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Pdr5介导的多药耐药性需要CPY-液泡分选蛋白Vps3:外源性化合物是否从液泡转运至质膜转运蛋白以进行外排?

Pdr5-mediated multidrug resistance requires the CPY-vacuolar sorting protein Vps3: are xenobiotic compounds routed from the vacuole to plasma membrane transporters for efflux?

作者信息

Rutledge Robert M, Ghislain Michel, Mullins J Michael, de Thozée Cedric Pety, Golin John

机构信息

Department of Biology, The Catholic University of America, Washington, DC 20064, USA.

出版信息

Mol Genet Genomics. 2008 Jun;279(6):573-83. doi: 10.1007/s00438-008-0334-5. Epub 2008 Mar 8.

Abstract

In Saccharomyces cerevisiae several members of the ATP-binding cassette transporter superfamily efflux a broad range of xenobiotic substrates from cells. The vacuole also plays a critical role in multidrug resistance. Mutations in genes such as VPS3 that are essential for vacuolar acidification and carboxypeptidase Y vacuolar protein-sorting are multidrug sensitive. A similar phenotype is also observed with deletions of VPS15, VPS34, and VPS38, which encode essential members of the carboxypeptidase Y vacuolar protein-sorting pathway. Prior to the work described herein, detoxification by transporters and the vacuole were presumed to function independently. We demonstrate that this is not the case. Significantly, Vps3 has an epistatic relationship with Pdr5, a major yeast multidrug transporter. Thus, a double pdr5, vps3 deletion mutant is no more multidrug sensitive than its isogenic single-mutant counterparts. Subcellular fractionation experiments and analysis of purified plasma membrane vesicles indicate, however, that a vps3 mutation does not affect the membrane-localization or ATPase activity of Pdr5 even though rhodamine 6G efflux is reduced significantly. This suggests that Vps3 and probably other members of the carboxypeptidase Y vacuolar protein-sorting pathway are required for relaying xenobiotic compounds to transporters in the membrane.

摘要

在酿酒酵母中,ATP结合盒转运蛋白超家族的几个成员可将多种外源性底物排出细胞。液泡在多药耐药性中也起着关键作用。对液泡酸化和羧肽酶Y液泡蛋白分选至关重要的基因(如VPS3)发生突变会导致多药敏感。在VPS15、VPS34和VPS38缺失时也观察到类似的表型,这些基因编码羧肽酶Y液泡蛋白分选途径的必需成员。在本文所述工作之前,转运蛋白和液泡的解毒作用被认为是独立发挥功能的。我们证明事实并非如此。值得注意的是,Vps3与主要的酵母多药转运蛋白Pdr5存在上位关系。因此,双缺失突变体pdr5、vps3并不比其同基因单突变体更敏感。然而,亚细胞分级分离实验和纯化质膜囊泡的分析表明,尽管若丹明6G的外排显著减少,但vps3突变并不影响Pdr5的膜定位或ATP酶活性。这表明Vps3以及可能的羧肽酶Y液泡蛋白分选途径的其他成员是将外源性化合物传递给膜上转运蛋白所必需的。

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