Freedman J A, Chan S H
Mol Cell Biochem. 1978 May 31;19(3):135-46. doi: 10.1007/BF00225451.
This paper reviews mechanisms by which the rate of synthesis of subunits of mitochondrial inner membrane protein complexes and the assembly of these subunits are co-ordinated. Current models are evaluated and critically discussed in the light of some recent evidences. The focus is on the incorporation of cytoplasmically-synthesized cytochrome c oxidase subunits in the development of a newer model, which introduces some twists into a combination of several current ideas. A mechanism which governs both organized assembly and the co-ordination of rates of polypeptide synthesis is illustrated and the principles of the model are applied to the elucidation of some odd features of certain mutants. The possibilities that mitochondrial ATPase and cytochrome c reductase may also be synthesized and assembled according to this model are discussed.
本文综述了线粒体内膜蛋白复合物亚基的合成速率与这些亚基的组装相互协调的机制。根据一些最新证据,对当前模型进行了评估和批判性讨论。重点是在一个更新模型的发展过程中,细胞质合成的细胞色素c氧化酶亚基的掺入情况,该模型在几种当前观点的结合中引入了一些新变化。阐述了一种控制有序组装和多肽合成速率协调的机制,并将该模型的原理应用于解释某些突变体的一些奇特特征。还讨论了线粒体ATP酶和细胞色素c还原酶也可能按照该模型进行合成和组装的可能性。