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Role of vacuolar acidification in protein sorting and zymogen activation: a genetic analysis of the yeast vacuolar proton-translocating ATPase.

机译:液泡酸化在蛋白质分选和酶原激活中的作用:酵母液泡质子转运ATPase的遗传分析。

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摘要

Vacuolar acidification has been proposed to play a key role in a number of cellular processes, including protein sorting, zymogen activation, and maintenance of intracellular pH. We investigated the significance of vacuolar acidification by cloning and mutagenizing the gene for the yeast vacuolar proton-translocating ATPase 60-kilodalton subunit (VAT2). Cells carrying a vat2 null allele were viable; however, these cells were severely defective for growth in medium buffered at neutral pH. Vacuoles isolated from cells bearing the vat2 null allele were completely devoid of vacuolar ATPase activity. The pH of the vacuolar lumen of cells bearing the vat2 mutation was 7.1, compared with the wild-type pH of 6.1, as determined by a flow cytometric pH assay. These results indicate that the vacuolar proton-translocating ATPase complex is essential for vacuolar acidification and that the low-pH state of the vacuole is crucial for normal growth. The vacuolar acidification-defective vat2 mutant exhibited normal zymogen activation but displayed a minor defect in vacuolar protein sorting.
机译:已经提出,液泡酸化在许多细胞过程中起关键作用,包括蛋白质分选,酶原活化和维持细胞内pH。我们通过克隆和诱变酵母液泡质子转运ATPase 60-千达尔顿亚基(VAT2)的基因,研究了液泡酸化的重要性。携带vat2无效等位基因的细胞是有活力的。但是,这些细胞在中性pH缓冲液中的生长严重缺陷。从带有vat2无效等位基因的细胞中分离出的液泡完全没有液泡ATPase活性。如通过流式细胞术pH测定所测定的,带有vat2突变的细胞的液泡腔的pH为7.1,而野生型pH为6.1。这些结果表明液泡质子移位ATP酶复合物对于液泡酸化是必不可少的,并且液泡的低pH状态对于正常生长至关重要。液泡酸化缺陷的vat2突变体表现出正常的酶原激活,但在液泡蛋白分选中显示较小的缺陷。

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