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The Strictly Aerobic Yeast Yarrowia lipolytica Tolerates Loss of a Mitochondrial DNA-Packaging Protein

机译:严格需氧酵母解脂耶氏酵母可耐受线粒体DNA包装蛋白的损失

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Mitochondrial DNA (mtDNA) is highly compacted into DNA-protein structures termed mitochondrial nucleoids (mt-nucleoids). The key mt-nucleoid components responsible for mtDNA condensation are HMG box-containing proteins such as mammalian mitochondrial transcription factor A (TFAM) and Abf2p of the yeast Saccharomyces cerevisiae. To gain insight into the function and organization of mt-nucleoids in strictly aerobic organisms, we initiated studies of these DNA-protein structures in Yarrowia lipolytica. We identified a principal component of mt-nucleoids in this yeast and termed it YlMhb1p (Y. lipolytica mitochondrial HMG box-containing protein 1). YlMhb1p contains two putative HMG boxes contributing both to DNA binding and to its ability to compact mtDNA in vitro. Phenotypic analysis of a Δmhb1 strain lacking YlMhb1p resulted in three interesting findings. First, although the mutant exhibits clear differences in mt-nucleoids accompanied by a large decrease in the mtDNA copy number and the number of mtDNA-derived transcripts, its respiratory characteristics and growth under most of the conditions tested are indistinguishable from those of the wild-type strain. Second, our results indicate that a potential imbalance between subunits of the respiratory chain encoded separately by nuclear DNA and mtDNA is prevented at a (post)translational level. Third, we found that mtDNA in the Δmhb1 strain is more prone to mutations, indicating that mtHMG box-containing proteins protect the mitochondrial genome against mutagenic events.
机译:线粒体DNA(mtDNA)被高度压制成称为线粒体核苷酸(mt-nucleoids)的DNA-蛋白质结构。负责mtDNA缩合的关键mt核苷成分是含HMG盒的蛋白质,例如酵母酿酒酵母的哺乳动物线粒体转录因子A(TFAM)和Abf2p。为了深入了解严格需氧生物中mt核苷酸的功能和组织,我们开始了解脂耶氏酵母DNA蛋白质结构的研究。我们在此酵母中鉴定了mt核苷酸的主要成分,并将其称为 Yl Mhb1p( Y。lipolytica 线粒体HMG盒蛋白1)。 Yl Mhb1p包含两个推定的HMG盒,这些盒可促进DNA结合并增强其在体外压缩mtDNA的能力。缺乏 Yl Mhb1p的Δ mhb1 菌株的表型分析导致了三个有趣的发现。首先,尽管该突变体在mt-核苷酸上显示出明显的差异,同时mtDNA拷贝数和mtDNA衍生的转录物数量大大减少,但在大多数测试条件下其呼吸特性和生长与野生-无区别。类型应变。其次,我们的结果表明,在翻译后的水平上可以防止由核DNA和mtDNA分别编码的呼吸链亚基之间的潜在失衡。第三,我们发现Δ mhb1 菌株中的mtDNA更容易发生突变,这表明含有mtHMG盒的蛋白质可以保护线粒体基因组免受诱变事件的影响。

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