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A novel role for the yeast protein kinase Dbf2p in vacuolar H+-ATPase function and sorbic acid stress tolerance

机译:酵母蛋白激酶DBF2P在真空H + -ATP酶功能中的一种新作用和山梨酸胁迫耐受性

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In Saccharomyces cerevisiae, the serine-threonine protein kinase activity of Dbf2p is required for tolerance to the weak organic acid sorbic acid. Here we show that Dbf2p is required for normal phosphorylation of the vacuolar H+-ATPase (V-ATPase) A and B subunits Vma1p and Vma2p. Loss of V-ATPase activity due to bafilomycin treatment or deletion of either VMA1 or VMA2 resulted in sorbic acid hypersensitivity and impaired vacuolar acidification, phenotypes also observed in both a kinase-inactive dbf2 mutant and cells completely lacking DBF2 (dbf2Δ). Crucially, VMA2 is a multicopy suppressor of both the sorbic acid-sensitive phenotype and the impaired vacuolar-acidification defect of dbf2Δ cells, confirming a functional interaction between Dbf2p and Vma2p. The yeast V-ATPase is therefore involved in mediating sorbic acid stress tolerance, and we have shown a novel and unexpected role for the cell cycle-regulated protein kinase Dbf2p in promoting V-ATPase function.
机译:在酿酒酵母中,对弱有机酸山梨酸耐受性耐受DBF2P的丝氨酸苏氨酸蛋白激酶活性。在这里,我们表明DBF2P是真空H + -ATP酶(V-ATP酶)A和B亚基VMA1P和VMA2P的正常磷酸化。由于BafiLomycin治疗或缺失VMA1或VMA2导致V-ATPase活性的丧失导致山梨酸超敏反应和耐受耐受酸化的受损,在激酶 - 无活性DBF2突变体和细胞中也观察到的表型缺乏DBF2(DBF2Δ)。至关重要的是,VMA2是DBF2Δ细胞的山梨酸敏感表型和损伤的真空酸化缺陷的多拷贝抑制器,证实了DBF2P和VMA2P之间的功能性相互作用。因此,酵母V-ATP酶参与介导山梨酸胁迫耐受性,并且我们对细胞周期调节的蛋白激酶DBF2P促进了V-ATP酶功能的新颖和意外的作用。

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