Low biological fluctuation of mitochondrial CpG and non-CpG methylation at the single-molecule level

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作者
Chloe Goldsmith
Jesús Rafael Rodríguez-Aguilera
Ines El-Rifai
Adrien Jarretier-Yuste
Valérie Hervieu
Olivier Raineteau
Pierre Saintigny
Victoria Chagoya de Sánchez
Robert Dante
Gabriel Ichim
Hector Hernandez-Vargas
机构
[1] Université de Lyon,Department of Tumor Escape, Resistance and Immunity, TGF
[2] Centre Léon Bérard,Beta and Immuno
[3] Universidad Nacional Autónoma de México (UNAM),Regulation Team, Cancer Research Centre of Lyon (CRCL), INSERM U 1052, CNRS UMR 5286, UCBL1
[4] Hospices Civils de Lyon,Department of Cellular Biology and Development, Instituto de Fisiología Celular
[5] Groupement Hospitalier Est,Department of Surgical Pathology
[6] Univ Lyon,Department of Translational Medicine
[7] Université Claude Bernard Lyon 1,Dependence Receptors Cancer and Development Laboratory, Department of Signaling of Tumoral Escape. Cancer Research. Center of Lyon (CRCL), Inserm U 1052, CNRS UMR 5286
[8] INSERM,Cancer Cell Death Laboratory, Part of LabEx DEVweCAN
[9] Stem Cell and Brain Research Institute U1208,Cancer Research Centre of Lyon (CRCL), Inserm U 1052, CNRS UMR 5286
[10] Univ Lyon,undefined
[11] Université Claude Bernard Lyon 1,undefined
[12] INSERM 1052,undefined
[13] CNRS 5286,undefined
[14] Centre Léon Bérard,undefined
[15] Centre de Recherche en Cancérologie de Lyon,undefined
[16] Centre Léon Bérard,undefined
[17] Université de Lyon,undefined
[18] Centre Léon Bérard,undefined
[19] Université de Lyon,undefined
[20] Université de Lyon,undefined
[21] Centre Léon Bérard,undefined
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摘要
Mammalian cytosine DNA methylation (5mC) is associated with the integrity of the genome and the transcriptional status of nuclear DNA. Due to technical limitations, it has been less clear if mitochondrial DNA (mtDNA) is methylated and whether 5mC has a regulatory role in this context. Here, we used bisulfite-independent single-molecule sequencing of native human and mouse DNA to study mitochondrial 5mC across different biological conditions. We first validated the ability of long-read nanopore sequencing to detect 5mC in CpG (5mCpG) and non-CpG (5mCpH) context in nuclear DNA at expected genomic locations (i.e. promoters, gene bodies, enhancers, and cell type-specific transcription factor binding sites). Next, using high coverage nanopore sequencing we found low levels of mtDNA CpG and CpH methylation (with several exceptions) and little variation across biological processes: differentiation, oxidative stress, and cancer. 5mCpG and 5mCpH were overall higher in tissues compared to cell lines, with small additional variation between cell lines of different origin. Despite general low levels, global and single-base differences were found in cancer tissues compared to their adjacent counterparts, in particular for 5mCpG. In conclusion, nanopore sequencing is a useful tool for the detection of modified DNA bases on mitochondria that avoid the biases introduced by bisulfite and PCR amplification. Enhanced nanopore basecalling models will provide further resolution on the small size effects detected here, as well as rule out the presence of other DNA modifications such as oxidized forms of 5mC.
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