Klionsky D J, Nelson H, Nelson N, Yaver D S
Department of Microbiology, University of California, Davis 95616.
J Exp Biol. 1992 Nov;172:83-92. doi: 10.1242/jeb.172.1.83.
The vacuolar ATPase of the yeast Saccharomyces cerevisiae acidifies the vacuolar lumen and generates an electrochemical gradient across the vacuole membrane. We have investigated the role of compartment acidification of the vacuolar system in the sorting of vacuolar proteins. Strains with chromosomal disruptions of genes (delta vat) encoding the A (69 x 10(3) M(r)), B (57 x 10(3) M(r)) or c (16 x 10(3) M(r)) subunits of the vacuolar ATPase accumulate and secrete precursor forms of the soluble vacuolar hydrolases carboxypeptidase Y and proteinase A. A kinetic analysis suggests that these precursor proteins accumulate in, and are secreted from, the Golgi complex or post-Golgi vesicles. In addition, subcellular fractionation shows that vacuolar hydrolase-invertase hybrid proteins are inefficiently localized to the vacuole in delta vat strains. This result suggests that the vat mutations cause a steady-state defect in vacuolar protein sorting. The vat mutations also affect the sorting of vacuolar membrane proteins. Precursor forms of alkaline phosphatase are accumulated in vat mutant cells, but to a lesser extent than is seen for the soluble vacuolar hydrolases. This finding, coupled with the insensitivity of alkaline phosphatase to the ATPase inhibitor bafilomycin A1, suggests that vacuolar membrane protein sorting is less sensitive to changes in lumenal pH when compared with the targeting of soluble vacuolar proteins. These results indicate that acidification of the vacuolar system is important for efficient sorting of soluble proteins to the vacuole.
酿酒酵母的液泡ATP酶可使液泡腔酸化,并在液泡膜上产生电化学梯度。我们研究了液泡系统的区室酸化在液泡蛋白分选过程中的作用。编码液泡ATP酶A(69×10³ Mr)、B(57×10³ Mr)或c(16×10³ Mr)亚基的基因发生染色体破坏的菌株(delta vat)会积累并分泌可溶性液泡水解酶羧肽酶Y和蛋白酶A的前体形式。动力学分析表明,这些前体蛋白在高尔基体复合体或高尔基体后囊泡中积累并从其中分泌。此外,亚细胞分级分离显示,在delta vat菌株中,液泡水解酶-转化酶杂合蛋白向液泡的定位效率低下。这一结果表明,vat突变导致液泡蛋白分选出现稳态缺陷。vat突变还会影响液泡膜蛋白的分选。碱性磷酸酶的前体形式在vat突变细胞中积累,但程度低于可溶性液泡水解酶。这一发现,再加上碱性磷酸酶对ATP酶抑制剂巴弗洛霉素A1不敏感,表明与可溶性液泡蛋白的靶向相比,液泡膜蛋白分选对腔pH值变化的敏感性较低。这些结果表明,液泡系统的酸化对于将可溶性蛋白有效分选到液泡中很重要。