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昆虫细胞中表达的兔多药耐药蛋白Mrp2介导长春碱和还原型谷胱甘肽在膜囊泡中的转运机制及相互作用

Mechanisms and interaction of vinblastine and reduced glutathione transport in membrane vesicles by the rabbit multidrug resistance protein Mrp2 expressed in insect cells.

作者信息

Van Aubel R A, Koenderink J B, Peters J G, Van Os C H, Russel F G

机构信息

Department of Pharmacology and Toxicology, University of Nijmegen, The Netherlands.

出版信息

Mol Pharmacol. 1999 Oct;56(4):714-9.

PMID:10496953
Abstract

The present study examined how the multidrug resistance protein (MRP) 2, which is an ATP-dependent anionic conjugate transporter, also mediates transport of the chemotherapeutic cationic drug vinblastine (VBL). We show that ATP-dependent [(3)H]VBL (0.2 microM) uptake into membrane vesicles from Sf9 cells infected with a baculovirus encoding rabbit Mrp2 (Sf9-Mrp2) was similar to vesicles from mock-infected Sf9 cells (Sf9-mock) but could be stimulated by reduced glutathione (GSH) with a half-maximum stimulation of 1.9 +/- 0.1 mM. At 5 mM GSH, initial ATP-dependent [(3)H]VBL uptake rates were saturable with an apparent K(m) of 1.5 +/- 0.3 microM. The inhibitory effect of VBL on Mrp2-mediated ATP-dependent transport of the anionic conjugate [(3)H]leukotriene C(4) was potentiated by increasing GSH concentrations. Membrane vesicles from Sf9-Mrp2 cells exhibited a approximately 7-fold increase in initial GSH uptake rates compared with membrane vesicles from Sf9-mock cells. Uptake of [(3)H]GSH was osmotically sensitive, independent of ATP, and was trans-inhibited by GSH. The anionic conjugates estradiol-17beta-D-glucuronide and leukotriene C(4) cis-inhibited [(3)H]GSH uptake but only in the presence of ATP. Whereas ATP-dependent [(3)H]VBL uptake was stimulated by GSH, VBL did not affect [(3)H]GSH uptake. Our results show that GSH is required for Mrp2-mediated ATP-dependent VBL transport and that Mrp2 transports GSH independent of VBL.

摘要

本研究考察了多药耐药蛋白(MRP)2(一种ATP依赖性阴离子共轭转运体)如何介导化疗阳离子药物长春碱(VBL)的转运。我们发现,用编码兔Mrp2的杆状病毒感染的Sf9细胞(Sf9-Mrp2)的膜囊泡对ATP依赖性[³H]VBL(0.2微摩尔)的摄取与 mock感染的Sf9细胞(Sf9-mock)的膜囊泡相似,但可被还原型谷胱甘肽(GSH)刺激,半最大刺激浓度为1.9±0.1毫摩尔。在5毫摩尔GSH存在下,初始ATP依赖性[³H]VBL摄取率呈饱和状态,表观米氏常数(K(m))为1.5±0.3微摩尔。VBL对Mrp2介导的阴离子共轭物[³H]白三烯C₄的ATP依赖性转运的抑制作用随GSH浓度增加而增强。与Sf9-mock细胞的膜囊泡相比,Sf9-Mrp2细胞的膜囊泡初始GSH摄取率增加了约7倍。[³H]GSH的摄取对渗透压敏感,不依赖ATP,并被GSH反抑制。阴离子共轭物雌二醇-17β-D-葡萄糖醛酸和白三烯C₄顺式抑制[³H]GSH摄取,但仅在ATP存在时。虽然ATP依赖性[³H]VBL摄取受GSH刺激,但VBL不影响[³H]GSH摄取。我们的结果表明,GSH是Mrp2介导的ATP依赖性VBL转运所必需的,且Mrp2转运GSH不依赖于VBL。

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