Effect of BMP-Wnt-Nodal signal on stem cell differentiation

Zygote. 2022 Feb;30(1):138-143. doi: 10.1017/S0967199421000447. Epub 2021 Jun 28.

Abstract

The generation of germ cells from embryonic stem cells in vitro has current historical significance. Western blot, qPCR, immunofluorescence and flow cytometry assays were used to investigate the differences in expression levels of totipotency and specific markers for Wnt regulation and the related signalling pathways during primordial germ cell-like cell (PGCLC) induction and differentiation. During PGCLC induction, activation of WNT3a increased the expression of NANOG, SOX2 and OCT4, but Mvh, DAZL, Blimp1, TFAP2C, Gata4, SOX17, EOMES, Brachyury and PRDM1 expression levels were significantly reduced. Inhibition of the WNT signal demonstrated the opposite effect. Similarly, inhibitors of BMP and the Nodal/Activin signal were used to determine the effect of signal pathways on differentiation. CER1 affected the Wnt signal and differentiation, but the inhibitor SB only regulated differentiation. BMP-WNT-NODAL were mainly responsible for regulating differentiation. Our results provide a reliable theoretical basis and feasibility for further clinical medical research.

Keywords: Bone morphogenetic protein; Differentiation; Embryonic stem cells; Nodal/Activin; Wnt signalling pathway.

MeSH terms

  • Cell Differentiation
  • Embryonic Stem Cells*
  • Germ Cells*
  • Signal Transduction