Wnt-1 belongs to the Wnt family of secreted glycoproteins inducing an intracellular signaling pathway involved in cell proliferation, differentiation, and pattern formation. The canonical branch is one of three known branches. This is also valid in vitro, and Wnts can be considered beneficial for culturing primary cells from organs, provided Wnts are available and applicable even with cells of different species. It was shown here that internally c-myc-tagged murine Wnt-1 produced in the heterologous host Escherichia coli was appropriate for inducing intracellular signaling of the canonical Wnt pathway in eukaryotic cells via stabilization of cytosolic β-catenin. The pioneering injection of the protein into the blastocoels of Xenopus laevis ...
Signaling molecules play essential roles in communication between cells. Wnt signaling molecules ar...
The Wnt pathway is central to a host of developmental and disease-related processes. The remarkable ...
Embryonic stem cells (ESCs) possess two unique properties: self-renewal and pluripotency. These uniq...
Wnt proteins comprise one family of secreted signaling molecules that is conserved in a wide range o...
[Abstract] Intracellular signalling mediated by secreted Wnt proteins is essential for the establish...
Functional and mechanistic studies of Wnt signaling have been severely hindered by the inaccessibili...
Functional and mechanistic studies of Wnt signaling have been severely hindered by the inaccessibili...
A remarkable interdisciplinary effort has unraveled the WNT (Wingless and INT-1) signal transduction...
Wnts are evolutionarily conserved signaling ligands critical for animal development. Genetic enginee...
A remarkable interdisciplinary effort has unraveled the WNT (Wingless and INT-1) signal transduction...
Wnt signaling is a crucial aspect of the intestinal stem cell niche required for crypt cell prolifer...
Human somatic cells are capable of being reprogrammed to induced pluripotent stem (iPS) cells throug...
Wnt/β-catenin signalling regulates cell fate, survival, proliferation and differentiation at many st...
The Wnt family of secreted signaling molecules is conserved throughout the animal kingdom. Wnt signa...
Wnt/β-catenin signalling regulates cell fate, survival, proliferation and differentiation at many st...
Signaling molecules play essential roles in communication between cells. Wnt signaling molecules ar...
The Wnt pathway is central to a host of developmental and disease-related processes. The remarkable ...
Embryonic stem cells (ESCs) possess two unique properties: self-renewal and pluripotency. These uniq...
Wnt proteins comprise one family of secreted signaling molecules that is conserved in a wide range o...
[Abstract] Intracellular signalling mediated by secreted Wnt proteins is essential for the establish...
Functional and mechanistic studies of Wnt signaling have been severely hindered by the inaccessibili...
Functional and mechanistic studies of Wnt signaling have been severely hindered by the inaccessibili...
A remarkable interdisciplinary effort has unraveled the WNT (Wingless and INT-1) signal transduction...
Wnts are evolutionarily conserved signaling ligands critical for animal development. Genetic enginee...
A remarkable interdisciplinary effort has unraveled the WNT (Wingless and INT-1) signal transduction...
Wnt signaling is a crucial aspect of the intestinal stem cell niche required for crypt cell prolifer...
Human somatic cells are capable of being reprogrammed to induced pluripotent stem (iPS) cells throug...
Wnt/β-catenin signalling regulates cell fate, survival, proliferation and differentiation at many st...
The Wnt family of secreted signaling molecules is conserved throughout the animal kingdom. Wnt signa...
Wnt/β-catenin signalling regulates cell fate, survival, proliferation and differentiation at many st...
Signaling molecules play essential roles in communication between cells. Wnt signaling molecules ar...
The Wnt pathway is central to a host of developmental and disease-related processes. The remarkable ...
Embryonic stem cells (ESCs) possess two unique properties: self-renewal and pluripotency. These uniq...