Sá-Correia Isabel, dos Santos Sandra C, Teixeira Miguel C, Cabrito Tânia R, Mira Nuno P
Institute for Biotechnology and Bioengineering, Centre for Biological and Chemical Engineering, Instituto Superior Técnico, 1049-001 Lisboa, Portugal.
Trends Microbiol. 2009 Jan;17(1):22-31. doi: 10.1016/j.tim.2008.09.007. Epub 2008 Dec 4.
The emergence of widespread multidrug resistance (MDR) is a serious challenge for therapeutics, food-preservation and crop protection. Frequently, MDR is a result of the action of drug-efflux pumps, which are able to catalyze the extrusion of unrelated chemical compounds. This review summarizes the current knowledge on the Saccharomyces cerevisiae drug:H+ antiporters of the major facilitator superfamily (MFS), a group of MDR transporters that is still characterized poorly in eukaryotes. Particular focus is given here to the physiological role and expression regulation of these transporters, while we provide a unified view of new data emerging from functional genomics approaches. Although traditionally described as drug pumps, evidence reviewed here corroborates the hypothesis that several MFS-MDR transporters might have a natural substrate and that drug transport might occur only fortuitously or opportunistically. Their role in MDR might even result from the transport of endogenous metabolites that affect the partition of cytotoxic compounds indirectly. Finally, the extrapolation of the gathered knowledge on the MDR phenomenon in yeast to pathogenic fungi and higher eukaryotes is discussed.
广泛存在的多药耐药性(MDR)的出现是治疗、食品保鲜和作物保护面临的严峻挑战。通常,MDR是药物外排泵作用的结果,这些泵能够催化无关化合物的外排。本综述总结了目前关于酿酒酵母主要转运体超家族(MFS)的药物:H⁺反向转运蛋白的知识,这是一组在真核生物中仍未得到充分表征的MDR转运蛋白。这里特别关注这些转运蛋白的生理作用和表达调控,同时我们对功能基因组学方法产生的新数据提供了统一的观点。尽管传统上被描述为药物泵,但这里综述的证据支持了这样的假设,即几种MFS-MDR转运蛋白可能有天然底物,药物转运可能只是偶然或机会性地发生。它们在MDR中的作用甚至可能源于内源性代谢物的转运,这些代谢物间接影响细胞毒性化合物的分配。最后,讨论了将在酵母中收集到的关于MDR现象的知识外推到致病真菌和高等真核生物的情况。