Requirement for Foxd3 in the maintenance of neural crest progenitors
Author:
Teng Lu1, Mundell Nathan A.23, Frist Audrey Y.43, Wang Qiaohong1, Labosky Patricia A.1243
Affiliation:
1. Department of Cell and Developmental Biology, University of Pennsylvania School of Medicine, Philadelphia, PA 19104-6058, USA. 2. Department of Pharmacology, Vanderbilt University School of Medicine,Nashville, TN 37232-0494, USA. 3. Center for Stem Cell Biology, Vanderbilt University School of Medicine,Nashville, TN 37232-0494, USA. 4. Department of Cell and Developmental Biology, Vanderbilt University School of Medicine, Nashville, TN 37232-0494, USA.
Abstract
Understanding the molecular mechanisms of stem cell maintenance is crucial for the ultimate goal of manipulating stem cells for the treatment of disease. Foxd3 is required early in mouse embryogenesis; Foxd3-/-embryos fail around the time of implantation, cells of the inner cell mass cannot be maintained in vitro, and blastocyst-derived stem cell lines cannot be established. Here, we report that Foxd3 is required for maintenance of the multipotent mammalian neural crest. Using tissue-specific deletion of Foxd3 in the neural crest, we show that Foxd3flox/-; Wnt1-Cre mice die perinatally with a catastrophic loss of neural crest-derived structures. Cranial neural crest tissues are either missing or severely reduced in size, the peripheral nervous system consists of reduced dorsal root ganglia and cranial nerves, and the entire gastrointestinal tract is devoid of neural crest derivatives. These results demonstrate a global role for this transcriptional repressor in all aspects of neural crest maintenance along the anterior-posterior axis, and establish an unprecedented molecular link between multiple divergent progenitor lineages of the mammalian embryo.
Publisher
The Company of Biologists
Subject
Developmental Biology,Molecular Biology
Reference55 articles.
1. Acampora, D., Merlo, G. R., Paleari, L., Zerega, B.,Postiglione, M. P., Mantero, S., Bober, E., Barbieri, O., Simeone, A. and Levi, G. (1999). Craniofacial, vestibular and bone defects in mice lacking the Distal-less-related gene Dlx5. Development126,3795-3809. 2. Avilion, A. A., Nicolis, S. K., Pevny, L. H., Perez, L., Vivian,N. and Lovell-Badge, R. (2003). Multipotent cell lineages in early mouse development depend on SOX2 function. Genes Dev.17,126-140. 3. Baynash, A. G., Hosoda, K., Giaid, A., Richardson, J. A., Emoto,N., Hammer, R. E. and Yanagisawa, M. (1994). Interaction of endothelin-3 with endothelin-B receptor is essential for development of epidermal melanocytes and enteric neurons. Cell79,1277-1285. 4. Bellmeyer, A., Krase, J., Lindgren, J. and LaBonne, C.(2003). The protooncogene c-myc is an essential regulator of neural crest formation in Xenopus. Dev. Cell4, 827-839. 5. Cacalano, G., Farinas, I., Wang, L. C., Hagler, K., Forgie, A.,Moore, M., Armanini, M., Phillips, H., Ryan, A. M., Reichardt, L. F. et al. (1998). GFRalpha1 is an essential receptor component for GDNF in the developing nervous system and kidney. Neuron21,53-62.
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