AbstractWithin the developing vertebrate nervous system, the mechanisms that coordinate neuronal subtype identity with generic features of neuronal differentiation are poorly defined. We show here that a bHLH protein, Olig2, is expressed selectively by motor neuron progenitors and has a key role in specifying the subtype identity and pan-neuronal properties of developing motor neurons. The role of Olig2 in the specification of motor neuron subtype identity depends on regulatory interactions with progenitor homeodomain proteins, whereas its role in promoting pan-neuronal properties is associated with expression of another bHLH protein, Ngn2. Both aspects of Olig2 function appear to depend on its activity as a transcriptional repressor. Toget...
Neurons of the dorsal horn integrate and relay sensory information and arise during development in t...
<p>(A) Proposed model of the Olig2-controlled gene regulatory network. Olig2 not only acts as centra...
During tissue development, multipotent progenitors differentiate into specific cell types in charact...
AbstractWithin the developing vertebrate nervous system, the mechanisms that coordinate neuronal sub...
AbstractDistinct classes of neurons are generated at defined times and positions during development ...
SummaryThe mechanisms by which proneural basic helix-loop-helix (bHLH) factors control neurogenesis ...
AbstractbHLH and LIM-HD transcription factors were originally thought to act at different stages of ...
AbstractOLIG1 and OLIG2 are basic-helix-loop-helix (bHLH) transcription factors expressed in the pMN...
AbstractWithin the motoneuron precursor (pMN) domain of the developing spinal cord, the bHLH transcr...
AbstractThe bHLH repressor Olig2 participates in the transcriptional code governing cell fate specif...
AbstractOlig2, a basic helix-loop-helix (bHLH) transcription factor, is expressed in a restricted do...
AbstractInductive signaling leads to the coactivation of regulatory pathways for specifying general ...
AbstractSpecification of neuronal fate in the vertebrate central nervous system depends on the profi...
AbstractBackground: Organizing signals such as Sonic hedgehog are thought to specify neuronal subtyp...
AbstractThe oligodendrocyte lineage genes Olig1 and Olig2 encode related bHLH proteins that are coex...
Neurons of the dorsal horn integrate and relay sensory information and arise during development in t...
<p>(A) Proposed model of the Olig2-controlled gene regulatory network. Olig2 not only acts as centra...
During tissue development, multipotent progenitors differentiate into specific cell types in charact...
AbstractWithin the developing vertebrate nervous system, the mechanisms that coordinate neuronal sub...
AbstractDistinct classes of neurons are generated at defined times and positions during development ...
SummaryThe mechanisms by which proneural basic helix-loop-helix (bHLH) factors control neurogenesis ...
AbstractbHLH and LIM-HD transcription factors were originally thought to act at different stages of ...
AbstractOLIG1 and OLIG2 are basic-helix-loop-helix (bHLH) transcription factors expressed in the pMN...
AbstractWithin the motoneuron precursor (pMN) domain of the developing spinal cord, the bHLH transcr...
AbstractThe bHLH repressor Olig2 participates in the transcriptional code governing cell fate specif...
AbstractOlig2, a basic helix-loop-helix (bHLH) transcription factor, is expressed in a restricted do...
AbstractInductive signaling leads to the coactivation of regulatory pathways for specifying general ...
AbstractSpecification of neuronal fate in the vertebrate central nervous system depends on the profi...
AbstractBackground: Organizing signals such as Sonic hedgehog are thought to specify neuronal subtyp...
AbstractThe oligodendrocyte lineage genes Olig1 and Olig2 encode related bHLH proteins that are coex...
Neurons of the dorsal horn integrate and relay sensory information and arise during development in t...
<p>(A) Proposed model of the Olig2-controlled gene regulatory network. Olig2 not only acts as centra...
During tissue development, multipotent progenitors differentiate into specific cell types in charact...