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Dual Functions of Mss51 Couple Synthesis of Cox1 to Assembly of Cytochrome c Oxidase in Saccharomyces cerevisiae Mitochondria

机译:Mss51的双重功能将Cox1的合成与酿酒酵母线粒体中细胞色素c氧化酶的组装结合起来

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Functional interactions of the translational activator Mss51 with both the mitochondrially encoded COX1 mRNA 5′-untranslated region and with newly synthesized unassembled Cox1 protein suggest that it has a key role in coupling Cox1 synthesis with assembly of cytochrome c oxidase. Mss51 is present at levels that are near rate limiting for expression of a reporter gene inserted at COX1 in mitochondrial DNA, and a substantial fraction of Mss51 is associated with Cox1 protein in assembly intermediates. Thus, sequestration of Mss51 in assembly intermediates could limit Cox1 synthesis in wild type, and account for the reduced Cox1 synthesis caused by most yeast mutations that block assembly. Mss51 does not stably interact with newly synthesized Cox1 in a mutant lacking Cox14, suggesting that the failure of nuclear cox14 mutants to decrease Cox1 synthesis, despite their inability to assemble cytochrome c oxidase, is due to a failure to sequester Mss51. The physical interaction between Mss51 and Cox14 is dependent upon Cox1 synthesis, indicating dynamic assembly of early cytochrome c oxidase intermediates nucleated by Cox1. Regulation of COX1 mRNA translation by Mss51 seems to be an example of a homeostatic mechanism in which a positive effector of gene expression interacts with the product it regulates in a posttranslational assembly process.
机译:翻译激活剂Mss51与线粒体编码的COX1 mRNA 5'-非翻译区和新合成的未组装的Cox1蛋白之间的功能相互作用表明,它在偶联Cox1合成与细胞色素c氧化酶组装中起关键作用。 Mss51的存在水平接近限制线粒体DNA中插入COX1的报告基因表达的速率,并且Mss51的很大一部分与装配中间体中的Cox1蛋白相关。因此,将Mss51螯合在组装中间体中可能会限制野生型Cox1的合成,并解释由大多数阻碍组装的酵母突变引起的Cox1合成的减少。 Mss51在缺少Cox14的突变体中不能与新合成的Cox1稳定相互作用,这表明核cox14突变体尽管无法装配细胞色素C氧化酶,但未能降低Cox1合成的失败是由于无法螯合Mss51。 Mss51和Cox14之间的物理相互作用取决于Cox1的合成,这表明由Cox1成核的早期细胞色素c氧化酶中间体的动态组装。 Mss51对COX1 mRNA翻译的调控似乎是体内平衡机制的一个例子,在该机制中,基因表达的阳性效应子与其在翻译后组装过程中调控的产物相互作用。

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