首页> 外文期刊>Biochimica et biophysica acta. Molecular cell research >Tfp1 is required for ion homeostasis, fluconazole resistance and N-Acetylglucosamine utilization in Candida albicans
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Tfp1 is required for ion homeostasis, fluconazole resistance and N-Acetylglucosamine utilization in Candida albicans

机译:Tfp1是白色念珠菌中离子稳态,氟康唑耐药性和N-乙酰氨基葡萄糖利用所必需的

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The vacuolar-type H+-ATPase (V-ATPase) is crucial for the maintenance of ion homeostasis. Dysregulation of ion homeostasis affects various aspects of cellular processes. However, the importance of V-ATPase in Candida albicans is not totally clear. In this study, we demonstrated the essential roles of V-ATPase through Tfp1, a putative V-ATPase subunit. Deletion of TFP1 led to generation of an iron starvation signal and reduced total iron content, which was associated with mislocalization of Fet34p that was finally due to disorders in copper homeostasis. Furthermore, the tfp1 Delta/Delta mutant exhibited weaker growth and lower aconitase activity on nonfermentable carbon sources, and iron or copper addition partially rescued the growth defect. In addition, the tfp1 Delta/Delta mutant also showed elevated cytosolic calcium levels in normal or low calcium medium that were relevant to calcium release from vacuole. Kinetics of cytosolic calcium response to an alkaline pulse and VCX1 (VCX1 encodes a putative vacuolar Ca2+/H+ exchanger) overexpression assays indicated that the cytosolic calcium status was in relation to Vcx1 activity. Spot assay and concentration-kill curve demonstrated that the tfp1 Delta/Delta mutant was hypersensitive to fluconazole, which was attributed to reduced ergosterol biosynthesis and CDR1 efflux pump activity, and iron/calcium dysregulation. Interestingly, carbon source utilization tests found the tfp1 Delta/Delta mutant was defective for growth on N-Acetylglucosamine (GlcNAc) plate, which was associated with ATP depletion due to the decreased ability to catabolize GIcNAc. Taken together, our study gives new insights into functions of Tfpl, and provides the potential to better exploit V-ATPase as an antifungal target. (C) 2015 Elsevier B.V. All rights reserved.
机译:液泡型H + -ATPase(V-ATPase)对于维持离子稳态至关重要。离子稳态的失调影响细胞过程的各个方面。但是,V-ATPase在白色念珠菌中的重要性尚不完全清楚。在这项研究中,我们通过推定的V-ATPase亚基Tfp1证明了V-ATPase的重要作用。 TFP1的缺失导致铁饥饿信号的产生并降低了总铁含量,这与Fet34p的定位错误有关,该错误定位最终是由铜稳态引起的。此外,tfp1 Delta / Delta突变体在不可发酵的碳源上显示出较弱的生长和较低的乌头酸酶活性,铁或铜的添加部分缓解了生长缺陷。此外,tfp1 Delta / Delta突变体还显示正常或低钙培养基中胞液钙水平升高,这与液泡中的钙释放有关。胞质钙对碱性脉冲和VCX1(VCX1编码假定的液泡Ca2 + / H +交换子)的过表达的动力学表明,胞质钙的状态与Vcx1活性有关。斑点测定和浓度-杀伤曲线表明,tfp1 Delta / Delta突变体对氟康唑过敏,这归因于麦角固醇的生物合成和CDR1外排泵活性降低,以及铁/钙失调。有趣的是,碳源利用测试发现tfp1 Delta / Delta突变体在N-乙酰基葡糖胺(GlcNAc)平板上的生长存在缺陷,这与ATP耗竭有关,因为其分解GIcNAc的能力降低。综上,我们的研究为Tfpl的功能提供了新的见解,并提供了更好地利用V-ATPase作为抗真菌靶标的潜力。 (C)2015 Elsevier B.V.保留所有权利。

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