| Literature DB >> 30220521 |
Jose Luis Sardina1, Samuel Collombet2, Tian V Tian3, Antonio Gómez3, Bruno Di Stefano4, Clara Berenguer3, Justin Brumbaugh4, Ralph Stadhouders3, Carolina Segura-Morales3, Marta Gut5, Ivo G Gut5, Simon Heath5, Sergi Aranda3, Luciano Di Croce6, Konrad Hochedlinger4, Denis Thieffry2, Thomas Graf7.
Abstract
Here, we report DNA methylation and hydroxymethylation dynamics at nucleotide resolution using C/EBPα-enhanced reprogramming of B cells into induced pluripotent cells (iPSCs). We observed successive waves of hydroxymethylation at enhancers, concomitant with a decrease in DNA methylation, suggesting active demethylation. Consistent with this finding, ablation of the DNA demethylase Tet2 almost completely abolishes reprogramming. C/EBPα, Klf4, and Tfcp2l1 each interact with Tet2 and recruit the enzyme to specific DNA sites. During reprogramming, some of these sites maintain high levels of 5hmC, and enhancers and promoters of key pluripotency factors become demethylated as early as 1 day after Yamanaka factor induction. Surprisingly, methylation changes precede chromatin opening in distinct chromatin regions, including Klf4 bound sites, revealing a pioneer factor activity associated with alternation in DNA methylation. Rapid changes in hydroxymethylation similar to those in B cells were also observed during compound-accelerated reprogramming of fibroblasts into iPSCs, highlighting the generality of our observations.Entities:
Keywords: DNA hydroxymethylation; DNA methylation; Tet enzymes; active demethylation; cell fate decisions; cell reprogramming; epigenetics; iPSCs
Mesh:
Substances:
Year: 2018 PMID: 30220521 DOI: 10.1016/j.stem.2018.08.016
Source DB: PubMed Journal: Cell Stem Cell ISSN: 1875-9777 Impact factor: 24.633