Gao Ping-Hui, Cao Yong-Bing, Jia Xin-Ming, Cao Ying-Ying, Quan Hua, Wang Yan, Jiang Yuan-Ying
Department of Pharmacology, School of Pharmacy, Second Military Medical University, 325 Guo He Road, Shanghai 200433, China.
Int J Antimicrob Agents. 2006 Jul;28(1):69-74. doi: 10.1016/j.ijantimicag.2006.02.016. Epub 2006 Jun 19.
In the present study, wild-type and mutant Candida drug resistance protein 1 (Cdr1p) was expressed in Saccharomyces cerevisiae and phenotype alterations were observed in order to understand the importance of Cdr1p in azole resistance. Cdr1p was subjected to site-directed mutagenesis resulting in an alteration (W629L) to transmembrane segment 4 (TMS4). The susceptibilities to azole antifungal drugs of yeast cells as well as passive efflux of Rhodamine 6G were measured. The mutant strain showed greater sensitivity to azole antifungal drugs than the strain with the wild-type plasmid (AD-CDR1) as well as reduced efflux of Rhodamine 6G. Taken together, these phenotypic alterations of yeast cells were caused by the mutation in TMS4 of Cdr1p, which suggests that TMS4 plays a major role in azole antifungal drug efflux and is an azole antifungal drug-binding site.
在本研究中,野生型和突变型念珠菌耐药蛋白1(Cdr1p)在酿酒酵母中表达,并观察其表型变化,以了解Cdr1p在唑类耐药中的重要性。对Cdr1p进行定点诱变,导致跨膜区4(TMS4)发生改变(W629L)。测定了酵母细胞对唑类抗真菌药物的敏感性以及罗丹明6G的被动外排。与携带野生型质粒的菌株(AD-CDR1)相比,突变菌株对唑类抗真菌药物表现出更高的敏感性,同时罗丹明6G的外排减少。综上所述,酵母细胞的这些表型变化是由Cdr1p的TMS4突变引起的,这表明TMS4在唑类抗真菌药物外排中起主要作用,并且是唑类抗真菌药物的结合位点。