Cabral F, Schatz G
J Biol Chem. 1978 Jun 25;253(12):4396-401.
Yeast mutants specifically lacking cytochrome c oxidase activity were screened for cytochrome c oxidase subunits by one- and two-dimensional electrophoresis, electrophoresis in exponential gradient gels, and immunoprecipitation with antisera against one or more of the cytoplasmically made subunits of the enzyme. Two cytochrome c oxidase-less nuclear mutants previously described from this laboratory each lack one or more mitochondrially synthesized cytochrome c oxidase subunits while possessing all four cytoplasmically synthesized subunits of that enzyme. The subunits remaining in these mutants were not assembled with each other; the cytoplasmically made subunits IV and VI could be released from the mitochondria by sonic oscillation, in contrast to the situation in wild type cells. No electrophoretically detectable alterations were found in any of the cytochrome c oxidase subunits present in the mutants. Nuclear mutations may thus cause both a loss as well as a defective assembly of mitochondrially made cytochrome c oxidase subunits.
通过一维和二维电泳、指数梯度凝胶电泳以及用针对该酶一个或多个细胞质合成亚基的抗血清进行免疫沉淀,对特异性缺乏细胞色素c氧化酶活性的酵母突变体进行细胞色素c氧化酶亚基筛选。本实验室先前描述的两个无细胞色素c氧化酶的核突变体,每个都缺乏一个或多个线粒体合成的细胞色素c氧化酶亚基,同时拥有该酶的所有四个细胞质合成亚基。这些突变体中剩余的亚基彼此未组装;与野生型细胞的情况相反,细胞质合成的亚基IV和VI可通过超声振荡从线粒体中释放出来。在突变体中存在的任何细胞色素c氧化酶亚基中均未发现电泳可检测到的改变。因此,核突变可能导致线粒体制造的细胞色素c氧化酶亚基的丢失以及组装缺陷。