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A genomewide screen for petite-negative yeast strains yields a new subunit of the i-AAA protease complex

机译:全基因组筛选小阴性酵母菌株产生i-AAA蛋白酶复合物的新亚基

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摘要

Unlike many other organisms, the yeast Saccharomyces cerevisiae can tolerate the loss of mitochondrial DNA (mtDNA). Although a few proteins have been identified that are required for yeast cell viability without mtDNA, the mechanism of mtDNA-independent growth is not completely understood. To probe the relationship between the mitochondrial genome and cell viability, we conducted a microarray-based, genomewide screen for mitochondrial DNA-dependent yeast mutants. Among the several genes that we discovered is MGR1, which encodes a novel subunit of the i-AAA protease complex located in the mitochondrial inner membrane. mgr1 Delta mutants retain some i-AAA protease activity, yet mitochondria lacking Mgr1p contain a misassembled i-AAA protease and are defective for turnover of mitochondrial inner membrane proteins. Our results highlight the importance of the i-AAA complex and proteolysis at the inner membrane in cells lacking mitochondrial DNA.
机译:与许多其他生物不同,酿酒酵母可以耐受线粒体DNA(mtDNA)的丢失。尽管已鉴定出没有mtDNA才能实现酵母细胞活力所需的几种蛋白质,但尚未完全了解mtDNA依赖性生长的机制。为了探究线粒体基因组与细胞活力之间的关系,我们对线粒体DNA依赖性酵母突变体进行了基于微阵列的全基因组筛选。我们发现的几个基因中的一个是MGR1,它编码位于线粒体内膜上的i-AAA蛋白酶复合物的一个新的亚基。 mgr1 Delta突变体保留了一些i-AAA蛋白酶的活性,但缺少Mgr1p的线粒体包含错误组装的i-AAA蛋白酶,并且对线粒体内膜蛋白的转运有缺陷。我们的结果强调了缺乏线粒体DNA的细胞中内膜i-AAA复合物和蛋白水解的重要性。

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