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Fluconazole affects the alkali-metal-cation homeostasis and susceptibility to cationic toxic compounds of Candida glabrata

机译:氟康唑影响碱金属阳离子稳态和对Candida Glabrata的阳离子毒性化合物的易感性

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Candida glabrata is a salt-tolerant and fluconazole (FLC)-resistant yeast species. Here, we analyse the contribution of plasma-membrane alkali-metal-cation exporters, a cation/proton antiporter and a cation ATPase to cation homeostasis and the maintenance of membrane potential (ΔΨ). Using a series of single and double mutants lacking CNH1 and/or ENA1 genes we show that the inability to export potassium and toxic alkali-metal cations leads to a slight hyperpolarization of the plasma membrane of C. glabrata cells; this hyperpolarization drives more cations into the cells and affects cation homeostasis. Surprisingly, a much higher hyperpolarization of C. glabrata plasma membrane was produced by incubating cells with subinhibitory concentrations of FLC. FLC treatment resulted in a substantially increased sensitivity of cells to various cationic drugs and toxic cations that are driven into the cell by negative-inside plasma-membrane potential. The effect of the combination of FLC plus cationic drug treatment was enhanced by the malfunction of alkali-metal-cation transporters that contribute to the regulation of membrane potential and cation homeostasis. In summary, we show that the combination of subinhibitory concentrations of FLC and cationic drugs strongly affects the growth of C. glabrata cells.
机译:Candida Glabrata是一种耐盐和氟康唑(FLC)-Resistant酵母物种。在此,我们分析血浆膜碱金属 - 金属 - 金属 - 金属 - 金属 - 金属 - 金属 - 金属阳离子阳离子,阳离子/质子炔醇和阳离子ATP酶的贡献,以及膜电位维持(δψ)。使用缺乏CNH1和/或ENA1基因的一系列单一和双突变体,我们表明,无法出口钾和有毒碱金属阳离子导致C.Glabrata细胞的血浆膜的轻微超极化;这种超极化将更多阳离子驱动到细胞中并影响阳离子稳态。令人惊讶的是,通过将细胞与软素浓度的FLC孵育细胞来制备较高的C.Glabrata血浆膜的超极化。 FLC处理导致细胞对各种阳离子药物和毒性阳离子的敏感性增加,通过阴性内部膜电位被驱动到细胞中。通过碱金属 - 阳离子转运蛋白的故障提高了FLC加阳离子药物处理的组合的影响,这有助于调节膜潜力和阳离子稳态。总之,我们表明FLC和阳离子药物的水下浓度的组合强烈影响C.Glabrata细胞的生长。

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