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首页> 外文期刊>Molecular biology of the cell >Mitochondrial versus nuclear gene expression and membrane protein assembly: the case of subunit 2 of yeast cytochrome c oxidase
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Mitochondrial versus nuclear gene expression and membrane protein assembly: the case of subunit 2 of yeast cytochrome c oxidase

机译:线粒体与核基因表达和膜蛋白组装:酵母细胞色素C氧化酶亚基2的情况

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摘要

Deletion of the yeast mitochondrial gene COX2, encoding subunit 2 (mtCox2) of cytochrome c oxidase (CcO), results in a respiratory-incompetent Delta cox2 strain. For a cytosol-synthesized Cox2 to restore respiratory growth, it must carry the W56R mutation (cCox2(W56R)). Nevertheless, only a fraction of cCox2(W56R) is matured in mitochondria, allowing similar to 60% steady-state accumulation of CcO. This can be attributed either to the point mutation or to an inefficient biogenesis of cCox2(W56R). We generated a strain expressing the mutant protein mtCox2(W56R) inside mitochondria which should follow the canonical biogenesis of mitochondria-encoded Cox2. This strain exhibited growth rates, CcO steady-state levels, and CcO activity similar to those of the wild type; therefore, the efficiency of Cox2 biogenesis is the limiting step for successful allotopic expression. Upon coexpression of cCox2(W56R) and mtCox2, each protein assembled into CcO independently from its genetic origin, resulting in a mixed population of CcO with most complexes containing the mtCox2 version. Notably, the presence of the mtCox2 enhances cCox2(W56R) incorporation. We provide proof of principle that an allotopically expressed Cox2 may complement a phenotype due to a mutant mitochondrial COX2 gene. These results are relevant to developing a rational design of genes for allotopic expression intended to treat human mitochondrial diseases.
机译:缺失酵母线粒体基因COX2,编码细胞色素C氧化酶(CCO)的亚基2(MTCOX2),导致呼吸 - 不称之不通的δCOX2菌株。对于恢复呼吸生长的细胞溶溶胶合成的COX2,必须携带W56R突变(CCOX2(W56R))。然而,只有一部分CCOX2(W56R)在线粒体中成熟,允许类似于CCO的60%稳态积累。这可以归因于点突变或CCOX2(W56R)的低效生物发生。我们产生了在线粒体内表达突变蛋白MTCOX2(W56R)的菌株,其应遵循线粒体编码的COX2的规范生物发生。这种应变表现出与野生型类似的生长速率,CCO稳态水平和CCO活性;因此,COX2生物发生的效率是成功同种异体表达的限制步骤。在共表达CCOX2(W56R)和MTCOX2时,每个蛋白质独立于其遗传来源组装成CCO,导致CCO的混合群,大多数含有MTCOX2版本的复合物。值得注意的是,MTCOX2的存在增强了CCOX2(W56R)的掺入。我们提供原理的证据,即由突变线粒体COX2基因引起的同种异体表达的COX2可以补充表型。这些结果与开发旨在治疗人体线粒体疾病的同种异体表达的基因的合理设计。

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