SummaryRegulating the choice between neural stem cell maintenance versus differentiation determines growth and size of the developing brain. Here we identify TGF-β signaling as a crucial factor controlling these processes. At early developmental stages, TGF-β signal activity is localized close to the ventricular surface of the neuroepithelium. In the midbrain, but not in the forebrain, Tgfbr2 ablation results in ectopic expression of Wnt1/β-catenin and FGF8, activation of Wnt target genes, and increased proliferation and horizontal expansion of neuroepithelial cells due to shortened cell-cycle length and decreased cell-cycle exit. Consistent with this phenotype, self-renewal of mutant neuroepithelial stem cells is enhanced in the presence o...
Abstract. Transforming growth factor beta (TGF-β) signaling has diverse and complex roles in various...
Members of the transforming growth factor (TGF)-b family govern a wide range of mechanisms in brain ...
AbstractFor the correct development of the central nervous system, the balance between self-renewing...
Regulating the choice between neural stem cell maintenance versus differentiation determines growth ...
Regulating the choice between neural stem cell maintenance versus differentiation determines growth ...
SummaryRegulating the choice between neural stem cell maintenance versus differentiation determines ...
Regulating the choice between neural stem cell maintenance versus differentiation determines growth ...
Transforming growth factor beta (TGF-β) signaling has diverse and complex roles in various biologica...
SummaryHow the sequential specification of neurons and progressive loss of potency associated with a...
Components of the Wnt signaling pathway are expressed in a tightly regulated and spatially specific ...
AbstractWnt signaling is known to play crucial roles in the development of multiple organs as well a...
Embryonic stem (ES) cells are becoming a popular model of in vitro neurogenesis, as they display int...
Components of the Wnt signaling pathway are expressed in a tightly regulated and spatially specificm...
Components of the Wnt signaling pathway are expressed in a tightly regulated and spatially specificm...
The canonical Wnt/β-catenin signalling pathway plays an important role in proliferation and differen...
Abstract. Transforming growth factor beta (TGF-β) signaling has diverse and complex roles in various...
Members of the transforming growth factor (TGF)-b family govern a wide range of mechanisms in brain ...
AbstractFor the correct development of the central nervous system, the balance between self-renewing...
Regulating the choice between neural stem cell maintenance versus differentiation determines growth ...
Regulating the choice between neural stem cell maintenance versus differentiation determines growth ...
SummaryRegulating the choice between neural stem cell maintenance versus differentiation determines ...
Regulating the choice between neural stem cell maintenance versus differentiation determines growth ...
Transforming growth factor beta (TGF-β) signaling has diverse and complex roles in various biologica...
SummaryHow the sequential specification of neurons and progressive loss of potency associated with a...
Components of the Wnt signaling pathway are expressed in a tightly regulated and spatially specific ...
AbstractWnt signaling is known to play crucial roles in the development of multiple organs as well a...
Embryonic stem (ES) cells are becoming a popular model of in vitro neurogenesis, as they display int...
Components of the Wnt signaling pathway are expressed in a tightly regulated and spatially specificm...
Components of the Wnt signaling pathway are expressed in a tightly regulated and spatially specificm...
The canonical Wnt/β-catenin signalling pathway plays an important role in proliferation and differen...
Abstract. Transforming growth factor beta (TGF-β) signaling has diverse and complex roles in various...
Members of the transforming growth factor (TGF)-b family govern a wide range of mechanisms in brain ...
AbstractFor the correct development of the central nervous system, the balance between self-renewing...