Boutry M, Douglas M G
J Biol Chem. 1983 Dec 25;258(24):15214-9.
A chimeric plasmid carrying the structural gene (ATP2) for the mitochondrial ATPase beta subunit of Saccharomyces cerevisiae has been used to complement a mutant of Schizosaccharomyces pombe lacking the beta subunit (Boutry, M., and Goffeau, A. (1982) Eur. J. Biochem. 125, 471-477). Transformation with ATP2 restored the growth rate of S. pombe mutant on glycerol as well as the mitochondrial ATPase and 32Pi-ATP exchange activities to approximately 20% of the parental strain. Mitochondria prepared from the transformant contained a normal amount of a hybrid F1-ATPase consisting of the S. cerevisiae beta subunit assembled with the remaining subunits of the S. pombe ATPase complex. The presence of the S. cerevisiae beta subunit in the S. pombe ATPase complex conferred a sensitivity to the energy transfer inhibitors citreoviridin and oligomycin which was like that of the intact S. cerevisiae enzyme. The S. cerevisiae beta subunit assembled into the hybrid ATPase complex was the same size as the mature subunit in S. cerevisiae. These data indicate that the mechanism of mitochondrial import and the assembly of the cytoplasmically synthesized subunits is similar or identical in these evolutionary divergent yeasts. In addition, this study provides a new approach for the construction of hybrid mitochondrial ATPase complexes which can be used to examine the function of selected subunits in energy transduction.
携带酿酒酵母线粒体ATP酶β亚基结构基因(ATP2)的嵌合质粒已被用于互补粟酒裂殖酵母缺乏β亚基的突变体(布特里,M.,和戈夫eau,A.(1982年)《欧洲生物化学杂志》125卷,471 - 477页)。用ATP2转化恢复了粟酒裂殖酵母突变体在甘油上的生长速率,以及线粒体ATP酶和32Pi - ATP交换活性,使其达到亲本菌株的约20%。从转化体中制备的线粒体含有正常量的杂合F1 - ATP酶,该酶由酿酒酵母β亚基与粟酒裂殖酵母ATP酶复合体的其余亚基组装而成。粟酒裂殖酵母ATP酶复合体中酿酒酵母β亚基的存在赋予了对能量转移抑制剂黄绿青霉素和寡霉素的敏感性,这与完整的酿酒酵母酶相似。组装到杂合ATP酶复合体中的酿酒酵母β亚基与酿酒酵母中的成熟亚基大小相同。这些数据表明,在这些进化上不同的酵母中,线粒体导入机制和细胞质合成亚基的组装是相似或相同的。此外,本研究为构建杂合线粒体ATP酶复合体提供了一种新方法,可用于研究能量转导中选定亚基的功能。