首页> 外文期刊>Genetics: A Periodical Record of Investigations Bearing on Heredity and Variation >Compensatory Internalization of Pma1 in V-ATPase Mutants in Saccharomyces cerevisiae Requires Calcium- and Glucose-Sensitive Phosphatases
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Compensatory Internalization of Pma1 in V-ATPase Mutants in Saccharomyces cerevisiae Requires Calcium- and Glucose-Sensitive Phosphatases

机译:酿酒酵母中的V-ATP酶突变体中PMA1的补偿内化需要钙和葡萄糖敏感性磷酸酶

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摘要

Loss of V-ATPase activity in organelles, whether through V-ATPase inhibition or V-ATPase (vma) mutations, triggers a compensatory downregulation of the essential plasma membrane proton pump Pma1 in Saccharomyces cerevisiae. We have previously determined that the -arrestin Rim8 and ubiquitin ligase Rsp5 are essential for Pma1 ubiquination and endocytosis in response to loss of V-ATPase activity. Here, we show that Pma1 endocytosis in V-ATPase mutants does not require Rim101 pathway components upstream and downstream of Rim8, indicating that Rim8 is acting independently in Pma1 internalization. We find that two phosphatases, the calcium-responsive phosphatase calcineurin and the glucose-sensitive phosphatase Glc7 (PP1), and one of the Glc7 regulatory subunits Reg1, exhibit negative synthetic genetic interactions with vma mutants, and demonstrate that both phosphatases are essential for ubiquitination and endocytic downregulation of Pma1 in these mutants. Although both acute and chronic loss of V-ATPase activity trigger the internalization of approximate to 50% of surface Pma1, a comparable reduction in Pma1 expression in a pma1-007 mutant neither compensates for loss of V-ATPase activity nor stops further Pma1 endocytosis. The results indicate that the cell surface level of Pma1 is not directly sensed and that internalized Pma1 may play a role in compensating for loss of V-ATPase-dependent acidification. Taken together, these results provide new insights into cross talk between two major proton pumps central to cellular pH control.
机译:细胞器中的V-ATP酶活性丧失,无论是否通过V-ATP酶抑制或V-ATP酶(VMA)突变,触发了酿酒酵母酿酒酵母的基本血浆膜质子泵PMA1的补偿性下调。我们以前确定 - arrestin RIM8和泛素连接酶RSP5对于响应于V-ATP酶活性的损失而是PMA1泛定和内吞作用的必需。在这里,我们表明V-ATP酶突变体中的PMA1内吞作用不需要RIM101途径组分在RIM8的上游和下游,表明RIM8在PMA1内化中独立作用。我们发现两个磷酸酶,钙响应性磷酸酶钙素素和葡萄糖敏感性磷酸酶GLC7(PP1)和GLC7调节亚基Reg1中的一种与VMA突变体表现出负合成遗传相互作用,并证明两种磷酸酶对于泛素化至关重要在这些突变体中的PMA1的内吞下降。尽管V-ATP酶活性的急性和慢性损失触发近似50%的表面pMA1的内化,但PMA1-007突变体中PMA1表达的相当降低既不补偿V-ATP酶活性也不会使PMA1内吞作用进一步。结果表明,不直接感测PMA1的细胞表面水平,并且内化PMA1可以在补偿V-ATP酶依赖性酸化的损失时发挥作用。总之,这些结果在两个主要质子泵之间的交叉谈话中提供了新的洞察力到细胞pH控制。

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