The activation of the TGF-beta pathway by activin A directs ES cells into the definitive endoderm germ layer. However, there is evidence that activin A/TGF-beta is not solely responsible for differentiation into definitive endoderm. GSK3beta inhibition has recently been shown to generate definitive endoderm-like cells from human ES cells via activation of the canonical Wnt-pathway. The GSK3beta inhibitor CHIR-99021 has been reported to generate mesoderm from human iPS cells. Thus, the specific role of the GSK3beta inhibitor CHIR-99021 was analyzed during the differentiation of human ES cells and compared against a classic endoderm differentiation protocol. At high concentrations of CHIR-99021, the cells were directed towards mesodermal cell fates, while low concentrations permitted mesodermal and endodermal differentiation. Finally, the analyses revealed that GSK3beta inhibition rapidly directed human ES cells into a primitive streak-like cell type independently from the TGF-beta pathway with mesoderm and endoderm differentiation potential. Addition of low activin A concentrations effectively differentiated these primitive streak-like cells into definitive endoderm. Thus, the in vitro differentiation of human ES cells into definitive endoderm is initially independent from the activin A/TGF-beta pathway but requires high canonical Wnt-signaling activity.
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Prince Wales Hosp, Diabetes Transplant Unit, Sydney, NSW, Australia
Univ New S Wales, Sydney, NSW, AustraliaPrince Wales Hosp, Diabetes Transplant Unit, Sydney, NSW, Australia
Wong, Jennifer C. Y.
Gao, Steven Y.
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Prince Wales Hosp, Diabetes Transplant Unit, Sydney, NSW, Australia
Univ New S Wales, Sydney, NSW, AustraliaPrince Wales Hosp, Diabetes Transplant Unit, Sydney, NSW, Australia
Gao, Steven Y.
Lees, Justin G.
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Prince Wales Hosp, Diabetes Transplant Unit, Sydney, NSW, Australia
Univ New S Wales, Sydney, NSW, AustraliaPrince Wales Hosp, Diabetes Transplant Unit, Sydney, NSW, Australia
Lees, Justin G.
Best, Marie B.
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Prince Wales Hosp, Diabetes Transplant Unit, Sydney, NSW, Australia
Univ New S Wales, Sydney, NSW, AustraliaPrince Wales Hosp, Diabetes Transplant Unit, Sydney, NSW, Australia
Best, Marie B.
Wang, Rennian
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Univ Western Ontario, Dept Physiol, London, ON, Canada
Univ Western Ontario, Dept Pharmacol & Med, London, ON, CanadaPrince Wales Hosp, Diabetes Transplant Unit, Sydney, NSW, Australia
Wang, Rennian
Tuch, Bernard E.
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Prince Wales Hosp, Diabetes Transplant Unit, Sydney, NSW, Australia
Univ New S Wales, Sydney, NSW, AustraliaPrince Wales Hosp, Diabetes Transplant Unit, Sydney, NSW, Australia