Activation of Notch1 signaling in neural progenitor cells (NPCs) induces self-renewal and inhibits neurogenesis. Upon neuronal differentiation, NPCs overcome this inhibition, express proneural genes to induce Notch ligands, and activate Notch1 in neighboring NPCs. The molecular mechanism that coordinates Notch1 inactivation with initiation of neurogenesis remains elusive. Here, we provide evidence that Prox1, a transcription repressor and downstream target of proneural genes, counteracts Notch1 signaling via direct suppression of Notch1 gene expression. By expression studies in the developing spinal cord of chick and mouse embryo, we showed that Prox1 is limited to neuronal precursors residing between the Notch1+ NPCs and post-mitotic neuro...
AbstractDuring neurogenesis, complex networks of genes act sequentially to control neuronal differen...
p>During development, neurons are generated from self-renewing progenitor cells in the ventricular z...
Neural stem cells generate all of the neurons and glial cells in the central nervous system, both d...
Activation of Notch1 signaling in neural progenitor cells (NPCs) induces self-renewal and inhibits n...
AbstractIn the developing nervous system, the balance between proliferation and differentiation is c...
SummaryThe generation of neurons from neural stem cells requires large-scale changes in gene express...
AbstractNotch signaling is involved in a variety of cell-fate decisions during development. Here we ...
15 pages, 9 figures.-- PMID: 18000541 [PubMed].-- PMCID: PMC2064965.Supporting information (Suppl. f...
A complete account of the whole developmental process of neurogenesis involves understanding a numbe...
The generation of neurons from neural stem cells requires large-scale changes in gene expression tha...
AbstractHES transcriptional repressors are important components of the Notch pathway that regulates ...
The mechanisms that guide progenitor cell fate and differentiation in the vertebrate central nervous...
SummaryExpression of the Notch effector gene Hes1 is required for maintenance of neural progenitors ...
Mammalian organogenesis results from the concerted actions of signaling pathways in progenitor cells...
In the developing nervous system, differentiating neurons express Delta and activate Notch signaling...
AbstractDuring neurogenesis, complex networks of genes act sequentially to control neuronal differen...
p>During development, neurons are generated from self-renewing progenitor cells in the ventricular z...
Neural stem cells generate all of the neurons and glial cells in the central nervous system, both d...
Activation of Notch1 signaling in neural progenitor cells (NPCs) induces self-renewal and inhibits n...
AbstractIn the developing nervous system, the balance between proliferation and differentiation is c...
SummaryThe generation of neurons from neural stem cells requires large-scale changes in gene express...
AbstractNotch signaling is involved in a variety of cell-fate decisions during development. Here we ...
15 pages, 9 figures.-- PMID: 18000541 [PubMed].-- PMCID: PMC2064965.Supporting information (Suppl. f...
A complete account of the whole developmental process of neurogenesis involves understanding a numbe...
The generation of neurons from neural stem cells requires large-scale changes in gene expression tha...
AbstractHES transcriptional repressors are important components of the Notch pathway that regulates ...
The mechanisms that guide progenitor cell fate and differentiation in the vertebrate central nervous...
SummaryExpression of the Notch effector gene Hes1 is required for maintenance of neural progenitors ...
Mammalian organogenesis results from the concerted actions of signaling pathways in progenitor cells...
In the developing nervous system, differentiating neurons express Delta and activate Notch signaling...
AbstractDuring neurogenesis, complex networks of genes act sequentially to control neuronal differen...
p>During development, neurons are generated from self-renewing progenitor cells in the ventricular z...
Neural stem cells generate all of the neurons and glial cells in the central nervous system, both d...