TY - JOUR
T1 - Non-canonical Wnt signaling through Wnt5a/b and a novel Wnt11 gene, Wnt11b, regulates cell migration during avian gastrulation
AU - Hardy, Katharine M.
AU - Garriock, Robert J.
AU - Yatskievych, Tatiana A.
AU - D'Agostino, Susan L.
AU - Antin, Parker B.
AU - Krieg, Paul A
N1 - Funding Information:
We thank W. Daniel Stamer (University of Arizona) for supplying the GFP antibody, Susan Chapman (Clemson University) for providing the Wnt5a and Wnt5b cDNAs, Scott Fraser (California Institute of Technology) for providing XdshΔPDZ, Gary Schoenwolf (University of Utah) for the pBE vector, Raymond Runyan (University of Arizona) for the Brachyury plasmid, Frank McCormick (University of California San Francisco) for ΔN-β-catenin and Stuart Wilson (University of Sheffield, U.K.) for pCAGGSRFP. This work was supported by NIH grants to PAK (HL74184) and PBA (HD044767). KMH is supported by an American Heart Association Predoctoral Fellowship.
PY - 2008/8/15
Y1 - 2008/8/15
N2 - Knowledge of the molecular mechanisms regulating cell ingression, epithelial-mesenchymal transition and migration movements during amniote gastrulation is steadily improving. In the frog and fish embryo, Wnt5 and Wnt11 ligands are expressed around the blastopore and play an important role in regulating cell movements associated with gastrulation. In the chicken embryo, although Wnt5a and Wnt5b are expressed in the primitive streak, the known Wnt11 gene is expressed in paraxial and intermediate mesoderm, and in differentiated myocardial cells, but not in the streak. Here, we identify a previously uncharacterized chicken Wnt11 gene, Wnt11b, that is orthologous to the frog Wnt11 and zebrafish Wnt11 (silberblick) genes. Chicken Wnt11b is expressed in the primitive streak in a pattern similar to chicken Wnt5a and Wnt5b. When non-canonical Wnt signaling is blocked using a Dishevelled dominant-negative protein, gastrulation movements are inhibited and cells accumulate in the primitive streak. Furthermore, disruption of non-canonical Wnt signaling by overexpression of full-length or dominant-negative Wnt11b or Wnt5a constructions abrogates normal cell migration through the primitive streak. We conclude that non-canonical Wnt signaling, mediated in part by Wnt11b, is important for regulation of gastrulation cell movements in the avian embryo.
AB - Knowledge of the molecular mechanisms regulating cell ingression, epithelial-mesenchymal transition and migration movements during amniote gastrulation is steadily improving. In the frog and fish embryo, Wnt5 and Wnt11 ligands are expressed around the blastopore and play an important role in regulating cell movements associated with gastrulation. In the chicken embryo, although Wnt5a and Wnt5b are expressed in the primitive streak, the known Wnt11 gene is expressed in paraxial and intermediate mesoderm, and in differentiated myocardial cells, but not in the streak. Here, we identify a previously uncharacterized chicken Wnt11 gene, Wnt11b, that is orthologous to the frog Wnt11 and zebrafish Wnt11 (silberblick) genes. Chicken Wnt11b is expressed in the primitive streak in a pattern similar to chicken Wnt5a and Wnt5b. When non-canonical Wnt signaling is blocked using a Dishevelled dominant-negative protein, gastrulation movements are inhibited and cells accumulate in the primitive streak. Furthermore, disruption of non-canonical Wnt signaling by overexpression of full-length or dominant-negative Wnt11b or Wnt5a constructions abrogates normal cell migration through the primitive streak. We conclude that non-canonical Wnt signaling, mediated in part by Wnt11b, is important for regulation of gastrulation cell movements in the avian embryo.
KW - Cell migration
KW - Chicken
KW - Epithelial-mesenchymal transition
KW - Gastrulation
KW - Non-canonical Wnt signaling
KW - Wnt11
KW - Wnt11b
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U2 - 10.1016/j.ydbio.2008.05.546
DO - 10.1016/j.ydbio.2008.05.546
M3 - Article
C2 - 18602094
AN - SCOPUS:48749089689
SN - 0012-1606
VL - 320
SP - 391
EP - 401
JO - Developmental biology
JF - Developmental biology
IS - 2
ER -