Pax6-positive radial glial (RG) cells are the progenitors of most glutamatergic neurons in the cortex, a lineage that can be recapitulated in vitro using embryonic stem (ES) cells. We show here that ES cells lacking Pax6, a transcription factor long known to be essential for cortical development, generate Mash1-positive RG cells that differentiate in GABAergic neurons. These neurons express high levels of the neurotrophin receptor p75NTR causing their rapid death. Pax6 function was also investigated following transplantation of ES cells in the developing chick telencephalon and in mice lacking both Pax6 and p75NTR. Taken together, our results indicate that reliable predictions can be made with cultured ES cells when used to explore the role...
With the exception of astroglia-like cells in the neurogenic niches of the telencephalic subependyma...
Transcription factor Pax6 plays an important role in fate de-termination of neural progenitor cells ...
With the exception of astroglia-like cells in the neurogenic niches of the telencephalic subependyma...
Pax6-positive radial glial (RG) cells are the progenitors of most glutamatergic neurons in the corte...
SummaryPax6-positive radial glial (RG) cells are the progenitors of most glutamatergic neurons in th...
Radial glial cells, ubiquitous throughout the developing CNS, guide radially migrating neurons and a...
Radial glial cells, ubiquitous throughout the developing CNS, guide radially migrating neurons and a...
During brain embryogenesis, transcription factors drive stem cells towards neuronal fate. Here we sh...
The master transcription factor PAX6 is highly expressed by progenitors in the developing rostrola...
AbstractRadial glia cells perform a dual function in the developing nervous system as precursor cell...
Neural stem cell self-renewal, neurogenesis, and cell fate determination are processes that control ...
The paired-box protein PAX6 is a transcription factor that acts as a master regulator during neurode...
AbstractMany cerebral cortical neurons and glia are produced by apical progenitors dividing at the v...
The evolutionary expansion of the neocortex in mammals has been linked to enlargement of the subvent...
With the exception of astroglia-like cells in the neurogenic niches of the telencephalic subependyma...
With the exception of astroglia-like cells in the neurogenic niches of the telencephalic subependyma...
Transcription factor Pax6 plays an important role in fate de-termination of neural progenitor cells ...
With the exception of astroglia-like cells in the neurogenic niches of the telencephalic subependyma...
Pax6-positive radial glial (RG) cells are the progenitors of most glutamatergic neurons in the corte...
SummaryPax6-positive radial glial (RG) cells are the progenitors of most glutamatergic neurons in th...
Radial glial cells, ubiquitous throughout the developing CNS, guide radially migrating neurons and a...
Radial glial cells, ubiquitous throughout the developing CNS, guide radially migrating neurons and a...
During brain embryogenesis, transcription factors drive stem cells towards neuronal fate. Here we sh...
The master transcription factor PAX6 is highly expressed by progenitors in the developing rostrola...
AbstractRadial glia cells perform a dual function in the developing nervous system as precursor cell...
Neural stem cell self-renewal, neurogenesis, and cell fate determination are processes that control ...
The paired-box protein PAX6 is a transcription factor that acts as a master regulator during neurode...
AbstractMany cerebral cortical neurons and glia are produced by apical progenitors dividing at the v...
The evolutionary expansion of the neocortex in mammals has been linked to enlargement of the subvent...
With the exception of astroglia-like cells in the neurogenic niches of the telencephalic subependyma...
With the exception of astroglia-like cells in the neurogenic niches of the telencephalic subependyma...
Transcription factor Pax6 plays an important role in fate de-termination of neural progenitor cells ...
With the exception of astroglia-like cells in the neurogenic niches of the telencephalic subependyma...