TGFβ inhibition of yolk-sac-like differentiation of human embryonic stem-cell-derived embryoid bodies illustrates differences between early mouse and human development
Author:
Poon Ellen1, Clermont Frederic1, Firpo Meri T.2, Akhurst Rosemary J.1
Affiliation:
1. Cancer Research Institute, Comprehensive Cancer Center, University of California San Francisco, Box 0875, 2340 Sutter Street, Room S231, San Francisco, CA 94143, USA 2. Department of Obstetrics and Gynaecology, University of California San Francisco, San Francisco, CA 94143, USA
Abstract
Transforming growth factor β (TGFβ) plays an important role in development and maintenance of murine yolk sac vascular development. Targeted deletions of Tgfb1 and other components of this signaling pathway, such as Acvrl1, Tgfbr1 and Tgfbr2, result in abnormal vascular development especially of the yolk sac, leading to embryonic lethality. There are significant differences between murine and primate development that limit interpretation of studies from mouse models. Thus, to examine the role of TGFβ in early human vascular development we used the model of differentiating human embryonic stem cell-derived embryoid bodies to recapitulate early stages of embryonic development. TGFβ was applied for different time frames after initiation of embryoid body cultures to assess its effect on differentiation. TGFβ inhibited the expression of endodermal, endothelial and hematopoietic markers, which contrasts with findings in the mouse in which TGFβ reduced the level of endodermal markers but increased endothelial marker expression. The inhibition observed was not due to changes in proliferation or apoptosis. This marked contrast between the two species may reflect the different origins of the yolk sac hemangiogenic lineages in mouse and human. TGFβ effects on the hypoblast, from which these cell lineages are derived in human, would decrease subsequent differentiation of hematopoietic, endothelial and endodermal cells. By contrast, TGFβ action on murine hypoblast, while affecting endoderm would not affect the hemangiogenic lineages that are epiblast-derived in the mouse. This study highlights important differences between early human and mouse embryonic development and suggests a role of TGFβ in human hypoblast differentiation.
Publisher
The Company of Biologists
Reference74 articles.
1. Abeyta, M. J., Clark, A. T., Rodriguez, R. T., Bodnar, M. S., Pera, R. A. and Firpo, M. T. (2004). Unique gene expression signatures of independently-derived human embryonic stem cell lines. Hum. Mol. Genet.13, 601-608. 2. Akhurst, R. J. (2004). TGF beta signaling in health and disease. Nat. Genet.36, 790-792. 3. Akhurst, R. J., Fitzpatrick, D. R., Fowlis, D. J., Gatherer, D., Millan, F. A. and Slager, H. (1992). The role of TGF-beta s in mammalian development and neoplasia. Mol. Reprod. Dev.32, 127-135. 4. Amit, M., Shariki, C., Margulets, V. and Itskovitz-Eldor, J. (2004). Feeder layer- and serum-free culture of human embryonic stem cells. Biol. Reprod.70, 837-845. 5. Beattie, G. M., Lopez, A. D., Bucay, N., Hinton, A., Firpo, M. T., King, C. C. and Hayek A. (2005). Activin A maintains pluripotency of human embryonic stem cells in the absence of feeder layers. Stem Cells.23,489-495.
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