AbstractIn studies of developmental signaling pathways stimulated by the Wnt proteins and their receptors, Xenopus Wnt-5A (Xwnt-5A) and a prospective Wnt receptor, rat Frizzled 2 (Rfz2), have been shown to stimulate inositol signaling and Ca2+ fluxes in zebrafish [1–3]. As protein kinase C (PKC) isoforms can respond to Ca2+ signals [4], we asked whether expression of different Wnt and Frizzled homologs modulates PKC. Expression of Rfz2 and Xwnt-5A resulted in translocation of PKC to the plasma membrane, whereas expression of rat Frizzled 1 (Rfz1), which activates a Wnt pathway using β-catenin but not Ca2+ fluxes [5], did not. Rfz2 and Xwnt-5A were also able to stimulate PKC activity in an in vitro kinase assay. Agents that inhibit Rfz2-indu...
AbstractThe recent discovery that Frizzled proteins are receptors for Wnts has been quickly followed...
β-Catenin independent, non-canonical Wnt signaling pathways play a major role in the regulation of m...
Cell signalling through Frizzled receptors has evolved to considerable complexity within the metazoa...
AbstractIn studies of developmental signaling pathways stimulated by the Wnt proteins and their rece...
Wnts are secreted proteins important to many biological processes. frizzled genes encode a family of...
Frizzled proteins act as putative Wnt receptors and depending on Wnt/Frizzled interactions distinct ...
AbstractBackground Wnts are secreted proteins implicated in cell–cell interactions during embryogene...
Wnt genes encode secreted cysteine rich glycoproteins involved in cell-cell communication and play m...
AbstractExtracellular Wnt ligands and their receptors of the Frizzled family control cell fate, prol...
Seven-transmembrane receptors of the frizzled family can interact with secreted Wnt ligands and tran...
The differential activation of Wnt pathways (canonical: Wnt/-catenin; non-canonical: planar cell pol...
Here we report the cloning of a Xenopus frizzled transmembrane receptor, Xfz7, and describe its expr...
AbstractIn addition to the canonical Wnt/β-catenin signaling pathway, at least two noncanonical Wnt/...
<div><p>The Wnt/β-catenin pathway controls cell proliferation, death and differentiation. Several fa...
The Wnt/β-catenin pathway controls cell proliferation, death and differentiation. Several families o...
AbstractThe recent discovery that Frizzled proteins are receptors for Wnts has been quickly followed...
β-Catenin independent, non-canonical Wnt signaling pathways play a major role in the regulation of m...
Cell signalling through Frizzled receptors has evolved to considerable complexity within the metazoa...
AbstractIn studies of developmental signaling pathways stimulated by the Wnt proteins and their rece...
Wnts are secreted proteins important to many biological processes. frizzled genes encode a family of...
Frizzled proteins act as putative Wnt receptors and depending on Wnt/Frizzled interactions distinct ...
AbstractBackground Wnts are secreted proteins implicated in cell–cell interactions during embryogene...
Wnt genes encode secreted cysteine rich glycoproteins involved in cell-cell communication and play m...
AbstractExtracellular Wnt ligands and their receptors of the Frizzled family control cell fate, prol...
Seven-transmembrane receptors of the frizzled family can interact with secreted Wnt ligands and tran...
The differential activation of Wnt pathways (canonical: Wnt/-catenin; non-canonical: planar cell pol...
Here we report the cloning of a Xenopus frizzled transmembrane receptor, Xfz7, and describe its expr...
AbstractIn addition to the canonical Wnt/β-catenin signaling pathway, at least two noncanonical Wnt/...
<div><p>The Wnt/β-catenin pathway controls cell proliferation, death and differentiation. Several fa...
The Wnt/β-catenin pathway controls cell proliferation, death and differentiation. Several families o...
AbstractThe recent discovery that Frizzled proteins are receptors for Wnts has been quickly followed...
β-Catenin independent, non-canonical Wnt signaling pathways play a major role in the regulation of m...
Cell signalling through Frizzled receptors has evolved to considerable complexity within the metazoa...