4.7 Article

Direct Induction of the Three Pre-implantation Blastocyst Cell Types from Fibroblasts

Journal

CELL STEM CELL
Volume 24, Issue 6, Pages 983-+

Publisher

CELL PRESS
DOI: 10.1016/j.stem.2019.03.018

Keywords

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Funding

  1. European Research Council (ERC) [676843]
  2. Israeli Center of Research Excellence (I-CORE) program [41/11]
  3. Israel Science Foundation (ISF) [823/14]
  4. EMBO Young Investigator Programme (YIP)
  5. DKFZ-MOST [CA 177]
  6. Howard Hughes Medical Institute (HHMI) [55008727]
  7. BIRAX [030-5187]
  8. I-CORE program [41/11, 1796/12]
  9. ISF [913/15]
  10. European Research Council (ERC) [676843] Funding Source: European Research Council (ERC)

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Following fertilization, totipotent cells undergo asymmetric cell divisions, resulting in three distinct cell types in the late pre-implantation blastocyst: epiblast (Epi), primitive endoderm (PrE), and trophectoderm (TE). Here, we aim to understand whether these three cell types can be induced from fibroblasts by one combination of transcription factors. By utilizing a sophisticated fluorescent knockin reporter system, we identified a combination of five transcription factors, Gata3, Eomes, Tfap2c, Myc, and Esrrb, that can reprogram fibroblasts into induced pluripotent stem cells (iPSCs), induced trophoblast stem cells (iTSCs), and induced extraembryonic endoderm stem cells (iXENs) , concomitantly. In-depth transcriptomic, chromatin, and epigenetic analyses provide insights into the molecular mechanisms that underlie the reprogramming process toward the three cell types. Mechanistically, we show that the interplay between Esrrb and Eomes during the reprogramming process determines cell fate, where high levels of Esrrb induce a XEN-like state that drives pluripotency and high levels of Eomes drive trophectodermal fate.

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