Oluwatosin Y E, Kane P M
Department of Biochemistry and Molecular Biology, SUNY Health Science Center at Syracuse, New York 13210, USA.
Mol Cell Biol. 1998 Mar;18(3):1534-43. doi: 10.1128/MCB.18.3.1534.
Mutants of Saccharomyces cerevisiae that lack vacuolar proton-translocating ATPase (V-ATPase) activity show a well-defined set of Vma- (stands for vacuolar membrane ATPase activity) phenotypes that include pH-conditional growth, increased calcium sensitivity, and the inability to grow on nonfermentable carbon sources. By screening based on these phenotypes and the inability of vma mutants to accumulate the lysosomotropic dye quinacrine in their vacuoles, five new vma complementation groups (vma41 to vma45) were identified. The VMA45 gene was cloned by complementation of the pH-conditional growth of the vma45-1 mutant strain and shown to be allelic to the previously characterized KEX2 gene, which encodes a serine endoprotease localized to the late Golgi compartment. Both vma45-1 mutants and kex2 null mutants exhibit the full range of Vma- growth phenotypes and show no vacuolar accumulation of quinacrine, indicating loss of vacuolar acidification in vivo. However, immunoprecipitation of the V-ATPase from both strains under nondenaturing conditions revealed no defect in assembly of the enzyme, vacuolar vesicles isolated from a kex2 null mutant showed levels of V-ATPase activity and proton pumping comparable to those of wild-type cells, and the V-ATPase complex purified from kex2 null mutants was structurally indistinguishable from that of wild-type cells. The results suggest that kex2 mutations exert an inhibitory effect on the V-ATPase in the intact cell but that the ATPase is present in the mutant strains in a fully assembled state, potentially capable of full enzymatic activity. This is the first time a mutation of this type has been identified.
缺乏液泡质子转运ATP酶(V-ATP酶)活性的酿酒酵母突变体表现出一系列明确的Vma-(代表液泡膜ATP酶活性)表型,包括pH条件性生长、钙敏感性增加以及无法在非发酵碳源上生长。通过基于这些表型以及vma突变体无法在其液泡中积累溶酶体亲和染料喹吖因进行筛选,鉴定出了五个新的vma互补组(vma41至vma45)。通过对vma45 - 1突变体菌株的pH条件性生长进行互补克隆了VMA45基因,并证明它与先前鉴定的KEX2基因等位,KEX2基因编码一种定位于高尔基体晚期的丝氨酸内切蛋白酶。vma45 - 1突变体和kex2缺失突变体均表现出完整的Vma-生长表型,且喹吖因在液泡中无积累,表明体内液泡酸化丧失。然而,在非变性条件下对两种菌株的V-ATP酶进行免疫沉淀显示该酶组装无缺陷,从kex2缺失突变体中分离的液泡囊泡显示出与野生型细胞相当的V-ATP酶活性和质子泵浦水平,并且从kex2缺失突变体中纯化的V-ATP酶复合物在结构上与野生型细胞的无异。结果表明,kex2突变对完整细胞中的V-ATP酶产生抑制作用,但ATP酶在突变菌株中以完全组装状态存在,可能具有完整的酶活性。这是首次鉴定出这种类型的突变。