Shaw J M, Wickner W T
Molecular Biology Institute, University of California, Los Angeles 90024-1570.
EMBO J. 1991 Jul;10(7):1741-8. doi: 10.1002/j.1460-2075.1991.tb07698.x.
We have isolated four yeast mutants that are unable to partition maternal vacuoles into growing buds. Three of these vacuole segregation (vac) mutants also mislocalize the vacuolar protease carboxypeptidase Y (CPY) to the cell surface, a phenotype previously reported for vac strains. A fourth mutant, vac2-1, exhibits a temperature-sensitive defect in vacuole segregation but does not show a defect in protein targeting from the Golgi apparatus to the vacuole. Haploid vac2-1 cells grown at the non-permissive temperature do not secrete CPY or a second vacuolar protease, proteinase A (PrA). Furthermore, newly synthesized precursors of CPY are converted to mature forms with similar kinetics in both vac2-1 and wild-type cells. In addition, invertase is secreted normally from vac2-1 cells, indicating that post-Golgi steps in the secretory pathway are not blocked in this mutant. These results suggest that VAC2 function is necessary for vacuole division and segregation in yeast but is not involved in vacuole protein sorting events at the Golgi apparatus.
我们分离出了四个酵母突变体,它们无法将母液泡分配到生长中的芽中。其中三个液泡分离(vac)突变体还将液泡蛋白酶羧肽酶Y(CPY)错误定位到细胞表面,这是先前报道的vac菌株的一种表型。第四个突变体vac2-1在液泡分离中表现出温度敏感缺陷,但在蛋白质从高尔基体靶向液泡方面没有缺陷。在非允许温度下生长的单倍体vac2-1细胞不分泌CPY或第二种液泡蛋白酶蛋白酶A(PrA)。此外,新合成的CPY前体在vac2-1细胞和野生型细胞中以相似的动力学转化为成熟形式。此外,蔗糖酶从vac2-1细胞中正常分泌,这表明该突变体中分泌途径的高尔基体后步骤没有被阻断。这些结果表明,VAC2功能对于酵母中的液泡分裂和分离是必需的,但不参与高尔基体处的液泡蛋白质分选事件。