Wnts and wing: Wnt signaling in vertebrate limb development and musculoskeletal morphogenesis
- 16 December 2003
- journal article
- review article
- Published by Wiley in Birth Defects Research Part C: Embryo Today: Reviews
- Vol. 69 (4) , 305-317
- https://doi.org/10.1002/bdrc.10026
Abstract
In the past twenty years, secreted signaling molecules of the Wnt family have been found to play a central role in controlling embryonic development from hydra to human. In the developing vertebrate limb, Wnt signaling is required for limb bud initiation, early limb patterning (which is governed by several well‐characterized signaling centers), and, finally, late limb morphogenesis events. Wnt ligands are unique, in that they can activate several different receptor‐mediated signal transduction pathways. The most extensively studied Wnt pathway is the canonical Wnt pathway, which controls gene expression by stabilizing β‐catenin in regulating a diverse array of biological processes. Recently, more attention has been given to the noncanonical Wnt pathway, which is β‐catenin–independent. The noncanonical Wnt pathway signals through activating Ca2+ flux, JNK activation, and both small and heterotrimeric G proteins, to induce changes in gene expression, cell adhesion, migration, and polarity. Abnormal Wnt signaling leads to developmental defects and human diseases affecting either tissue development or homeostasis. Further understanding of the biological function and signaling mechanism of Wnt signaling is essential for the development of novel preventive and therapeutic approaches of human diseases. This review provides a critical perspective on how Wnt signaling regulates different developmental processes. As Wnt signaling in tumor formation has been reviewed extensively elsewhere, this part is not included in the review of the clinical significance of Wnt signaling. Birth Defects Research (Part C) 69:305–317, 2003. Published 2003 Wiley‐Liss, Inc.Keywords
This publication has 137 references indexed in Scilit:
- Developmental regulation of the growth plateNature, 2003
- Regulation of myogenic differentiation in the developing limb budJournal of Anatomy, 2003
- Coactivation of Rac and Rho by Wnt/Frizzled signaling is required for vertebrate gastrulationGenes & Development, 2003
- Activated β-catenin induces osteoblast differentiation of C3H10T1/2 cells and participates in BMP2 mediated signal transductionBiochemical and Biophysical Research Communications, 2003
- Dickkopf1 Is Required for Embryonic Head Induction and Limb Morphogenesis in the MousePublished by Elsevier ,2001
- Silberblick/Wnt11 mediates convergent extension movements during zebrafish gastrulationNature, 2000
- Induction of Additional Limb at the Dorsal–Ventral Boundary of a Chick EmbryoDevelopmental Biology, 1997
- A role for FGF-8 in the initiation and maintenance of vertebrate limb bud outgrowthCurrent Biology, 1995
- Limb alterations in brachypodism mice due to mutations in a new member of the TGFβ-superfamilyNature, 1994
- Involutional OsteoporosisNew England Journal of Medicine, 1986