Genome-Wide Young L1 Methylation Profiling by bs-ATLAS-seq
- Creators
- Philippe, Claude
- Cristofari, Gael
- Others:
- Institut de Recherche sur le Cancer et le Vieillissement (IRCAN) ; Université Nice Sophia Antipolis (1965 - 2019) (UNS)-Institut National de la Santé et de la Recherche Médicale (INSERM)-Centre National de la Recherche Scientifique (CNRS)-Université Côte d'Azur (UniCA)
- Cancéropôle PACA (Projet Emergence)
- Fondation pour la Recherche Médicale (FRM, DEQ20180339170)
- Inserm (GOLD cross-cutting program on genomic variability)
- CNRS (GDR 3546)
- Miguel R. Branco
- Alexandre de Mendoza Soler
- ANR-15-IDEX-0001,UCA JEDI,Idex UCA JEDI(2015)
- ANR-11-LABX-0028,SIGNALIFE,Réseau d'Innovation sur les Voies de Signalisation en Sciences de la Vie(2011)
- ANR-16-CE12-0020,RETROMET,Rendre unique l'ADN répété ou comment révéler la régulation épigénétique des rétrotransposons L1 dans les cellules somatiques humaines à une résolution inégalée.(2016)
- ANR-19-CE12-0032,ImpacTE,Réseau de régulation et élément LINE-1 : impact global des éléments transposables récents sur l'activité génique chez les Mammifères(2019)
- ANR-21-CE12-0001,ActiveLINE,Activités et diversité des rétrotransposons L1 naturels dans les génomes humains(2021)
Description
By silencing L1 retrotransposons, DNA methylation protects mammalian genomes from potent endogenous mutagens. However, some loci can escape this repressive mechanism and become active, particularly in carcinomas. Alterations of L1 DNA methylation can also locally influence gene expression. Comprehensive measurement of L1 DNA methylation at the locus level remains challenging. Here, we present bs-ATLAS-seq, a genome-wide approach to locate full-length L1 elements in the human genome, and assess their methylation levels at single-base and single-locus resolutions. This strategy targets the youngest, and only retrotransposition-competent family, L1HS, but also detects a significant fraction of older elements (L1PA2 to L1PA8). Bs-ATLAS-seq evaluates methylation at the first 15 CpGs of L1 5' UTR, which corresponds to the first half of the sense promoter. It relies on random fragmentation of the genomic DNA, adapter ligation, bisulfite treatment and suppression PCR, and ends by asymmetrical paired-end sequencing. A dedicated pipeline provides the location of L1 elements and their methylation status, including for non-reference loci, as well as their single-molecule DNA profiles.
Abstract
International audience
Additional details
- URL
- https://hal.science/hal-04492702
- URN
- urn:oai:HAL:hal-04492702v1
- Origin repository
- UNICA