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Genetic variants of human UGT1A3: functional characterization and frequency distribution in a Chinese Han population.

机译:人类UGT1A3的遗传变异:中国汉族人群的功能特征和频率分布。

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摘要

UDP-glucuronosyltransferase 1A3 (UGT1A3) contributes to glucuronidation of many important endogenous compounds and xenobiotics, including some flavonoids. Recently, a total of six single nucleotide polymorphisms (SNPs) have been identified in the human UGT1A3 gene. Among them, four SNPs (A17G, Q6R; T31C, W11R; C133T, R45W; and T140C, V47A) cause amino acid substitutions. Variants caused by these SNPs showed an activity change in estrone metabolism, whereas their activities toward other substrates were not examined. In the present study, three common flavonoids, quercetin, luteolin, and kaempferol, were used as substrates for glucuronidation by wild-type and variant UGT1A3s. Our results demonstrated that the activities of three variants, UGT1A3.2, UGT1A3.3, and UGT1A3.5, were remarkably lower than that of UGT1A3.1. In contrast, UGT1A3.4 exhibited an increase in glucuronidation efficiency of approximately 4 times and a clear preference to quercetin 7- and 3-hydroxyl groups. The frequency distributions ofUGT1A3 alleles and SNPs in UGT1A3 in a Chinese Han population were statistically different from the reported value in German-Caucasians (p < 0.05). UGT1A3 variants have an altered glucuronidation activity toward quercetin, luteolin, and kaempferol and may alter human susceptibility to flavonoid exposure.
机译:UDP-葡萄糖醛酸糖基转移酶1A3(UGT1A3)有助于许多重要的内源性化合物和异种生物(包括一些类黄酮)的葡萄糖醛酸化。最近,在人类UGT1A3基因中已鉴定出总共六个单核苷酸多态性(SNP)。其中,四个SNP(A17G,Q6R; T31C,W11R; C133T,R45W; T140C,V47A)引起氨基酸取代。这些SNP引起的变异体在雌酮代谢中显示出活性变化,而未检查其对其他底物的活性。在本研究中,三种常见的类黄酮,槲皮素,木犀草素和山奈酚被用作通过野生型和变异型UGT1A3进行葡萄糖醛酸糖化的底物。我们的结果表明,三个变体UGT1A3.2,UGT1A3.3和UGT1A3.5的活性明显低于UGT1A3.1。相反,UGT1A3.4的葡糖醛酸化效率提高了约4倍,并且明显偏爱槲皮素7和3羟基。中国汉族人群中UGT1A3中UGT1A3等位基因和SNP的频率分布与德国-高加索人报道的值有统计学差异(p <0.05)。 UGT1A3变体对槲皮素,木犀草素和山奈酚的葡萄糖醛酸化活性改变,并且可能改变人类对类黄酮暴露的敏感性。

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