Numerous lines of evidence suggest that Notch signaling plays a pivotal role in controlling the production of neurons from progenitor cells. However, most experiments have relied on gain-of-function approaches because perturbation of Notch signaling results in death prior to the onset of neurogenesis. Here, we examine the requirement for Notch signaling in the development of the striatum through the analysis of different single and compound Notch1 conditional and Notch3 null mutants. We find that normal development of the striatum depends on the presence of appropriate Notch signals in progenitors during a critical window of embryonic development. Early removal of Notch1 prior to neurogenesis alters early-born patch neurons but n...
The genesis of vertebrate peripheral ganglia poses the problem of how multipotent neural crest stem ...
The mechanisms that guide progenitor cell fate and differentiation in the vertebrate central nervous...
During mammalian central nervous system (CNS) development, an enormous variety of cell types are gen...
Many cells in the mammalian brain undergo apoptosis as a normal and critical part of development but...
A central challenge in embryonic stem (ES) cell biology is to understand how to impose direction on ...
Notch signaling plays a pivotal role in the regulation of vertebrate neurogenesis. However, in vitro...
In the developing nervous system, differentiating neurons express Delta and activate Notch signaling...
<div><p>Formation of the metazoan body plan requires a complex interplay of morphological changes an...
The Notch signaling pathway plays a variety of roles in cell fate decisions during development. Prev...
Elaboration of protocols for differentiation of human pluripotent stem cells to dopamine neurons is ...
Formation of the metazoan body plan requires a complex interplay of morphological changes and patter...
A dynamic balance between stem cell maintenance and differentiation paces generation of post‐mitotic...
Metazoan embryonic development requires a complex interplay of morphological processes coordinated ...
Abstract The Notch pathway is instrumental for cell fate diversification during development. Pioneer...
The Notch pathway is instrumental for cell fate diversification during development. Pioneer studies ...
The genesis of vertebrate peripheral ganglia poses the problem of how multipotent neural crest stem ...
The mechanisms that guide progenitor cell fate and differentiation in the vertebrate central nervous...
During mammalian central nervous system (CNS) development, an enormous variety of cell types are gen...
Many cells in the mammalian brain undergo apoptosis as a normal and critical part of development but...
A central challenge in embryonic stem (ES) cell biology is to understand how to impose direction on ...
Notch signaling plays a pivotal role in the regulation of vertebrate neurogenesis. However, in vitro...
In the developing nervous system, differentiating neurons express Delta and activate Notch signaling...
<div><p>Formation of the metazoan body plan requires a complex interplay of morphological changes an...
The Notch signaling pathway plays a variety of roles in cell fate decisions during development. Prev...
Elaboration of protocols for differentiation of human pluripotent stem cells to dopamine neurons is ...
Formation of the metazoan body plan requires a complex interplay of morphological changes and patter...
A dynamic balance between stem cell maintenance and differentiation paces generation of post‐mitotic...
Metazoan embryonic development requires a complex interplay of morphological processes coordinated ...
Abstract The Notch pathway is instrumental for cell fate diversification during development. Pioneer...
The Notch pathway is instrumental for cell fate diversification during development. Pioneer studies ...
The genesis of vertebrate peripheral ganglia poses the problem of how multipotent neural crest stem ...
The mechanisms that guide progenitor cell fate and differentiation in the vertebrate central nervous...
During mammalian central nervous system (CNS) development, an enormous variety of cell types are gen...