1. In vitro capture and characterization of embryonic rosette-stage pluripotency between naive and primed states.
- Author
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Neagu A, van Genderen E, Escudero I, Verwegen L, Kurek D, Lehmann J, Stel J, Dirks RAM, van Mierlo G, Maas A, Eleveld C, Ge Y, den Dekker AT, Brouwer RWW, van IJcken WFJ, Modic M, Drukker M, Jansen JH, Rivron NC, Baart EB, Marks H, and Ten Berge D
- Subjects
- Animals, Blastocyst metabolism, Blastocyst physiology, Cell Differentiation physiology, Chromatin metabolism, Embryonic Stem Cells metabolism, Female, Gene Expression Regulation, Developmental physiology, Germ Layers metabolism, Germ Layers physiology, Male, Mice, Mice, Inbred C57BL, Morphogenesis physiology, Otx Transcription Factors metabolism, Pluripotent Stem Cells metabolism, Embryonic Stem Cells physiology, Pluripotent Stem Cells physiology
- Abstract
Following implantation, the naive pluripotent epiblast of the mouse blastocyst generates a rosette, undergoes lumenogenesis and forms the primed pluripotent egg cylinder, which is able to generate the embryonic tissues. How pluripotency progression and morphogenesis are linked and whether intermediate pluripotent states exist remain controversial. We identify here a rosette pluripotent state defined by the co-expression of naive factors with the transcription factor OTX2. Downregulation of blastocyst WNT signals drives the transition into rosette pluripotency by inducing OTX2. The rosette then activates MEK signals that induce lumenogenesis and drive progression to primed pluripotency. Consequently, combined WNT and MEK inhibition supports rosette-like stem cells, a self-renewing naive-primed intermediate. Rosette-like stem cells erase constitutive heterochromatin marks and display a primed chromatin landscape, with bivalently marked primed pluripotency genes. Nonetheless, WNT induces reversion to naive pluripotency. The rosette is therefore a reversible pluripotent intermediate whereby control over both pluripotency progression and morphogenesis pivots from WNT to MEK signals.
- Published
- 2020
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