首页> 外文期刊>Chemical research in toxicology >Inhibition of nitrous acid-dependent tyrosine nitration and DNA base deamination by flavonoids and other phenolic compounds.
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Inhibition of nitrous acid-dependent tyrosine nitration and DNA base deamination by flavonoids and other phenolic compounds.

机译:类黄酮和其他酚类化合物对亚硝酸依赖性酪氨酸硝化和DNA碱基脱氨的抑制作用。

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摘要

Exposure of tyrosine or DNA bases to acidic nitrite at low pH results in the nitration of tyrosine and the formation of base deamination products, respectively. At pH 1, hypoxanthine and xanthine are formed from the deamination of adenine and guanine, respectively, whereas under the same conditions, uracil is not detected. The yield of 3-nitrotyrosine derived from interaction of equimolar nitrite and tyrosine at pH 1 is approximately 50% of that obtained from equimolar peroxynitrite-tyrosine interactions at pH 7. 4. The ability of a range of plant phenolic constituents to prevent damage mediated by acidic nitrite was also examined in comparison with the activity of vitamin C. The epicatechin/gallate family of flavonols, constituents of green tea, red wine, etc., demonstrates the most extensive inhibitory properties against both tyrosine nitration and base deamination. The results also show that ascorbic acid is a poor inhibitor of nitration or deamination under acidic conditions such as those of the stomach. The ability of plant phenolics to scavenge reactive nitrogen species derived from acidic nitrite may contribute to the protective effects of tea polyphenols against gastric cancer.
机译:在低pH下将酪氨酸或DNA碱暴露于酸性亚硝酸盐会分别导致酪氨酸的硝化和碱脱氨基产物的形成。在pH 1时,腺嘌呤和鸟嘌呤的脱氨作用分别形成次黄嘌呤和黄嘌呤,而在相同条件下未检出尿嘧啶。在pH 1时,等摩尔的亚硝酸盐与酪氨酸的相互作用所产生的3-硝基酪氨酸的产率约为在pH 7时,等摩尔的过氧亚硝酸盐-酪氨酸的相互作用所产生的3-硝基酪氨酸的产率。4.一系列植物酚类成分防止由β-酪氨酸介导的损害的能力。还检查了酸性亚硝酸盐与维生素C的活性。黄酮醇的表儿茶素/没食子酸酯家族,绿茶,红酒的成分等对酪氨酸硝化和碱脱氨基均表现出最广泛的抑制作用。结果还表明,抗坏血酸在酸性条件下(例如在胃部条件下)是硝化或脱氨的不良抑制剂。植物酚类清除来自酸性亚硝酸盐的活性氮的能力可能有助于茶多酚对胃癌的保护作用。

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