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人类有机阳离子转运体2变体p.270Ala>Ser的功能特性

Functional characterization of the human organic cation transporter 2 variant p.270Ala>Ser.

作者信息

Zolk Oliver, Solbach Thomas F, König Jörg, Fromm Martin F

机构信息

Institute of Experimental and Clinical Pharmacology and Toxicology, University of Erlangen-Nuremberg, Erlangen, Germany.

出版信息

Drug Metab Dispos. 2009 Jun;37(6):1312-8. doi: 10.1124/dmd.108.023762. Epub 2009 Feb 27.

Abstract

The organic cation transporter 2 (OCT2, SLC22A2) plays an important role for renal drug elimination. Recent clinical studies indicate an impact of the frequent nonsynonymous c.808G>T (p.270Ala>Ser) polymorphism on renal clearance of metformin and the extent of the metformin-cimetidine interaction. The role of this polymorphism for renal disposition of endogenous compounds and drugs other than metformin has not been investigated. In addition, it is unclear whether the observed genotype dependence of an OCT2-mediated drug-drug interaction might occur also with other OCT inhibitors. To address these issues, we generated human embryonic kidney cells stably expressing wild-type OCT2 or the p.270Ala>Ser variant. No differences in protein expression levels and membrane incorporation pattern were observed between the two cell lines. The p.270Ala>Ser variant significantly impaired uptake kinetics of 1-methyl-4-phenylpyridinium, dopamine, norepinephrine, and propranolol. V(max) values were significantly reduced for uptake of all four compounds mediated by the p.270Ala>Ser variant compared with wild-type OCT2. In addition, a significant difference in the affinity to wild-type and mutant OCT2 was observed for dopamine (K(m) dopamine: 932 +/- 77 versus 1285 +/- 132 microM). Moreover, out of a set of 27 compounds p.270Ala>Ser OCT2 was significantly less sensitive to inhibition by cimetidine, flurazepam, metformin, mexiletine, propranolol, and verapamil than wild-type OCT2 (e.g., for propranolol: IC(50) wild type versus p.270Ala>Ser 189 versus 895 microM, P < 0.001). Our results indicate that the common OCT2 c.808G>T single nucleotide polymorphism significantly alters uptake of endogenous compounds and drugs. Moreover, for selected compounds the extent of OCT2-mediated drug interactions could depend on OCT2 c.808G>T genotype.

摘要

有机阳离子转运体2(OCT2,SLC22A2)在肾脏药物清除中起重要作用。近期临床研究表明,常见的非同义c.808G>T(p.270Ala>Ser)多态性对二甲双胍的肾脏清除率以及二甲双胍与西咪替丁相互作用的程度有影响。该多态性对内源性化合物及除二甲双胍外其他药物的肾脏处置作用尚未得到研究。此外,尚不清楚观察到的OCT2介导的药物 - 药物相互作用的基因型依赖性是否也会在其他OCT抑制剂中出现。为解决这些问题,我们构建了稳定表达野生型OCT2或p.270Ala>Ser变体的人胚肾细胞。两种细胞系之间未观察到蛋白质表达水平和膜整合模式的差异。p.270Ala>Ser变体显著损害了1 - 甲基 - 4 - 苯基吡啶鎓、多巴胺、去甲肾上腺素和普萘洛尔的摄取动力学。与野生型OCT2相比,p.270Ala>Ser变体介导的所有四种化合物摄取的V(max)值均显著降低。此外,观察到多巴胺对野生型和突变型OCT2的亲和力存在显著差异(多巴胺的K(m):932±77对1285±132 microM)。此外,在一组27种化合物中,p.270Ala>Ser OCT2对西咪替丁、氟西泮、二甲双胍、美西律、普萘洛尔和维拉帕米抑制的敏感性显著低于野生型OCT2(例如,对于普萘洛尔:野生型与p.270Ala>Ser的IC(50)分别为189对895 microM,P < 0.001)。我们的结果表明,常见的OCT2 c.808G>T单核苷酸多态性显著改变内源性化合物和药物的摄取。此外,对于某些选定的化合物,OCT2介导的药物相互作用程度可能取决于OCT2 c.808G>T基因型。

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