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首页> 外文期刊>Pharmacogenetics and genomics >Association of multidrug resistance-associated protein 2 single nucleotide polymorphism rs12762549 with the basal plasma levels of phase II metabolites of isoflavonoids in healthy Japanese individuals
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Association of multidrug resistance-associated protein 2 single nucleotide polymorphism rs12762549 with the basal plasma levels of phase II metabolites of isoflavonoids in healthy Japanese individuals

机译:健康日本人群中多药耐药相关蛋白2单核苷酸多态性rs12762549与异黄酮II期代谢物基础血浆水平的相关性

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OBJECTIVES: Multidrug resistance-associated protein 2 (MRP2; ABCC2) is an ATP-binding cassette transporter that mediates the efflux of anionic drugs and phase II metabolites. Our aim was to elucidate the impact of a single nucleotide polymorphism, rs12762549 (G>C), on the in-vivo activity of MRP2. METHODS: Plasma specimens collected from 18 healthy volunteers were subjected to an untargeted metabolomic analysis using liquid chromatography-mass spectrometry. The role of MRP2 in the disposition of substances of interest was then examined in vivo in Mrp2-deficient mutant rats (Eisai hyperbilirubinemic rats; EHBRs) and in vitro in human MRP2-expressing membrane vesicles. RESULTS: A multivariate analysis model using liquid chromatography-mass spectrometry data sets successfully differentiated the GG and the CC genotypes of rs12762549. The C allele is associated with the basal plasma levels of the five phase II metabolites of genistein and dihydrogenistein. Such phase II metabolites were also accumulated in EHBR, compared with normal rats, partly because of the reduced biliary excretion. Following oral administration of genistein and daidzein, the plasma concentrations of total genistein and total daidzein, which were mainly accounted for by sulfoglucuronide conjugates, were markedly higher in EHBR than in normal rats. ATP-dependent uptake of sulfoglucuronides and glucuronides of the isoflavonoids was observed only in MRP2-expressing membrane vesicles. CONCLUSION: MRP2 plays a significant role in preventing the accumulation of phase II metabolites of isoflavonoids. The rs12762549 is associated with an interindividual difference in the plasma levels of MRP2 substrates, phase II metabolites of isoflavonoids, suggesting that this single nucleotide polymorphism is associated with variations in in-vivo MRP2 activity.
机译:目的:多药耐药相关蛋白2(MRP2; ABCC2)是一种ATP结合盒转运蛋白,介导阴离子药物和II期代谢产物的外排。我们的目的是阐明单核苷酸多态性rs12762549(G> C)对MRP2体内活性的影响。方法:使用液相色谱-质谱法从18名健康志愿者收集的血浆标本进行非目标代谢组学分析。然后在Mrp2缺陷型突变大鼠(Eisai高胆红素血症大鼠; EHBRs)中体内和在人MRP2表达膜囊泡中体外检查了MRP2在目的物质处置中的作用。结果:使用液相色谱-质谱数据集的多元分析模型成功地区分了rs12762549的GG和CC基因型。 C等位基因与染料木黄酮和二氢染料木黄酮的五个II期代谢产物的基础血浆水平相关。与正常大鼠相比,此类II期代谢产物也积累在EHBR中,部分原因是胆汁排泄减少。口服染料木黄酮和黄豆苷元后,EHBR中的总染料木黄酮和黄豆苷元的血浆浓度显着高于正常大鼠,这主要是由磺葡糖醛酸苷结合物引起的。仅在表达MRP2的膜囊泡中观察到了ATP依赖的异黄酮的磺基葡萄糖醛酸和葡萄糖苷酸的吸收。结论:MRP2在预防异黄酮的II相代谢产物积累中起重要作用。 rs12762549与MRP2底物血浆水平,异黄酮的II期代谢产物之间存在个体差异有关,表明该单核苷酸多态性与体内MRP2活性的变化有关。

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