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Candida albicans VMA3 Is Necessary for V-ATPase Assembly and Function and Contributes to Secretion and Filamentation

机译:白色念珠菌VMA3是V-ATPase组装和功能所必需的,并且有助于分泌和细丝化

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The vacuolar membrane ATPase (V-ATPase) is a protein complex that utilizes ATP hydrolysis to drive protons from the cytosol into the vacuolar lumen, acidifying the vacuole and modulating several key cellular response systems in Saccharomyces cerevisiae. To study the contribution of V-ATPase to the biology and virulence attributes of the opportunistic fungal pathogen Candida albicans, we created a conditional mutant in which VMA3 was placed under the control of a tetracycline-regulated promoter (tetR-VMA3 strain). Repression of VMA3 in the tetR-VMA3 strain prevents V-ATPase assembly at the vacuolar membrane and reduces concanamycin A-sensitive ATPase-specific activity and proton transport by more than 90%. Loss of C. albicans V-ATPase activity alkalinizes the vacuolar lumen and has pleiotropic effects, including pH-dependent growth, calcium sensitivity, and cold sensitivity. The tetR-VMA3 strain also displays abnormal vacuolar morphology, indicative of defective vacuolar membrane fission. The tetR-VMA3 strain has impaired aspartyl protease and lipase secretion, as well as attenuated virulence in an in vitro macrophage killing model. Repression of VMA3 suppresses filamentation, and V-ATPase-dependent filamentation defects are not rescued by overexpression of RIM8, MDS3, EFG1, CST20, or UME6, which encode positive regulators of filamentation. Specific chemical inhibition of Vma3p function also results in defective filamentation. These findings suggest either that V-ATPase functions downstream of these transcriptional regulators or that V-ATPase function during filamentation involves independent mechanisms and alternative signaling pathways. Taken together, these data indicate that V-ATPase activity is a fundamental requirement for several key virulence-associated traits in C. albicans.
机译:液泡膜ATPase(V-ATPase)是一种蛋白质复合物,利用ATP水解将质子从胞质溶胶驱入液泡腔,酸化液泡并调节酿酒酵母中的几个关键细胞反应系统。为了研究V-ATPase对机会性真菌病原体白色念珠菌的生物学和毒力属性的贡献,我们创建了一个条件突变体,其中 VMA3 置于四环素调节启动子(tetR - VMA3 株)。抑制tetR- VMA3 株中的 VMA3 可以防止液泡膜上的V-ATPase装配,并使刀豆球蛋白A敏感的ATPase特异性活性和质子转运降低90%以上。白色念珠菌V-ATPase活性的丧失使液泡腔内的碱化,并具有多效作用,包括pH依赖性生长,钙敏感性和冷敏感性。 tetR- VMA3 菌株还显示出异常的液泡形态,表明液泡膜裂变不良。在体外巨噬细胞杀伤模型中,tetR- VMA3 菌株损害了天冬氨酰蛋白酶和脂肪酶的分泌,并且减弱了毒力。抑制 VMA3 抑制丝状化,而过表达 RIM8 MDS3 EFG1 <不能挽救V-ATPase依赖性丝状化缺陷。 / em>, CST20 UME6 ,它们编码细丝的正向调节剂。 Vma3p功能的特定化学抑制作用也会导致有丝分裂。这些发现表明,V-ATPase在这些转录调节子的下游起作用,或者在丝化过程中,V-ATPase的作用涉及独立的机制和替代的信号途径。综上所述,这些数据表明,V-ATPase活性是白色念珠菌中几个关键的毒力相关性状的基本要求。

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