Whole-genome fingerprint of the DNA methylome during human B cell differentiation.
Marta KulisAngelika MerkelSimon Charles HeathAna C QueirósRonald P SchuylerGiancarlo CastellanoRenée BeekmanEmanuele RaineriAnna EsteveGuillem ClotNéria Verdaguer-DotMartí Duran-FerrerNuria RussiñolRoser Vilarrasa-BlasiSimone EckerVera PancaldiDaniel RicoLidia AguedaJulie BlancDavid RichardsonLaura ClarkeAvik DattaMarien PascualXabier AgirreFelipe ProsperDiego AlignaniBruno PaivaGersende CaronThierry FestMarcus O MuenchMarina E FominSeung-Tae LeeJoseph L WiemelsAlfonso ValenciaMarta GutPaul FlicekHendrik G StunnenbergReiner SiebertRalf KüppersIvo G GutElias CampoJosé I Martín-SuberoPublished in: Nature genetics (2015)
We analyzed the DNA methylome of ten subpopulations spanning the entire B cell differentiation program by whole-genome bisulfite sequencing and high-density microarrays. We observed that non-CpG methylation disappeared upon B cell commitment, whereas CpG methylation changed extensively during B cell maturation, showing an accumulative pattern and affecting around 30% of all measured CpG sites. Early differentiation stages mainly displayed enhancer demethylation, which was associated with upregulation of key B cell transcription factors and affected multiple genes involved in B cell biology. Late differentiation stages, in contrast, showed extensive demethylation of heterochromatin and methylation gain at Polycomb-repressed areas, and genes with apparent functional impact in B cells were not affected. This signature, which has previously been linked to aging and cancer, was particularly widespread in mature cells with an extended lifespan. Comparing B cell neoplasms with their normal counterparts, we determined that they frequently acquire methylation changes in regions already undergoing dynamic methylation during normal B cell differentiation.
Keyphrases
- dna methylation
- genome wide
- high density
- transcription factor
- gene expression
- induced apoptosis
- single molecule
- magnetic resonance
- cell free
- circulating tumor
- papillary thyroid
- young adults
- computed tomography
- cell cycle arrest
- squamous cell
- binding protein
- endoplasmic reticulum stress
- nucleic acid
- induced pluripotent stem cells