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Mgm101p Is a Novel Component of the Mitochondrial Nucleoid That Binds DNA and Is Required for the Repair of Oxidatively Damaged Mitochondrial DNA

机译:Mgm101p是绑定DNA的线粒体核蛋白的新型成分,是氧化损伤的线粒体DNA修复所必需的

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Maintenance of mitochondrial DNA (mtDNA) during cell division is required for progeny to be respiratory competent. Maintenance involves the replication, repair, assembly, segregation, and partitioning of the mitochondrial nucleoid. MGM101 has been identified as a gene essential for mtDNA maintenance in S . cerevisiae , but its role is unknown. Using liquid chromatography coupled with tandem mass spectrometry, we identified Mgm101p as a component of highly enriched nucleoids, suggesting that it plays a nucleoid-specific role in maintenance. Subcellular fractionation, indirect immunofluorescence and GFP tagging show that Mgm101p is exclusively associated with the mitochondrial nucleoid structure in cells. Furthermore, DNA affinity chromatography of nucleoid extracts indicates that Mgm101p binds to DNA, suggesting that its nucleoid localization is in part due to this activity. Phenotypic analysis of cells containing a temperature sensitive mgm101 allele suggests that Mgm101p is not involved in mtDNA packaging, segregation, partitioning or required for ongoing mtDNA replication. We examined Mgm101p's role in mtDNA repair. As compared with wild-type cells, mgm101 cells were more sensitive to mtDNA damage induced by UV irradiation and were hypersensitive to mtDNA damage induced by gamma rays and H2O2 treatment. Thus, we propose that Mgm101p performs an essential function in the repair of oxidatively damaged mtDNA that is required for the maintenance of the mitochondrial genome.
机译:为了使子代具有呼吸功能,需要在细胞分裂期间维持线粒体DNA(mtDNA)。维护涉及线粒体核苷酸的复制,修复,组装,分离和分配。 MGM101已被确定为S. mtDNA维持必不可少的基因。酿酒酵母,但作用未知。使用液相色谱与串联质谱联用,我们鉴定出Mgm101p是高度富集的类核苷酸的组成部分,表明Mgm101p在维持类核苷酸方面起特定作用。亚细胞分级分离,间接免疫荧光和GFP标签显示Mgm101p仅与细胞中的线粒体核苷酸结构相关。此外,核苷提取物的DNA亲和层析表明Mgm101p与DNA结合,表明其核苷定位部分是由于这种活性。对包含温度敏感的mgm101等位基因的细胞进行的表型分析表明,Mgm101p不参与mtDNA的包装,分离,分配或正在进行的mtDNA复制。我们检查了Mgm101p在mtDNA修复中的作用。与野生型细胞相比,mgm101细胞对紫外线辐照引起的mtDNA损伤更敏感,而对伽玛射线和H2O2处理诱导的mtDNA损伤更敏感。因此,我们建议Mgm101p在氧化损伤的mtDNA的修复中起着至关重要的作用,这是线粒体基因组维护所必需的。

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