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Systematic Identification of Culture Conditions for Induction and Maintenance of Naive Human Pluripotency

Cell stem cell · 2014 · Vol. 15(4) · pp. 471–487
Thorold W. TheunissenBenjamin E. PowellHaoyi WangMaya MitalipovaDina A. FaddahJessica ReddyZi Peng FanDorothea MaetzelKibibi GanzLinyu ShiTenzin LungjangwaSumeth ImsoonthornruksaYonatan StelzerSudharshan RangarajanAna C. D’AlessioJianming ZhangQing GaoMeelad M. DawlatyRichard A. YoungNathanael S. GrayRudolf Jaenisch

Abstract

Embryonic stem cells (ESCs) of mice and humans have distinct molecular and biological characteristics, raising the question of whether an earlier, "naive" state of pluripotency may exist in humans. Here we took a systematic approach to identify small molecules that support self-renewal of naive human ESCs based on maintenance of endogenous OCT4 distal enhancer activity, a molecular signature of ground state pluripotency. Iterative chemical screening identified a combination of five kinase inhibitors that induces and maintains OCT4 distal enhancer activity when applied directly to conventional human ESCs. These inhibitors generate human pluripotent cells in which transcription factors associated with the ground state of pluripotency are highly upregulated and bivalent chromatin domains are depleted. Comparison with previously reported naive human ESCs indicates that our conditions capture a distinct pluripotent state in humans that closely resembles that of mouse ESCs. This study presents a framework for defining the culture requirements of naive human pluripotent cells.

Pluripotent Stem Cells ResearchCRISPR and Genetic EngineeringRenal and related cancersBiologyEmbryonic stem cellInduced pluripotent stem cellEnhancerReprogrammingChromatinTranscription factorCell biologyComputational biologyGenetics

MeSH terms

Cell SurvivalChromatinEnhancer Elements, GeneticHumansMolecular Sequence DataGenes, ReporterCell Culture TechniquesTransgenesGene Expression ProfilingPluripotent Stem CellsGreen Fluorescent ProteinsOctamer Transcription Factor-3

Funding

  • National Science Foundation
  • Simons Foundation
  • Boehringer Ingelheim Fonds
  • National Institutes of Health
Citations
888
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References
Single-cell RNA-Seq profiling of human preimplantation embryos and embryonic stem cells
Nature Structural & Molecular Biology · 2013 · 1,806 citations
The ground state of pluripotency
Biochemical Society Transactions · 2010 · 357 citations
Naive and Primed Pluripotent States
Cell stem cell · 2009 · 1,888 citations
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