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还原型谷胱甘肽的ATP依赖性转运在YCF1上进行,YCF1是哺乳动物多药耐药相关蛋白的酵母同源物。

ATP-dependent transport of reduced glutathione on YCF1, the yeast orthologue of mammalian multidrug resistance associated proteins.

作者信息

Rebbeor J F, Connolly G C, Dumont M E, Ballatori N

机构信息

Department of Environmental Medicine, University of Rochester School of Medicine, Rochester, New York 14642, USA.

出版信息

J Biol Chem. 1998 Dec 11;273(50):33449-54. doi: 10.1074/jbc.273.50.33449.

Abstract

The transport systems involved in the export of cellular reduced glutathione (GSH) have not been identified, although recent studies implicate a role for some of the multidrug resistance associated proteins (MRP), including MRP1 and MRP2. The present study examined the hypothesis that the yeast orthologue of MRP, Ycf1p, mediates ATP-dependent GSH transport. [3H]GSH transport was measured in vacuolar membrane vesicles isolated from a control strain of Saccharomyces cerevisiae (DTY165), the isogenic DTY167 strain that lacks a functional Ycf1p, and in DTY167 transformed with a 2-micrometer plasmid vector containing YCF1. GSH transport in control vacuolar membrane vesicles was mediated largely by an ATP-dependent, low affinity pathway (Km = 15 +/- 4 mM). ATP-dependent [3H]GSH transport was cis-inhibited by substrates of the yeast Ycf1p transporter and inhibited by 4,4'-diisothiocyanatostilbene-2,2'-disulfonic acid, probenecid, and sulfinpyrazone, inhibitors of MRP1 and MRP2, but was minimally affected by membrane potential or pH gradient uncouplers. In contrast, ATP-dependent GSH transport was not seen in vacuolar membrane vesicles isolated from the DTY167 yeast strain without a functional Ycf1p but was restored to near wild-type levels in the DTY167 strain transformed with YCF1 and expressing the vacuolar Ycf1p transporter. On the other hand, expression and functional activity of a bile acid transporter, Bat1p, and of the V-type ATPase were similar in all three yeast strains. These results provide direct evidence for ATP-dependent low affinity transport of GSH by the yeast Ycf1p transporter. Because of the structural and functional homology between Ycf1p and MRP1 and MRP2, these data support the hypothesis that GSH efflux from mammalian cells is mediated by these membrane proteins.

摘要

尽管最近的研究表明一些多药耐药相关蛋白(MRP),包括MRP1和MRP2,在其中发挥了作用,但参与细胞内还原型谷胱甘肽(GSH)输出的转运系统尚未明确。本研究检验了以下假说:MRP的酵母同源物Ycf1p介导ATP依赖的GSH转运。在从酿酒酵母对照菌株(DTY165)、缺乏功能性Ycf1p的同基因DTY167菌株以及用含有YCF1的2微米质粒载体转化的DTY167中分离得到的液泡膜囊泡中测量[3H]GSH转运。对照液泡膜囊泡中的GSH转运主要由一条ATP依赖的低亲和力途径介导(Km = 15 +/- 4 mM)。ATP依赖的[3H]GSH转运被酵母Ycf1p转运体的底物顺式抑制,并被MRP1和MRP2的抑制剂4,4'-二异硫氰酸根合芪-2,2'-二磺酸、丙磺舒和磺吡酮抑制,但受膜电位或pH梯度解偶联剂的影响最小。相比之下,在从没有功能性Ycf1p的DTY167酵母菌株中分离得到的液泡膜囊泡中未观察到ATP依赖的GSH转运,但在用YCF1转化并表达液泡Ycf1p转运体的DTY167菌株中恢复到接近野生型水平。另一方面,胆汁酸转运体Bat1p和V型ATP酶在所有三种酵母菌株中的表达和功能活性相似。这些结果为酵母Ycf1p转运体介导ATP依赖的低亲和力GSH转运提供了直接证据。由于Ycf1p与MRP1和MRP2之间存在结构和功能同源性,这些数据支持了哺乳动物细胞中GSH外排由这些膜蛋白介导的假说。

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