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The molecular mechanism underlying the induction of hepatic MRP3 expression and function by omeprazole

机译:奥美拉唑诱导肝MRP3表达和功能的分子机制

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Previous work has indicated that there is increased protein expression of multidrug resistance-associated protein 3 (MRP3) in the liver samples of patients treated with omeprazole compared with those who were not. However, evidence is still lacking to show the mechanisms underlying that induction. This study aimed to assess changes in the fold-induction of MRP3 mRNA and protein expression over controls in omeprazole-treated HepG2 cells after transient transfection of human MRP3 siRNA, or after pretreatment with actinomycin D (Act-D). Furthermore, MRP3 siRNA knock-down or MRP-specific inhibition (indomethacin) was used to determine whether the MRP3 protein induced by omeprazole possessed an enhanced efflux transport. The results demonstrated that omeprazole induced MRP3 mRNA and protein expression in a concentration- and time-dependent manner. Moreover, that induction was almost completely abolished by the addition of human MRP3 siRNA and also by pretreatment with Act-D, respectively. In addition, the decay rate of MRP3 mRNA in vehicle- and omeprazole-treated cells was similar in the presence of Act-D, suggesting transcriptional up-regulation of MRP3 mRNA expression by omeprazole. Most importantly, omeprazole induced MRP3 efflux transport activity, as measured by the 5-carboxyfluorescein assay in the absence and presence of human MRP3 siRNA or indomethacin. It is concluded that omeprazole can induce MRP3 mRNA and protein expression and enhance MRP3 efflux transport activity through transcriptional up-regulation, and that omeprazole can also induce other MRP transporters. Copyright (c) 2015 John Wiley & Sons, Ltd.
机译:先前的研究表明,与未进行奥美拉唑治疗的患者相比,在接受奥美拉唑治疗的患者的肝脏样品中,多药耐药相关蛋白3(MRP3)的蛋白表达增加。但是,仍然缺乏证据证明诱导作用的机制。这项研究旨在评估在人MRP3 siRNA瞬时转染后或用放线菌素D(Act-D)预处理后,经奥美拉唑处理的HepG2细胞中MRP3 mRNA和蛋白质表达的折叠诱导变化是否超过对照组。此外,使用MRP3 siRNA敲低或MRP特异性抑制(吲哚美辛)来确定奥美拉唑诱导的MRP3蛋白是否具有增强的外排转运。结果表明,奥美拉唑以浓度和时间依赖性方式诱导MRP3 mRNA和蛋白质表达。此外,分别通过添加人MRP3 siRNA和分别用Act-D预处理,该诱导几乎被完全消除。此外,在Act-D存在下,媒介物和奥美拉唑处理的细胞中MRP3 mRNA的衰减率相似,这表明奥美拉唑对MRP3 mRNA表达的转录上调。最重要的是,在不存在和存在人类MRP3 siRNA或吲哚美辛的情况下,通过5-羧基荧光素测定法测定的奥美拉唑诱导的MRP3外排转运活性。结论是奥美拉唑可通过转录上调诱导MRP3 mRNA和蛋白表达并增强MRP3外排转运活性,奥美拉唑也可诱导其他MRP转运蛋白。版权所有(c)2015 John Wiley&Sons,Ltd.

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