Alk8 is required for neural crest cell formation and development of pharyngeal arch cartilages
Open Access
- 30 October 2003
- journal article
- research article
- Published by Wiley in Developmental Dynamics
- Vol. 228 (4) , 683-696
- https://doi.org/10.1002/dvdy.10417
Abstract
The type I TGFβ family member receptor alk8 acts in bone morphogenetic protein (BMP) signaling pathways to establish dorsoventral patterning in the early zebrafish embryo. Here, we present evidence that alk8 is required for neural crest cell (NCC) formation and that alk8 signaling gradients direct the proper patterning of premigratory NCCs. We extend our previous functional studies of alk8 to demonstrate that ectopic expression of constitutively active and dominant negative Alk8, consistently results in more medially or laterally positioned premigratory NCCs, respectively. We also demonstrate that patterning defects in premigratory NCCs, induced by alk8 misexpression, correlate with subsequent defects in NCC-derived pharyngeal arch cartilages. Furthermore, an anteroposterior effect is revealed, where overexpression of Alk8 more severely affects anterior arch cartilages and decreased Alk8 activity more severely affects posterior arch cartilage formation. Ectopic expression studies of alk8 are supported by analyses of zygotic and maternal-zygotic laf/alk8 mutants and of several BMP pathway mutants. Pharyngeal mesodermal and endodermal defects in laf/alk8 mutants suggest additional roles for alk8 in patterning of these tissues. Our results provide insight into alk8-mediated BMP signaling gradients and the establishment of premigratory NCC mediolateral positioning, and extend the model for BMP patterning of the neural crest to include that of NCC-derived pharyngeal arch cartilages. Developmental Dynamics 228:683–696, 2003.Keywords
This publication has 71 references indexed in Scilit:
- The novel type I serine–threonine kinase receptor Alk8 binds TGF-β in the presence of TGF-βRIIBiochemical and Biophysical Research Communications, 2002
- Regulation of Tooth Development by the Novel Type I TGFβ Family Member Receptor Alk8Journal of Dental Research, 2001
- Growth factor synergism and antagonism in early neural crest developmentBiochemistry and Cell Biology, 1998
- Induction of epidermis and inhibition of neural fate by Bmp-4Nature, 1995
- Mechanism of activation of the TGF-β receptorNature, 1994
- Steel factor is required for maintenance, but not differentiation, of melanocyte precursors in the neural crestDevelopmental Biology, 1992
- In vitro clonal analysis of progenitor cell patterns in dorsal root and sympathetic ganglia of the quail embryoDevelopmental Biology, 1991
- A distinct Hox code for the branchial region of the vertebrate headNature, 1991
- Novel Regulators of Bone Formation: Molecular Clones and ActivitiesScience, 1988
- Epithelial influences on skeletogenesis in the mandible of the embryonic chickThe Anatomical Record, 1977