SummaryNeural stem cells (NSCs) persist in the subventricular zone (SVZ) of the adult brain. Location within this germinal region determines the type of neuronal progeny NSCs generate, but the mechanism of adult NSC positional specification remains unknown. We show that sonic hedgehog (Shh) signaling, resulting in high gli1 levels, occurs in the ventral SVZ and is associated with the genesis of specific neuronal progeny. Shh is selectively produced by a small group of ventral forebrain neurons. Ablation of Shh decreases production of ventrally derived neuron types, while ectopic activation of this pathway in dorsal NSCs respecifies their progeny to deep granule interneurons and calbindin-positive periglomerular cells. These results show tha...
The mammalian brain contains complex regional structures that emerge from heterogeneous populations ...
The ventricular–subventricular zone (V-SVZ) is a postnatal germinal niche. It holds a large populati...
SummaryNeural stem cells in different locations of the postnatal mouse ventricular-subventricular zo...
SummaryNeural stem cells (NSCs) persist in the subventricular zone (SVZ) of the adult brain. Locatio...
SummaryNeural stem cells in different locations of the postnatal mouse ventricular-subventricular zo...
AbstractTo directly test the requirement for hedgehog signaling in the telencephalon from early neur...
SummaryAdult neurogenesis represents a unique form of plasticity in the dentate gyrus requiring the ...
Sonic hedgehog (Shh) signaling controls many aspects of ontogeny, orchestrating congruent growth and...
SummaryNeural stem cells (NSCs) in the subventricular zone (SVZ) rely on environmental signals provi...
SummaryIn the adult brain, self-renewal is essential for the persistence of neural stem cells (NSCs)...
AbstractThe vertebrate hedgehog-related gene Sonic hedge-hog (Shh) is expressed in ventral domains a...
Adult neurogenesis represents a unique form of plasticity in the dentate gyrus requiring the presenc...
AbstractTo directly test the requirement for hedgehog signaling in the telencephalon from early neur...
The ventral midbrain contains a diverse array of neurons, including dopaminergic (DA), red nucleus (...
The mammalian brain contains complex regional structures that emerge from heterogeneous populations ...
The mammalian brain contains complex regional structures that emerge from heterogeneous populations ...
The ventricular–subventricular zone (V-SVZ) is a postnatal germinal niche. It holds a large populati...
SummaryNeural stem cells in different locations of the postnatal mouse ventricular-subventricular zo...
SummaryNeural stem cells (NSCs) persist in the subventricular zone (SVZ) of the adult brain. Locatio...
SummaryNeural stem cells in different locations of the postnatal mouse ventricular-subventricular zo...
AbstractTo directly test the requirement for hedgehog signaling in the telencephalon from early neur...
SummaryAdult neurogenesis represents a unique form of plasticity in the dentate gyrus requiring the ...
Sonic hedgehog (Shh) signaling controls many aspects of ontogeny, orchestrating congruent growth and...
SummaryNeural stem cells (NSCs) in the subventricular zone (SVZ) rely on environmental signals provi...
SummaryIn the adult brain, self-renewal is essential for the persistence of neural stem cells (NSCs)...
AbstractThe vertebrate hedgehog-related gene Sonic hedge-hog (Shh) is expressed in ventral domains a...
Adult neurogenesis represents a unique form of plasticity in the dentate gyrus requiring the presenc...
AbstractTo directly test the requirement for hedgehog signaling in the telencephalon from early neur...
The ventral midbrain contains a diverse array of neurons, including dopaminergic (DA), red nucleus (...
The mammalian brain contains complex regional structures that emerge from heterogeneous populations ...
The mammalian brain contains complex regional structures that emerge from heterogeneous populations ...
The ventricular–subventricular zone (V-SVZ) is a postnatal germinal niche. It holds a large populati...
SummaryNeural stem cells in different locations of the postnatal mouse ventricular-subventricular zo...