The Notch signaling pathway plays a variety of roles in cell fate decisions during development. Previous studies have shown that reduced Notch signaling results in premature differentiation of neural progenitor cells, while increased Notch activities promote apoptotic death of neural progenitor cells in the developing brain. Whether Notch signaling is involved in the specification of neuronal subtypes is unclear. Here we examine the role of Notch1 in the development of neuronal subtypes in the spinal cord using conditional knockout (cKO) mice lacking Notch1 specifically in neural progenitor cells. Notch1 inactivation results in accelerated neuronal differentiation in the ventral spinal cord and gradual disappearance of the ventral central c...
In the developing nervous system, differentiating neurons express Delta and activate Notch signaling...
Discrimination of neural stem cells from other progenitors in the developing mammalian brain has bee...
Throughout the developing spinal cord, Olig2+ progenitors in the motor neuron progenitor domain give...
The motor neuron progenitor domain in the ventral spinal cord gives rise to multiple subtypes of mot...
SummaryThe motor neuron progenitor domain in the ventral spinal cord gives rise to multiple subtypes...
Notch signalling regulates neuronal differentiation in the vertebrate nervous system. In addition to...
Notch receptors are key regulators of nervous system development and promoters of neural stem cells ...
We have selectively inhibited Notch1 signaling in oligodendrocyte precursors (OPCs) using the Cre/lo...
SummaryThe ventral spinal cord generates multiple inhibitory and excitatory interneuron subtypes fro...
Many cells in the mammalian brain undergo apoptosis as a normal and critical part of development but...
Activation of Notch1 signaling in neural progenitor cells (NPCs) induces self-renewal and inhibits n...
In the pMN domain of the spinal cord, Notch signaling regulates the balance between motor neuron dif...
Notch signaling plays a pivotal role in the regulation of vertebrate neurogenesis. However, in vitro...
Numerous lines of evidence suggest that Notch signaling plays a pivotal role in controlling the prod...
[[abstract]]The broad diversity of neurons is vital to neuronal functions. During vertebrate develop...
In the developing nervous system, differentiating neurons express Delta and activate Notch signaling...
Discrimination of neural stem cells from other progenitors in the developing mammalian brain has bee...
Throughout the developing spinal cord, Olig2+ progenitors in the motor neuron progenitor domain give...
The motor neuron progenitor domain in the ventral spinal cord gives rise to multiple subtypes of mot...
SummaryThe motor neuron progenitor domain in the ventral spinal cord gives rise to multiple subtypes...
Notch signalling regulates neuronal differentiation in the vertebrate nervous system. In addition to...
Notch receptors are key regulators of nervous system development and promoters of neural stem cells ...
We have selectively inhibited Notch1 signaling in oligodendrocyte precursors (OPCs) using the Cre/lo...
SummaryThe ventral spinal cord generates multiple inhibitory and excitatory interneuron subtypes fro...
Many cells in the mammalian brain undergo apoptosis as a normal and critical part of development but...
Activation of Notch1 signaling in neural progenitor cells (NPCs) induces self-renewal and inhibits n...
In the pMN domain of the spinal cord, Notch signaling regulates the balance between motor neuron dif...
Notch signaling plays a pivotal role in the regulation of vertebrate neurogenesis. However, in vitro...
Numerous lines of evidence suggest that Notch signaling plays a pivotal role in controlling the prod...
[[abstract]]The broad diversity of neurons is vital to neuronal functions. During vertebrate develop...
In the developing nervous system, differentiating neurons express Delta and activate Notch signaling...
Discrimination of neural stem cells from other progenitors in the developing mammalian brain has bee...
Throughout the developing spinal cord, Olig2+ progenitors in the motor neuron progenitor domain give...