Wnt signaling in Xenopus embryos inhibits Bmp4 expression and activates neural development
Open Access
- 1 December 1999
- journal article
- Published by Cold Spring Harbor Laboratory in Genes & Development
- Vol. 13 (23) , 3149-3159
- https://doi.org/10.1101/gad.13.23.3149
Abstract
We report a new role for Wnt signaling in the vertebrate embryo: the induction of neural tissue from ectoderm. Early expression of mousewnt8, Xwnt8, β-catenin, or dominant-negative GSK3 induces the expression of neural-specific markers and inhibits the expression of Bmp4 inXenopus ectoderm. We show that Wnt8, but not the BMP antagonist Noggin, can inhibit Bmp4 expression at early gastrula stages. Furthermore, inhibition of β-catenin activity in the neural ectoderm of whole embryos by a truncated TCF results in a decrease in neural development. Therefore, we suggest that a cleavage-stage Wnt signal normally contributes to an early repression of Bmp4 on the dorsal side of the embryo and sensitizes the ectoderm to respond to neural inducing signals from the organizer. The Wnt targetsXnr3 and siamois have been shown previously to have neuralizing activity when overexpressed. However, antagonists of Wnt signaling, dnXwnt8 and Nxfrz8, inhibit Wnt-mediated Xnr3 andsiamois induction, but not neural induction, suggesting an alternative mechanism for Bmp repression and neuralization. Conversely, dnTCF blocks both Wnt-mediated Xnr3 and neural induction, suggesting that both pathways require this transcription factor.Keywords
This publication has 85 references indexed in Scilit:
- Distinct WNT Pathways Regulating AER Formation and Dorsoventral Polarity in the Chick Limb BudScience, 1998
- A Member of the Frizzled Protein Family Mediating Axis Induction by Wnt-5AScience, 1997
- Analysis of Dishevelled signalling pathways during Xenopus developmentCurrent Biology, 1996
- A frizzled homolog functions in a vertebrate Wnt signaling pathwayPublished by Elsevier ,1996
- A new member of the frizzled family from Drosophila functions as a Wingless receptorNature, 1996
- Expression cloning of Siamois, a xenopus homeobox gene expressed in dorsal-vegetal cells of blastulae and able to induce a complete secondary axisCell, 1995
- Mesodermal patterning by an inducer gradient depends on secondary cell–cell communicationCurrent Biology, 1994
- Follistatin, an antagonist of activin, is expressed in the Spemann organizer and displays direct neuralizing activityCell, 1994
- Neural Induction by the Secreted Polypeptide NogginScience, 1993
- Spatial distribution of the capacity to initiate a secondary embryo in the 32-cell embryo ofXenopus laevisDevelopmental Biology, 1990