GSH) can trap these quinones, thereby forming GSH-flavonoid adducts. The aim of this study was to compare the stability of the GSH-flavonoid adduct of 7-mono-O-(beta-hydroxyethyl)rutoside (monoHER) with that of quercetin. It was found that GSH-quercetin reacts with the thiol N-acetyl-L-cysteine (NAC) to form NAC-quercetin, whereas GSH-monoHER does not react with NAC. In addition, the adduct of the monoHER quinone with the dithiol dithiothreitol (DTT) is relatively stable, whereas the DTT-quercetin adduct is readily converted into quercetin and DTT disulfide. These differences in reactivity of the thiol-flavonoid adducts demonstrate that GSH-monoHER is much more stable than GSH-quercetin. This difference in reactivity was corroborated by molecular quantum chemical calculations. Thus, although both flavonoid quinones are rapidly scavenged by GSH, the advantage of monoHER is that it forms a stable conjugate with GSH, thereby preventing a possible spread of toxicity. These findings demonstrate that even structurally comparable flavonoids behave differently, which will be reflected in the biological effects of these flavonoids.
机译:在清除自由基过程中,类黄酮被氧化为亲电子醌。谷胱甘肽(GSH)可以捕获这些醌,从而形成GSH-类黄酮加合物。这项研究的目的是比较7-单-O-(β-羟乙基)芸苔苷(monoHER)与槲皮素的GSH-类黄酮加合物的稳定性。发现GSH-槲皮素与硫醇N-乙酰基-L-半胱氨酸(NAC)反应形成NAC-槲皮素,而GSH-monoHER不与NAC反应。此外,monoHER醌与二硫醇二硫苏糖醇(DTT)的加合物相对稳定,而DTT-槲皮素加合物易于转化为槲皮素和DTT二硫化物。硫醇类黄酮加合物的反应性差异表明,GSH-monoHER比GSH-槲皮素稳定得多。反应性的这种差异已通过分子量子化学计算得到了证实。因此,尽管两个类黄酮醌都可以被GSH快速清除,但是monoHER的优点是它与GSH形成了稳定的结合物,从而防止了可能的毒性扩散。这些发现表明,即使在结构上可比的类黄酮也有不同的表现,这将在这些类黄酮的生物学效应中得到反映。

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