Neural crest survival and differentiation in zebrafish depends onmont blanc/tfap2agene function
- 1 April 2004
- journal article
- Published by The Company of Biologists in Development
- Vol. 131 (7) , 1463-1477
- https://doi.org/10.1242/dev.01033
Abstract
Neural crest progenitor cells are the main contributors to craniofacial cartilage and connective tissue of the vertebrate head. These progenitor cells also give rise to the pigment, neuronal and glial cell lineages. To study the molecular basis of neural crest differentiation, we have cloned the gene disrupted in the mont blanc (mob(m610)) mutation, which affects all neural crest derivatives. Using a positional candidate cloning approach we identified an A to G transition within the 3' splice site of the sixth intron of the tfap2a gene that abolishes the last exon encoding the crucial protein dimerization and DNA-binding domains. Neural crest induction and specification are not hindered in mob(m610) mutant embryos, as revealed by normal expression of early neural crest specific genes such as snail2, foxd3 and sox10. In addition, the initial stages of cranial neural crest migration appear undisturbed, while at a later phase the craniofacial primordia in pharyngeal arches two to seven fail to express their typical set of genes (sox9a, wnt5a, dlx2, hoxa2/b2). In mob(m610) mutant embryos, the cell number of neuronal and glial derivatives of neural crest is greatly reduced, suggesting that tfap2a is required for their normal development. By tracing the fate of neural crest progenitors in live mont blanc (mob(m610)) embryos, we found that at 24 hpf neural crest cells migrate normally in the first pharyngeal arch while the preotic and postotic neural crest cells begin migration but fail to descend to the pharyngeal region of the head. TUNEL assay and Acridine Orange staining revealed that in the absence of tfap2a a subset of neural crest cells are unable to undergo terminal differentiation and die by apoptosis. Furthermore, surviving neural crest cells in tfap2a/mob(m610) mutant embryos proliferate normally and later differentiate to individual derivatives. Our results indicate that tfap2a is essential to turn on the normal developmental program in arches 2-7 and in trunk neural crest. Thus, tfap2a does not appear to be involved in early specification and cell proliferation of neural crest, but it is a key regulator of an early differentiation phase and is required for cell survival in neural crest derived cell lineages.Keywords
This publication has 50 references indexed in Scilit:
- Noradrenergic neurons in the zebrafish hindbrain are induced by retinoic acid and requiretfap2afor expression of the neurotransmitter phenotypeDevelopment, 2003
- Cloning and Characterization of a Novel Mouse AP-2 Transcription Factor, Ap-2δ, with Unique DNA Binding and Transactivation PropertiesJournal of Biological Chemistry, 2001
- Gene Mapping in Zebrafish Using Single-Strand Conformation Polymorphism AnalysisGenomics, 1998
- Neural tube, skeletal and body wall defects in mice lacking transcription factor AP-2Nature, 1996
- Transcription factor AP-2 essential for cranial closure and craniofacial developmentNature, 1996
- Stages of embryonic development of the zebrafishDevelopmental Dynamics, 1995
- Identification of markers linked to disease-resistance genes by bulked segregant analysis: a rapid method to detect markers in specific genomic regions by using segregating populations.Proceedings of the National Academy of Sciences, 1991
- Characterization of a Dimerization Motif in AP-2 and Its Function in Heterologous DNA-Binding ProteinsScience, 1991
- Neural Crest and the Origin of Vertebrates: A New HeadScience, 1983
- The role of the neural crest in patterning of avian cranial skeletal, connective, and muscle tissuesDevelopmental Biology, 1983