AbstractWnt/Frizzled/ß-catenin-based signaling systems play diverse roles in metazoan development, being involved not only in the establishment of body axes in embryogenesis but also in regulating stem cell fate in mammalian post-embryonic development. We have studied the role the canonical Wnt cascade plays in stem cell fate determination in Hydractinia, a member of the ancient metazoan phylum Cnidaria, by analyzing two key molecules in this pathway, frizzled and ß-catenin, and blocking GSK-3. Generally, frizzled was expressed in cells able to divide but absent in post-mitotic, terminally differentiated cells such as nerve cells and nematocytes. Transcripts of frizzled were identified in all embryonic stages beginning with maternal transcr...
<p>The Wnt signaling pathway is highly conserved across metazoa and has pleiotropic functions in the...
AbstractBoth Wnt signaling and heat shock proteins play important roles in development and disease. ...
The genesis of gastrulation was arguably a key evolutionary innovation that enabled metazoan diversi...
AbstractWnt/Frizzled/ß-catenin-based signaling systems play diverse roles in metazoan development, b...
Canonical Wnt signalling controls many developmental processes in metazoans including primary axis f...
Signalling through the Wnt family of secreted proteins originated in a common metazoan ancestor and ...
Signalling through the Wnt family of secreted proteins originated in a common metazoan ancestor and ...
International audienceThe Wnt/β-catenin pathway plays key roles during animal development. In severa...
The aim of this work was to extend our understanding of the mechanisms regulating stem cell formatio...
ABSTRACT The evolutionarily conserved Wnt/b-catenin signaling pathway plays a fundamental role durin...
We studied the role of Wnt signaling in axis formation during metamorphosis and regeneration in the ...
AbstractMetazoan stem cells repopulate tissues during adult life by dividing asymmetrically to gener...
AbstractWe have studied the role the canonical Wnt pathway plays in hydroid pattern formation during...
Hydractinia, a representative marine colonial hydroid, was the first organism in the history of biol...
Frizzled7 activates β-catenin-dependent and β-catenin-independent Wnt signalling pathways, is highly...
<p>The Wnt signaling pathway is highly conserved across metazoa and has pleiotropic functions in the...
AbstractBoth Wnt signaling and heat shock proteins play important roles in development and disease. ...
The genesis of gastrulation was arguably a key evolutionary innovation that enabled metazoan diversi...
AbstractWnt/Frizzled/ß-catenin-based signaling systems play diverse roles in metazoan development, b...
Canonical Wnt signalling controls many developmental processes in metazoans including primary axis f...
Signalling through the Wnt family of secreted proteins originated in a common metazoan ancestor and ...
Signalling through the Wnt family of secreted proteins originated in a common metazoan ancestor and ...
International audienceThe Wnt/β-catenin pathway plays key roles during animal development. In severa...
The aim of this work was to extend our understanding of the mechanisms regulating stem cell formatio...
ABSTRACT The evolutionarily conserved Wnt/b-catenin signaling pathway plays a fundamental role durin...
We studied the role of Wnt signaling in axis formation during metamorphosis and regeneration in the ...
AbstractMetazoan stem cells repopulate tissues during adult life by dividing asymmetrically to gener...
AbstractWe have studied the role the canonical Wnt pathway plays in hydroid pattern formation during...
Hydractinia, a representative marine colonial hydroid, was the first organism in the history of biol...
Frizzled7 activates β-catenin-dependent and β-catenin-independent Wnt signalling pathways, is highly...
<p>The Wnt signaling pathway is highly conserved across metazoa and has pleiotropic functions in the...
AbstractBoth Wnt signaling and heat shock proteins play important roles in development and disease. ...
The genesis of gastrulation was arguably a key evolutionary innovation that enabled metazoan diversi...