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KlPDR16 基因的分离与功能分析。

Isolation and functional analysis of the KlPDR16 gene.

机构信息

Department of Microbiology and Virology, Comenius University in Bratislava, Bratislava, Slovak Republic.

出版信息

FEMS Yeast Res. 2014 Mar;14(2):337-45. doi: 10.1111/1567-1364.12102. Epub 2013 Oct 23.

Abstract

The fight against multidrug-resistant pathogens requires an understanding of the underlying cellular mechanisms. In this work, we isolate and characterize one of the multidrug resistance determinants in Kluyveromyces lactis, the KlPDR16 gene. We show that KlPdr16p (345 aa), which belongs to the KlPdr1p regulon, is a functional homologue of the Saccharomyces cerevisiae Pdr16p. Deletion of KlPDR16 resulted in hypersensitivity of K. lactis cells to antifungal azoles, oligomycin, rhodamine 6G, 4-nitroquinoline-N-oxide and alkali metal cations. The Klpdr16∆ mutation led to a decreased content of ergosterol in whole-cell extract. In spite of the hypersensitivity of Klpdr16∆ mutant cells to rhodamine 6G and oligomycin, the transcript level of the KlPDR5 gene and the rhodamine 6G efflux in the mutant was the same as in the parental strain. Increased accumulation of rhodamine 6G in Klpdr16∆ cells indicates that KlPDR16 limits the rate of passive drug diffusion across the membrane, without affecting the glucose-induced drug export. The results obtained show that KlPDR16, similar to its orthologues in other yeast species, influences the passive drug diffusion into the yeast cell.

摘要

对抗多药耐药病原体需要了解其潜在的细胞机制。在这项工作中,我们分离并鉴定了乳酸克鲁维酵母中多药耐药决定因素之一 KlPDR16 基因。我们表明 KlPdr16p(345aa)属于 KlPdr1p 调控子,是酿酒酵母 Pdr16p 的功能同源物。KlPDR16 的缺失导致 K. lactis 细胞对抗真菌唑类、寡霉素、罗丹明 6G、4-硝基喹啉-N-氧化物和碱金属阳离子的敏感性增加。Klpdr16∆突变导致全细胞提取物中麦角固醇含量降低。尽管 Klpdr16∆突变体细胞对罗丹明 6G 和寡霉素敏感,但 KlPDR5 基因的转录水平和突变体中的罗丹明 6G 外排与亲本菌株相同。罗丹明 6G 在 Klpdr16∆细胞中的积累增加表明 KlPDR16 限制了药物通过膜被动扩散的速率,而不影响葡萄糖诱导的药物外排。所得结果表明,KlPDR16 与其他酵母物种中的同源物相似,影响药物被动扩散进入酵母细胞。

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