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酵母中的膜稳态与多药耐药性

Membrane homoeostasis and multidrug resistance in yeast.

作者信息

Panwar Sneh Lata, Pasrija Ritu, Prasad Rajendra

机构信息

Yeast Molecular Genetics Laboratory, School of Life Sciences, Jawaharlal Nehru University, New Delhi 110067, India.

出版信息

Biosci Rep. 2008 Aug;28(4):217-28. doi: 10.1042/BSR20080071.

Abstract

The development of MDR (multidrug resistance) in yeast is due to a number of mechanisms. The most documented mechanism is enhanced extrusion of drugs mediated by efflux pump proteins belonging to either the ABC (ATP-binding cassette) superfamily or MFS (major facilitator superfamily). These drug-efflux pump proteins are localized on the plasma membrane, and the milieu therein affects their proper functioning. Several recent studies demonstrate that fluctuations in membrane lipid composition affect the localization and proper functioning of the MDR efflux pump proteins. Interestingly, the efflux pumps of the ABC superfamily are particularly susceptible to imbalances in membrane-raft lipid constituents. This review focuses on the importance of the membrane environment in functioning of the drug-efflux pumps and explores a correlation between MDR and membrane lipid homoeostasis.

摘要

酵母中多药耐药性(MDR)的产生是由多种机制导致的。记载最多的机制是由属于ABC(ATP结合盒)超家族或MFS(主要易化子超家族)的外排泵蛋白介导的药物外排增强。这些药物外排泵蛋白定位于质膜上,其所处的微环境会影响它们的正常功能。最近的几项研究表明,膜脂成分的波动会影响MDR外排泵蛋白的定位和正常功能。有趣的是,ABC超家族的外排泵对膜筏脂质成分的失衡尤为敏感。本综述重点关注膜环境在药物外排泵功能中的重要性,并探讨MDR与膜脂稳态之间的相关性。

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