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In vivo methylation of mtDNA reveals the dynamics of protein–mtDNA interactions

机译:mtDNA的体内甲基化揭示了蛋白质与mtDNA相互作用的动力学

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To characterize the organization of mtDNA–protein complexes (known as nucleoids) in vivo, we have probed the mtDNA surface exposure using site-specific DNA methyltransferases targeted to the mitochondria. We have observed that DNA methyltransferases have different accessibility to different sites on the mtDNA based on the levels of protein occupancy. We focused our studies on selected regions of mtDNA that are believed to be major regulatory regions involved in transcription and replication. The transcription termination region (TERM) within the tRNALeu(UUR) gene was consistently and strongly protected from methylation, suggesting frequent and high affinity binding of mitochondrial transcription termination factor 1 (mTERF1) to the site. Protection from methylation was also observed in other regions of the mtDNA, including the light and heavy strand promoters (LSP, HSP) and the origin of replication of the light strand (OL). Manipulations aiming at increasing or decreasing the levels of the mitochondrial transcription factor A (TFAM) led to decreased in vivo methylation, whereas manipulations that stimulated mtDNA replication led to increased methylation. We also analyzed the effect of ATAD3 and oxidative stress in mtDNA exposure. Our data provide a map of human mtDNA accessibility and demonstrate that nucleoids are dynamically associated with proteins.
机译:为了表征体内mtDNA-蛋白质复合物(称为核苷)的组织,我们使用针对线粒体的位点特异性DNA甲基转移酶探测了mtDNA表面暴露。我们已经观察到,基于蛋白质占用水平,DNA甲基转移酶对mtDNA的不同位点具有不同的可及性。我们的研究集中在mtDNA的选定区域上,这些区域被认为是参与转录和复制的主要调控区域。 tRNA Leu(UUR)基因中的转录终止区(TERM)受到一致且强烈的保护,不受甲基化,表明线粒体转录终止因子1(mTERF1)与该位点的频繁且高亲和力结合。在mtDNA的其他区域(包括轻链和重链启动子(LSP,HSP)和轻链的复制起点(OL))中也观察到了甲基化保护作用。旨在增加或降低线粒体转录因子A(TFAM)水平的操作导致体内甲基化降低,而刺激mtDNA复制的操作导致甲基化增加。我们还分析了ATAD3和氧化应激对mtDNA暴露的影响。我们的数据提供了人类mtDNA可达性的图谱,并证明了类核苷酸与蛋白质动态相关。

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