| Literature DB >> 33636115 |
Baojiang Wu1, Yunxia Li2, Bojiang Li3, Baojing Zhang1, Yanqiu Wang1, Lin Li4, Junpeng Gao5, Yuting Fu1, Shudong Li6, Chen Chen1, M Azim Surani7, Fuchou Tang8, Xihe Li9, Siqin Bao10.
Abstract
Naive pluripotency can be maintained in medium with two inhibitors plus leukemia inhibitory factor (2i/LIF) supplementation, which primarily affects canonical WNT, FGF/ERK, and JAK/STAT3 signaling. However, whether one of these three supplements alone is sufficient to maintain naive self-renewal remains unclear. Here we show that LIF alone in medium is sufficient for adaptation of 2i/L-ESCs to embryonic stem cells (ESCs) in a hypermethylated state (L-ESCs). Global transcriptomic analysis shows that L-ESCs are close to 2i/L-ESCs and in a stable state between naive and primed pluripotency. Notably, our results demonstrate that DNA methyltransferases (DNMTs) play an important role in LIF-dependent mouse ESC adaptation and self-renewal. LIF-dependent ESC adaptation efficiency is significantly increased in serum treatment and reduced in Dnmt3a or Dnmt3l knockout ESCs. Importantly, unlike epiblast stem cells, L-ESCs contribute to somatic tissues and germ cells in chimeras. L-ESCs cultured under such simple conditions as in this study would provide a more conducive platform to clarify the molecular mechanism of ESCs in in vitro culture.Entities:
Keywords: DNA methylation; DNMTs; differentiation; embryonic stem cells; epigenetic; genomic imprinting; leukemia inhibitory factor; mouse; pluripotency; self-renew
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Year: 2021 PMID: 33636115 PMCID: PMC7940253 DOI: 10.1016/j.stemcr.2021.01.017
Source DB: PubMed Journal: Stem Cell Reports ISSN: 2213-6711 Impact factor: 7.765