Poyton R O, Groot G S
Proc Natl Acad Sci U S A. 1975 Jan;72(1):172-6. doi: 10.1073/pnas.72.1.172.
Yeast mitochondria, incubated with radioactive amino acids in a "protein-synthesizing mixture" containing an oxidizable substrate and an ATP regenerating system, have been shown by sodium dodecyl sulfate-polyacrylamide gel electrophoresis to incorporate label into polypeptides equivalent in molecular weight and relative amount ot those made in vivo in the presence of cycloheximide. The ability of these isolated mitochondria to synthesize "native" polypeptides was assessed by examining the incorporation of label into subunits of cytochrome c oxidase (EC 1.9.3.1). An analysis of immunoprecipitates formed by incubating cholate extracts of labeled mitochondria with an antiserum against holocytochrome c oxidase revealed that label was incorporated into three polypeptides of sizes equivalent to those of cytochrome c oxidase subunits I, II, and III, shown from earlier studies in vivo to be translated on mitochondrial ribosomes. Further evidence that these polypeptides made in vitro are "native" and identical to subunits I, II, and III was provided by the observation that labeled polypeptides equivalent in size to subunits I-III- ARE ALSO IMMUNO-PRECIPITATED BY ANTISERUM AGAINST SUBUNITS V plus VII, an antiserum that can precipitate subunits I, II, and III only when they are complexed to the cytoplasmically synthesized subunits, V and VII, of the enzyme. These results suggest that isolated mitochondria are capable of synthesizing three subunits of cytochrome c oxidase and assembling them into a holoenzyme.
将酵母线粒体与放射性氨基酸在含有可氧化底物和ATP再生系统的“蛋白质合成混合物”中一起孵育,通过十二烷基硫酸钠-聚丙烯酰胺凝胶电泳已表明,线粒体可将放射性标记掺入分子量和相对含量与在环己酰亚胺存在下体内合成的多肽相当的多肽中。通过检测放射性标记掺入细胞色素c氧化酶(EC 1.9.3.1)亚基的情况,评估了这些分离的线粒体合成“天然”多肽的能力。用抗全细胞色素c氧化酶抗血清孵育标记线粒体的胆酸盐提取物形成的免疫沉淀物分析表明,放射性标记掺入了三种大小与细胞色素c氧化酶亚基I、II和III相当的多肽中,先前的体内研究表明这些亚基是在线粒体核糖体上翻译的。观察到大小与亚基I-III相当的标记多肽也被抗亚基V加VII的抗血清免疫沉淀,这进一步证明了体外合成的这些多肽是“天然”的且与亚基I、II和III相同,该抗血清只有在亚基I、II和III与该酶的细胞质合成亚基V和VII复合时才能沉淀它们。这些结果表明,分离的线粒体能够合成细胞色素c氧化酶的三个亚基并将它们组装成全酶。