Publication | Open Access
Germline competency of human embryonic stem cells depends on eomesodermin
111
Citations
39
References
2017
Year
GeneticsEmbryologyTranscriptional RegulationPrimitive Streak GenesGerm Cell DevelopmentStem CellsGerm Cell FateGerm Cell BiologyGermline CompetencyPrimitive Streak FormationMorphogenesisOrganogenesisGene ExpressionEpigenetic RegulationCell BiologyDevelopmental BiologyGerm CellNatural SciencesPrimordial Germ Cell DevelopmentStem Cell ResearchHuman Embryonic DevelopmentMedicineCell DevelopmentEmbryonic Stem Cell
In humans, germline competency and the specification of primordial germ cells (PGCs) are thought to occur in a restricted developmental window during early embryogenesis. Despite the importance of specifying the appropriate number of PGCs for human reproduction, the molecular mechanisms governing PGC formation remain largely unexplored. Here, we compared PGC-like cell (PGCLC) differentiation from 18 independently derived human embryonic stem cell (hESC) lines, and discovered that the expression of primitive streak genes were positively associated with hESC germline competency. Furthermore, we show that chemical inhibition of TGFβ and WNT signaling, which are required for primitive streak formation and CRISPR/Cas9 deletion of Eomesodermin (EOMES), significantly impacts PGCLC differentiation from hESCs. Taken together, our results suggest that human PGC formation involves signaling and transcriptional programs associated with somatic germ layer induction and expression of EOMES.
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