One of the early surprises in the study of cell adhesion was the discovery that β-catenin plays dual roles, serving as an essential component of cadherin-based cell–cell adherens junctions and also serving as the key regulated effector of the Wnt signaling pathway. Here, we review our current model of Wnt signaling and discuss how recent work using model organisms has advanced our understanding of the roles Wnt signaling plays in both normal development and in disease. These data help flesh out the mechanisms of signaling from the membrane to the nucleus, revealing new protein players and providing novel information about known components of the pathway
Wnts are evolutionarily conserved signaling ligands critical for animal development. Genetic enginee...
C1 - Journal Articles RefereedWnt/β-catenin signalling regulates cell fate, survival, proliferation ...
Wnt/β-catenin signalling regulates cell fate, survival, proliferation and differentiation at many st...
The WNT signal transduction cascade controls myriad biological phenomena throughout development and ...
doi:10.1242/jcs.00089 Recent advances in the field require an update of our Wnt pathway scheme (Hüls...
Canonical Wnt signaling, below the Fz/LRP receptor complex, induces the stabilization of β-catenin v...
AbstractThe wnt signal transduction pathway is involved in many differentiation events during embryo...
AbstractMutual adhesion of animal cells is intimately linked to Wnt signaling through a shared compo...
The specification and proper arrangements of new cell types during tissue differentiation require th...
A remarkable interdisciplinary effort has unraveled the WNT (Wingless and INT-1) signal transduction...
<div><p>The cellular network composed of the evolutionarily conserved metabolic pathways of protein ...
Animals’ Wnt signaling pathways are highly preserved signal transduction pathways, which play a cruc...
Wnt/β-catenin signalling regulates cell fate, survival, proliferation and differentiation at many st...
Wnt proteins comprise one family of secreted signaling molecules that is conserved in a wide range o...
In recent years,Wnt/β-catenin signaling has been identified as a key player in embryogene-sis and hu...
Wnts are evolutionarily conserved signaling ligands critical for animal development. Genetic enginee...
C1 - Journal Articles RefereedWnt/β-catenin signalling regulates cell fate, survival, proliferation ...
Wnt/β-catenin signalling regulates cell fate, survival, proliferation and differentiation at many st...
The WNT signal transduction cascade controls myriad biological phenomena throughout development and ...
doi:10.1242/jcs.00089 Recent advances in the field require an update of our Wnt pathway scheme (Hüls...
Canonical Wnt signaling, below the Fz/LRP receptor complex, induces the stabilization of β-catenin v...
AbstractThe wnt signal transduction pathway is involved in many differentiation events during embryo...
AbstractMutual adhesion of animal cells is intimately linked to Wnt signaling through a shared compo...
The specification and proper arrangements of new cell types during tissue differentiation require th...
A remarkable interdisciplinary effort has unraveled the WNT (Wingless and INT-1) signal transduction...
<div><p>The cellular network composed of the evolutionarily conserved metabolic pathways of protein ...
Animals’ Wnt signaling pathways are highly preserved signal transduction pathways, which play a cruc...
Wnt/β-catenin signalling regulates cell fate, survival, proliferation and differentiation at many st...
Wnt proteins comprise one family of secreted signaling molecules that is conserved in a wide range o...
In recent years,Wnt/β-catenin signaling has been identified as a key player in embryogene-sis and hu...
Wnts are evolutionarily conserved signaling ligands critical for animal development. Genetic enginee...
C1 - Journal Articles RefereedWnt/β-catenin signalling regulates cell fate, survival, proliferation ...
Wnt/β-catenin signalling regulates cell fate, survival, proliferation and differentiation at many st...