Identification and functional characterization of the natural variant MRP3-Arg1297His of human multidrug resistance protein 3 (MRP3/ABCC3).

Young-Min A Lee, Yunhai Cui, Jörg König, Angela Risch, Birgit Jäger, Peter Drings, Helmut Bartsch, Dietrich Keppler, Anne T Nies
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引用次数: 74

Abstract

The human multidrug resistance protein 3 (MRP3, symbol ABCC3) is an ATP-binding cassette transporter that mediates the efflux of organic anions, including lipophilic substances conjugated with glucuronate, sulphate or glutathione, across the basolateral membrane of polarized cells (e.g. hepatocytes) into blood. Genetic variants of MRP3 may affect the transport of these substances out of cells. The aims of this study were: (i) to identify MRP3 polymorphisms; (ii) to functionally characterize one relatively frequent MRP3 polymorphism; and (iii) to establish whether MRP3 transports bilirubin glucuronosides. Exonic nucleotide variants in the ABCC3 gene were identified by single-strand conformation polymorphism analysis. The 3890G>A mutation, resulting in MRP3-ArgHis, was introduced into the ABCC3 cDNA which was stably transfected into MDCKII cells. For the functional characterization of MRP3-ArgHis in comparison with MRP3, ATP-dependent transport was analysed in isolated membrane vesicles. Two non-synonymous MRP3 variants were identified with an allele frequency of 0.003 for 1643T>A (MRP3-LeuGln) and 0.08 for 3890G>A (MRP3-ArgHis). Because of the high frequency of the 3890G>A mutation, and because of the close proximity of Arg to the second nucleotide-binding domain, we pursued the functional characterization of the MRP3-ArgHis polymorphic variant. MRP3-ArgHis was correctly localized to the basolateral membrane of polarized MDCKII cells. We identified monoglucuronosyl bilirubin, bisglucuronosyl bilirubin and leukotriene C4 as substrates for both MRP3 and MRP3-ArgHis. Dehydroepiandrosterone-3-sulphate and 17beta-glucuronosyl oestradiol were transported with similar kinetics by MRP3 and MRP3-ArgHis. This experimental setup provides a useful tool to analyse the functional consequences of polymorphic variants of MRP3.

人多药耐药蛋白3 (MRP3/ABCC3)自然变异体MRP3- arg1297his的鉴定与功能表征
人多药耐药蛋白3 (MRP3,符号ABCC3)是一种atp结合的盒式转运蛋白,介导有机阴离子的外排,包括与葡萄糖醛酸盐、硫酸盐或谷胱甘肽结合的亲脂性物质,穿过极化细胞(如肝细胞)的基底外膜进入血液。MRP3的遗传变异可能影响这些物质从细胞外的运输。本研究的目的是:(i)确定MRP3多态性;(ii)对一个相对频繁的MRP3多态性进行功能表征;(iii)确定MRP3是否转运胆红素糖醛酸苷。ABCC3基因外显子核苷酸变异通过单链构象多态性分析得到。将3890G>A突变引入ABCC3 cDNA中,产生MRP3-ArgHis,稳定转染MDCKII细胞。为了与MRP3比较MRP3- arghis的功能特征,在分离的膜泡中分析了atp依赖性转运。鉴定出两个非同义的MRP3变异,1643T>A (MRP3- leugln)和3890G>A (MRP3- arghis)的等位基因频率分别为0.003和0.08。由于3890G>A突变的高频率,以及Arg与第二核苷酸结合结构域的接近,我们对MRP3-ArgHis多态性变异进行了功能表征。MRP3-ArgHis正确定位于极化MDCKII细胞的基底外侧膜。我们发现单糖醛基胆红素、双糖醛基胆红素和白三烯C4是MRP3和MRP3- arghis的底物。脱氢表雄酮-3-硫酸盐和17 β -葡萄糖醛酸雌二醇通过MRP3和MRP3- arghis以相似的动力学转运。该实验设置为分析MRP3多态性变异的功能后果提供了一个有用的工具。
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