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Mam33 promotes cytochrome c oxidase subunit I translation in Saccharomyces cerevisiae mitochondria

机译:Mam33促进酿酒酵母线粒体中的细胞色素c氧化酶亚基I翻译

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摘要

Three mitochondrial DNA–encoded proteins, Cox1, Cox2, and Cox3, comprise the core of the cytochrome c oxidase complex. Gene-specific translational activators ensure that these respiratory chain subunits are synthesized at the correct location and in stoichiometric ratios to prevent unassembled protein products from generating free oxygen radicals. In the yeast Saccharomyces cerevisiae, the nuclear-encoded proteins Mss51 and Pet309 specifically activate mitochondrial translation of the largest subunit, Cox1. Here we report that Mam33 is a third COX1 translational activator in yeast mitochondria. Mam33 is required for cells to adapt efficiently from fermentation to respiration. In the absence of Mam33, Cox1 translation is impaired, and cells poorly adapt to respiratory conditions because they lack basal fermentative levels of Cox1.
机译:三种线粒体DNA编码蛋白Cox1,Cox2和Cox3构成了细胞色素C氧化酶复合物的核心。基因特异性翻译激活剂可确保这些呼吸链亚基在正确的位置以化学计量比合成,以防止未组装的蛋白质产物产生自由基。在酿酒酵母中,核编码的蛋白Mss51和Pet309特异性激活最大亚基Cox1的线粒体翻译。在这里,我们报告Mam33是酵母线粒体中的第三个COX1翻译激活剂。 Mam33是细胞从发酵到呼吸有效适应所必需的。在缺少Mam33的情况下,Cox1的翻译会受到损害,并且由于它们缺乏基础发酵水平的Cox1,因此细胞难以适应呼吸条件。

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