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首页> 外文期刊>The Journal of biological chemistry >The Carboxyl-terminal End of Cox1 Is Required for Feedback Assembly Regulation of Cox1 Synthesis in Saccharomyces cerevisiae Mitochondria
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The Carboxyl-terminal End of Cox1 Is Required for Feedback Assembly Regulation of Cox1 Synthesis in Saccharomyces cerevisiae Mitochondria

机译:Cox1的羧基末端是COX1合成中的反馈组件调节所必需的COX1酿酒酵母线粒体

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Synthesis of the largest cytochrome c oxidase (CcO) subunit, Cox1, on yeast mitochondrial ribosomes is coupled to assembly of CcO. The translational activator Mss51 is sequestered in early assembly intermediate complexes by an interaction with Cox14 that depends on the presence of newly synthesized Cox1. If CcO assembly is prevented, the level of Mss51 available for translational activation is reduced. We deleted the C-terminal 11 or 15 residues of Cox1 by site-directed mutagenesis of mtDNA. Although these deletions did not prevent respiratory growth of yeast, they eliminated the assembly-feedback control of Cox1 synthesis. Furthermore, these deletions reduced the strength of the Mss51-Cox14 interaction as detected by co-immunoprecipitation, confirming the importance of the Cox1 C-terminal residues for Mss51 sequestration. We surveyed a panel of mutations that block CcO assembly for the strength of their effect on Cox1 synthesis, both by pulse labeling and expression of the ARG8m reporter fused to COX1. Deletion of the nuclear gene encoding Cox6, one of the first subunits to be added to assembling CcO, caused the most severe reduction in Cox1 synthesis. Deletion of the C-terminal 15 amino acids of Cox1 increased Cox1 synthesis in the presence of each of these mutations, except pet54. Our data suggest a novel activity of Pet54 required for normal synthesis of Cox1 that is independent of the Cox1 C-terminal end.
机译:最大细胞色素C氧化酶(CCO)亚基,COX1,酵母线粒体核糖体的合成与CCO组装联合。通过与COX14的相互作用,在早期组装中间复合物中被隔离转化活化剂MSS51,其取决于新合成的COX1的存在。如果防止CCO组件,则降低了可用于翻译激活的MSS51的水平。我们通过MTDNA的点定向诱变删除了COX1的C末端11或15个残基。虽然这些缺失没有预防酵母的呼吸生长,但它们消除了COX1合成的组装反馈控制。此外,这些缺失降低了通过共免疫沉淀检测到的MSS51-COX14相互作用的强度,证实了COX1 C-末端残基的重要性MSS51螯合。通过脉冲标记和融合到COX1的ARG8M记者的表达,对CCO组装进行了调查了CCO组装的突变小组,该突变块为其对COX1合成的影响。缺失编码COX6的核基因,其中一个要添加到组装CCO的亚基之一,导致COX1合成中最严重的减少。缺失C末端15氨基酸在每个突变的存在下增加了COX1合成,除了PET54。我们的数据表明,与COX1 C-末端的正常合成正常合成所需的PET54的新型活性。

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