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代谢和 DNA 修复在线粒体 DNA 中形成特定的修饰模式。

Metabolism and DNA repair shape a specific modification pattern in mitochondrial DNA.

机构信息

Department of Medical Biochemistry, University of Oslo, Oslo University Hospital, Rikshospitalet, 0372 Oslo, Norway.

Department of Microbiology, University of Oslo, Oslo University Hospital, Rikshospitalet, 0372 Oslo, Norway; Department of clinical and Molecular Medicine, Norwegian University of Science and Technology, Trondheim, Norway.

出版信息

Mitochondrion. 2018 May;40:16-28. doi: 10.1016/j.mito.2017.09.002. Epub 2017 Sep 8.

Abstract

The mitochondrial DNA (mtDNA) resides in the vicinity of energy-rich reactions. Thus, chemical modifications of mtDNA might mirror mitochondrial processes and could serve as biomarkers of metabolic processes in the mitochondria. This hypothesis was tested by assessing modifications at 17 different sites in the mtDNA as a function of cell type, oxidative stress and mitochondrial activity. Two mouse mutants with a metabolic phenotype were compared to wild-type (WT) mice: the ogg1 mouse that lacks the 8-oxoguanine DNA glycosylase (OGG1), and the alkbh7 mouse missing the ALKBH7 protein that has been implicated in fatty acid oxidation. It was found that cell type, oxidative stress and mitochondrial complex activity shaped distinct modification patterns in mtDNA, and that OGG1 and ALKBH7 independently modulated these modification patterns. The modifications included ribonucleotides, which also accumulated in mtDNA with age. Interestingly, this age-dependent accumulation most likely involves DNA repair, as mtDNA from ogg1 mice did not accumulate modifications with age. On the other hand, alkbh7 mtDNA accumulated more modifications with age than WT mtDNA. Our results show that mtDNA is dynamically modified with metabolic activity and imply a novel synergy between metabolism and mtDNA repair proteins.

摘要

线粒体 DNA(mtDNA)位于能量丰富的反应附近。因此,mtDNA 的化学修饰可能反映线粒体过程,并可作为线粒体代谢过程的生物标志物。通过评估 mtDNA 中 17 个不同位点的修饰作为细胞类型、氧化应激和线粒体活性的函数,检验了这一假设。将两种具有代谢表型的小鼠突变体与野生型(WT)小鼠进行了比较:缺乏 8-氧鸟嘌呤 DNA 糖基化酶(OGG1)的 ogg1 小鼠和缺失参与脂肪酸氧化的 ALKBH7 蛋白的 alkbh7 小鼠。结果发现,细胞类型、氧化应激和线粒体复合物活性在 mtDNA 中形成了不同的修饰模式,OGG1 和 ALKBH7 独立地调节这些修饰模式。修饰包括核苷酸,核苷酸也随着年龄的增长在 mtDNA 中积累。有趣的是,这种与年龄相关的积累很可能涉及 DNA 修复,因为 ogg1 小鼠的 mtDNA 不会随年龄积累修饰。另一方面,alkbh7 mtDNA 的修饰比 WT mtDNA 随年龄积累得更多。我们的结果表明,mtDNA 随着代谢活性而动态修饰,并暗示代谢和 mtDNA 修复蛋白之间存在新的协同作用。

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