首页> 美国卫生研究院文献>Drug Metabolism and Disposition >UDP-Glucuronosyltransferase (UGT) 1A9-Overexpressing HeLa Cells Is an Appropriate Tool to Delineate the Kinetic Interplay between Breast Cancer Resistance Protein (BRCP) and UGT and to Rapidly Identify the Glucuronide Substrates of BCRP
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UDP-Glucuronosyltransferase (UGT) 1A9-Overexpressing HeLa Cells Is an Appropriate Tool to Delineate the Kinetic Interplay between Breast Cancer Resistance Protein (BRCP) and UGT and to Rapidly Identify the Glucuronide Substrates of BCRP

机译:UDP-葡萄糖醛酸转移酶(UGT)1A9过表达的HeLa细胞是描绘乳腺癌抗性蛋白(BRCP)和UGT之间的动力学相互作用并快速鉴定BCRP的葡萄糖醛酸底物的合适工具

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摘要

The interplay between phase II enzymes and efflux transporters leads to extensive metabolism and low bioavailability for flavonoids. To investigate the simplest interplay between one UDP-glucuronosyltransferase isoform and one efflux transporter in flavonoid disposition, engineered HeLa cells stably overexpressing UGT1A9 were developed, characterized, and further applied to investigate the metabolism of two model flavonoids (genistein and apigenin) and excretion of their glucuronides. The results indicated that the engineered HeLa cells overexpressing UGT1A9 rapidly excreted the glucuronides of genistein and apigenin. The kinetic characteristics of genistein or apigenin glucuronidation were similar with the use of UGT1A9 overexpressed in HeLa cells or the commercially available UGT1A9. Small interfering (siRNA)-mediated UGT1A9 silencing resulted in a substantial decrease in glucuronide excretion (>75%, p < 0.01). Furthermore, a potent inhibitor of breast cancer resistance protein (BCRP), 3-(6-isobutyl-9-methoxy-1,4-dioxo-1,2,3,4,6,7,12,12a-octahydropyrazino[1′,2′:1,6]pyrido[3,4-b]indol-3-yl)-propionic acid tert-butyl ester (Ko143), caused, in a dose-dependent manner, a substantial and marked reduction of the clearance (74–94%, p < 0.01), and a substantial increase in the intracellular glucuronide levels (4–8-fold, p < 0.01), resulting in a moderate decrease in glucuronide excretion (19–59%, p < 0.01). In addition, a significant, albeit moderate, reduction in the fraction of genistein metabolized (fmet) in the presence of Ko143 was observed. In contrast, leukotriene C4 and siRNA against multidrug resistance protein (MRP) 2 and MRP3 did not affect excretion of flavonoid glucuronides. In conclusion, the engineered HeLa cells overexpressing UGT1A9 is an appropriate model to study the kinetic interplay between UGT1A9 and BCRP in the phase II disposition of flavonoids. This simple cell model should also be very useful to rapidly identify whether a phase II metabolite is the substrate of BCRP.
机译:II期酶和外排转运蛋白之间的相互作用导致黄酮类化合物的广泛代谢和较低的生物利用度。为了研究一种UDP-葡糖醛酸糖基转移酶同工型与一种外排转运蛋白在类黄酮中的最简单相互作用,开发,表征和表征了稳定过表达UGT1A9的工程化HeLa细胞,并将其进一步用于研究两种模型黄酮(染料木黄酮和芹菜素)的代谢及其排泄葡萄糖醛酸。结果表明,过表达UGT1A9的工程改造的HeLa细胞会迅速分泌金雀异黄素和芹菜素的葡萄糖醛酸苷。金雀异黄素或芹菜素葡萄糖醛酸苷化的动力学特征与在HeLa细胞中过表达的UGT1A9或可商购的UGT1A9相似。小干扰(siRNA)介导的UGT1A9沉默导致葡萄糖醛酸苷排泄量显着降低(> 75%,p <0.01)。此外,一种有效的乳腺癌抗性蛋白抑制剂(BCRP),3-(6-异丁基-9-甲氧基-1,4-二氧代-1,2,3,4,6,7,12,12a-八氢吡嗪并[1] ',2':1,6]吡啶[3,4-b]吲哚-3-基)-丙酸叔丁酯(Ko143)以剂量依赖性方式导致清除率(74–94%,p <0.01),细胞内葡萄糖醛酸水平显着增加(4-8倍,p <0.01),导致葡萄糖醛酸苷排泄量适度降低(19-59%,p <0.01) )。此外,观察到在存在Ko143的情况下,染料木黄酮代谢(fmet)的比例显着降低(尽管适度)。相反,针对多药抗性蛋白(MRP)2和MRP3的白三烯C4和siRNA不会影响类黄酮葡萄糖醛酸苷的排泄。总之,过表达UGT1A9的工程化HeLa细胞是研究UGT1A9与BCRP在类黄酮II期处置中动力学相互作用的合适模型。这种简单的细胞模型对于快速鉴定II期代谢物是否是BCRP的底物也非常有用。

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