SummaryPrevious studies have raised the possibility that Wnt signaling may regulate both neural progenitor maintenance and neuronal differentiation within a single population. Here we investigate the role of Wnt/β-catenin activity in the zebrafish hypothalamus and find that the pathway is first required for the proliferation of unspecified hypothalamic progenitors in the embryo. At later stages, including adulthood, sequential activation and inhibition of Wnt activity is required for the differentiation of neural progenitors and negatively regulates radial glia differentiation. The presence of Wnt activity is conserved in hypothalamic progenitors of the adult mouse, where it plays a conserved role in inhibiting the differentiation of radial...
To understand how the complex architecture of the brain is formed duringdevelopment, it is essential...
peer reviewedThe role of WNT/β-catenin signalling in mouse neocortex development remains ambiguous. ...
Wnts are secreted, lipidated proteins that regulate multiple aspects of brain development, including...
SummaryPrevious studies have raised the possibility that Wnt signaling may regulate both neural prog...
In mammals, many diseases of the central nervous system (CNS) are associated with substantial neuron...
The canonical Wnt/β-catenin signalling pathway plays an important role in proliferation and differen...
Wnt/beta-catenin signaling contributes to patterning, proliferation, and differentiation throughout ...
Components of the Wnt signaling pathway are expressed in a tightly regulated and spatially specific ...
The fate of neural progenitor cells (NPC) is determined by a complex interplay of intrinsic programs...
The fate of neural progenitor cells (NPC) is determined by a complex interplay of intrinsic programs...
Activation of Wnt signaling enhances self-renewal of mouse embryonic and neural stem/progenitor cell...
AbstractWnt signaling is known to play crucial roles in the development of multiple organs as well a...
dissertationCanonical Wnt signaling plays important functions during development and in disease. In ...
During embryonic development, the central nervous system is built through the precise balance of neu...
The role of WNT/β-catenin signalling in mouse neocortex development remains ambiguous. Most studies ...
To understand how the complex architecture of the brain is formed duringdevelopment, it is essential...
peer reviewedThe role of WNT/β-catenin signalling in mouse neocortex development remains ambiguous. ...
Wnts are secreted, lipidated proteins that regulate multiple aspects of brain development, including...
SummaryPrevious studies have raised the possibility that Wnt signaling may regulate both neural prog...
In mammals, many diseases of the central nervous system (CNS) are associated with substantial neuron...
The canonical Wnt/β-catenin signalling pathway plays an important role in proliferation and differen...
Wnt/beta-catenin signaling contributes to patterning, proliferation, and differentiation throughout ...
Components of the Wnt signaling pathway are expressed in a tightly regulated and spatially specific ...
The fate of neural progenitor cells (NPC) is determined by a complex interplay of intrinsic programs...
The fate of neural progenitor cells (NPC) is determined by a complex interplay of intrinsic programs...
Activation of Wnt signaling enhances self-renewal of mouse embryonic and neural stem/progenitor cell...
AbstractWnt signaling is known to play crucial roles in the development of multiple organs as well a...
dissertationCanonical Wnt signaling plays important functions during development and in disease. In ...
During embryonic development, the central nervous system is built through the precise balance of neu...
The role of WNT/β-catenin signalling in mouse neocortex development remains ambiguous. Most studies ...
To understand how the complex architecture of the brain is formed duringdevelopment, it is essential...
peer reviewedThe role of WNT/β-catenin signalling in mouse neocortex development remains ambiguous. ...
Wnts are secreted, lipidated proteins that regulate multiple aspects of brain development, including...