Prolonged Mek1/2 suppression impairs the developmental potential of embryonic stem cells
Jiho Choi,
Aaron J. Huebner,
Kendell Clement,
Ryan M. Walsh,
Andrej Savol,
Kaixuan Lin,
Hongcang Gu,
Bruno Di Stefano,
Justin Brumbaugh,
Sang-Yong Kim,
Jafar Sharif,
Christopher M. Rose,
Arman Mohammad,
Junko Odajima,
Jean Charron,
Toshi Shioda,
Andreas Gnirke,
Steven Gygi,
Haruhiko Koseki,
Ruslan I. Sadreyev,
Andrew Xiao,
Alexander Meissner and
Konrad Hochedlinger ()
Additional contact information
Jiho Choi: Massachusetts General Hospital Department of Molecular Biology
Aaron J. Huebner: Massachusetts General Hospital Department of Molecular Biology
Kendell Clement: Harvard University
Ryan M. Walsh: Massachusetts General Hospital Department of Molecular Biology
Andrej Savol: Massachusetts General Hospital Department of Molecular Biology
Kaixuan Lin: Yale University School of Medicine
Hongcang Gu: Broad Institute of MIT and Harvard
Bruno Di Stefano: Massachusetts General Hospital Department of Molecular Biology
Justin Brumbaugh: Massachusetts General Hospital Department of Molecular Biology
Sang-Yong Kim: New York University Langone Medical Center
Jafar Sharif: Center for Integrative Medical Sciences, RIKEN National Research and Development Agency, 1-7-22 Suehiuro-cho, Tsurumi-ku
Christopher M. Rose: Harvard Medical School
Arman Mohammad: Broad Institute of MIT and Harvard
Junko Odajima: Massachusetts General Hospital Cancer Center and Center for Regenerative Medicine
Jean Charron: Centre de recherche sur le cancer de l’Université Laval, CRCHU de Québec, L’Hôtel-Dieu de Québec, 9, rue McMahon
Toshi Shioda: Massachusetts General Hospital Cancer Center and Center for Regenerative Medicine
Andreas Gnirke: Broad Institute of MIT and Harvard
Steven Gygi: Harvard Medical School
Haruhiko Koseki: Center for Integrative Medical Sciences, RIKEN National Research and Development Agency, 1-7-22 Suehiuro-cho, Tsurumi-ku
Ruslan I. Sadreyev: Massachusetts General Hospital Department of Molecular Biology
Andrew Xiao: Yale University School of Medicine
Alexander Meissner: Harvard University
Konrad Hochedlinger: Massachusetts General Hospital Department of Molecular Biology
Nature, 2017, vol. 548, issue 7666, 219-223
Abstract:
Long-term culture of male embryonic stem cells in naive conditions containing Mek1/2 and Gsk3a/b inhibitors leads to irreversible changes in epigenetic and genomic stability that compromise their in vivo developmental potential.
Date: 2017
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Persistent link: https://EconPapers.repec.org/RePEc:nat:nature:v:548:y:2017:i:7666:d:10.1038_nature23274
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DOI: 10.1038/nature23274
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