Prolonged Mek1/2 suppression impairs the developmental potential of embryonic stem cells
Prolonged Mek1/2 suppression impairs the developmental potential of embryonic stem cells
Concomitant activation of the Wnt pathway and suppression of Mapk signalling by two small molecule inhibitors (2i) in the presence of leukaemia inhibitory factor (LIF) (hereafter termed 2i/L) induces a naive state in mouse embryonic stem (ES) cells that resembles the inner cell mass (ICM) of the pre-implantation embryo. Since the ICM exists only transiently in vivo, it remains unclear how sustained propagation of naive ES cells in vitro affects their stability and functionality. Here we show that prolonged culture of male mouse ES cells in 2i/L results in irreversible epigenetic and genomic changes that impair their developmental potential. Furthermore, we find that female ES cells cultured in conventional serum plus LIF medium phenocopy male ES cells cultured in 2i/L. Mechanistically, we demonstrate that the inhibition of Mek1/2 is predominantly responsible for these effects, in part through the downregulation of DNA methyltransferases and their cofactors. Finally, we show that replacement of the Mek1/2 inhibitor with a Src inhibitor preserves the epigenetic and genomic integrity as well as the developmental potential of ES cells. Taken together, our data suggest that, although short-term suppression of Mek1/2 in ES cells helps to maintain an ICM-like epigenetic state, prolonged suppression results in irreversible changes that compromise their developmental potential.
- Yale University United States
- Université Laval Canada
- Broad Institute United States
- RIKEN Center for Integrative Medical Sciences (IMS), Yokohama City, Japan Japan
- Harvard Stem Cell Institute, Cambridge, MA, USA United States
Male, 570, MAP Kinase Kinase 2, MAP Kinase Kinase 1, 610, DNA Methylation, Genomic Imprinting, Mice, Blastocyst, Chromosomal Instability, Karyotyping, Animals, Female, Embryonic Stem Cells
Male, 570, MAP Kinase Kinase 2, MAP Kinase Kinase 1, 610, DNA Methylation, Genomic Imprinting, Mice, Blastocyst, Chromosomal Instability, Karyotyping, Animals, Female, Embryonic Stem Cells
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