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首页> 外文期刊>Microbiology >Cloning of Candida albicans genes conferring resistance to azole antifungal agents: characterization of CDR2, a new multidrug ABC transporter gene
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Cloning of Candida albicans genes conferring resistance to azole antifungal agents: characterization of CDR2, a new multidrug ABC transporter gene

机译:Candida albicans基因的克隆赋予唑脂抗原剂的抗性:CDR2的表征,一种新的多药ABC转运基因

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Resistance to azole antifungal agents in Candida albicans can be mediated by multidrug efflux transporters. In a previous study, we identified at least two such transporters, Cdr1p and Benp, which belong to the class of ATP-binding cassette (ABC) transporters and of major facilitators, respectively. To isolate additional factors potentially responsible for resistance to azole antifungal agents in C. albicans, the hypersusceptibility of a Saccharomyces cerevisiae multidrug transporter mutant, δpdr5, to these agents was complemented with a C. albicans genomic library. Several new genes were isolated, one of which was a new ABC transporter gene called CDR2 (Candidadrug resistance). The protein Cdr2p encoded by this gene exhibited 84% identity with Cdr1p and could confer resistance to azole antifungal agents, to other antifungals (terbinafine, amorolfine) and to a variety of metabolic inhibitors. The disruption of CDR2 in the C. albicans strain CAF4-2 did not render cells more susceptible to these substances. When the disruption of CDR2 was performed in the background of a mutant in which CDR1 was deleted, the resulting double δcdr1 δcdr2 mutant was more susceptible to these agents than the single δcdr1 mutant. The absence of hypersusceptibility of the single δcdr2 mutant could be explained by the absence of CDR2 mRNA in azole-susceptible C albicans strains. CDR2 was overexpressed, however, in clinical C. albicans isolates resistant to azole antifungal agents as described previously for CDR1, but to levels exceeding or equal to those reached by CDR1. Interestingly, CDR2 expression was restored in δcdr1 mutants reverting spontaneously to wild-type levels of susceptibility to azole antifungal agents. These data demonstrate that CDR2 plays an important role in mediating the resistance of C. albicans to azole antifungal agents.
机译:抗淀粉抗生素在念珠菌白醛植物中的抗性可以通过多药中流出转运蛋白介导。在先前的研究中,我们鉴定了至少两种这样的运输机,CDR1P和本金,其分别属于ATP结合盒(ABC)运输器和主要促进剂。为了隔离潜在负责抗唑醛抗原剂的耐药抗性剂的额外因素,酵母菌酿酒酵母多药物传输突变体,ΔPDR5,这些试剂的过度感染与C. albicans基因组文库互补。分离出几种新基因,其中一个是一种新的ABC转运蛋白,称为CDR2(念珠菌抗性)。由该基因编码的蛋白CDR2P与CDR1P表现出84%的同一性,并且可以赋予唑脂抗真菌剂的抗性,以及其他抗真菌剂(Terbinafine,Amorolfine)和各种代谢抑制剂。在C. albicans菌株CAF4-2中的CDR2中断并未使细胞更容易受到这些物质的影响。当在缺失CDR1的突变体的突变体的背景下进行CDR2的破坏时,所得双ΔCDR1δCDR2突变体比单个ΔCDR1突变体更容易受到这些试剂的影响。不能通过在唑易溶解的C albicans菌株中没有CDR2 mRNA来解释单ΔCDR2突变体的过度感染性。然而,CDR2在临床C中过表达,在临床C中,古木儿同性恋者将如前所述用于CDR1的抗真菌剂抵抗力,但对CDR1达到的水平超过或等于那些水平。有趣的是,CDR2表达在ΔCDR1突变体中恢复,自发地恢复到对唑脂果剂的野生型易感性水平。这些数据表明CDR2在介导C. albicans对唑类抗真菌剂的抗性中起重要作用。

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