Related Experiment Video
Updated: Jan 23, 2026

Transient Treatment of Human Pluripotent Stem Cells with DMSO to Promote Differentiation
Published on: July 17, 2019
GADD45 promotes locus-specific DNA demethylation and 2C cycling in embryonic stem cells
Katrin M Schüle1, Manuel Leichsenring1, Tommaso Andreani1
1Institute of Molecular Biology (IMB), 55128 Mainz, Germany.
Abstract:
Mouse embryonic stem cell (ESC) cultures contain a rare cell population of "2C-like" cells resembling two-cell embryos, the key stage of zygotic genome activation (ZGA). Little is known about positive regulators of the 2C-like state and two-cell stage embryos. Here we show that GADD45 (growth arrest and DNA damage 45) proteins, regulators of TET (TET methylcytosine dioxygenase)-mediated DNA demethylation, promote both states. Methylome analysis of Gadd45a,b,g triple-knockout (TKO) ESCs reveal locus-specific DNA hypermethylation of ∼7000 sites, which are enriched for enhancers and loci undergoing TET-TDG (thymine DNA glycosylase)-mediated demethylation. Gene expression is misregulated in TKOs, notably upon differentiation, and displays signatures of DNMT (DNA methyltransferase) and TET targets. TKOs manifest impaired transition into the 2C-like state and exhibit DNA hypermethylation and down-regulation of 2C-like state-specific genes. Gadd45a,b double-mutant mouse embryos display embryonic sublethality, deregulated ZGA gene expression, and developmental arrest. Our study reveals an unexpected role of GADD45 proteins in embryonic two-cell stage regulation.
Related Concept Videos
Embryonic Stem Cells
Embryonic Stem Cells
ES cells are grown in a culture medium where they can divide indefinitely, creating ES cell lines. Under certain conditions, ES cells can differentiate, either spontaneously into a variety of...
DNA Damage Can Stall the Cell Cycle
DNA Damage can Stall the Cell Cycle
The Eukaryotic Promoter Region
Induced Pluripotent Stem Cells

