Yan Lan, Zhang Jun-Dong, Cao Yong-Bing, Gao Ping-Hui, Jiang Yuan-Ying
Department of Pharmacology, College of Pharmacy, Second Military Medical University, Shanghai 200433, People's Republic of China.
J Proteome Res. 2007 Jun;6(6):2248-56. doi: 10.1021/pr060656c. Epub 2007 Apr 14.
Multifactorial and multistep alterations are involved in acquired fluconazole (FLC) resistance in Candida albicans. In this study, a FLC-resistant C. albicans strain was obtained by serial cultures of a FLC-susceptible C. albicans strain in incrementally increasing concentrations of FLC. The comparative proteomic study, confirmed by real-time RT-PCR, was performed with the susceptible parental strain and the resistant daughter strain to identify proteins altered during the development of FLC resistance. Our analysis of the differentially expressed proteins identified 22 different proteins, most of which were related to energy metabolisms (e.g., Pgk1, Fba1, and Adh1), and some of which have been previously identified as being involved in FLC resistance in C. albicans (e.g., Ald5, Cdc19, and Gap1). Functional analysis revealed lower intracellular ATP level and mitochondrial membrane potential, less endogenous reactive oxygen species generation in response to antifungal agents, and identical susceptibility to exogenous hydrogen peroxide, heat, and hyperosmotic shock in the resistant strain compared with the susceptible strain. Our results suggest that a metabolism shift might contribute to FLC resistance in C. albicans.
多因素和多步骤改变参与白色念珠菌获得性氟康唑(FLC)耐药。在本研究中,通过在逐步增加浓度的FLC中对FLC敏感的白色念珠菌菌株进行连续传代培养,获得了一株FLC耐药的白色念珠菌菌株。采用实时RT-PCR进行验证的比较蛋白质组学研究,对敏感亲代菌株和耐药子代菌株进行了分析,以鉴定FLC耐药形成过程中发生改变的蛋白质。我们对差异表达蛋白的分析鉴定出22种不同的蛋白质,其中大多数与能量代谢相关(如Pgk1、Fba1和Adh1),一些蛋白质先前已被确定参与白色念珠菌的FLC耐药(如Ald5、Cdc19和Gap1)。功能分析显示,与敏感菌株相比,耐药菌株的细胞内ATP水平和线粒体膜电位较低,对抗真菌剂产生的内源性活性氧较少,对外源过氧化氢、热和高渗休克的敏感性相同。我们的结果表明,代谢转变可能有助于白色念珠菌对FLC产生耐药。