SummaryIn the vertebrate neural tube, a morphogen-induced transcriptional network produces multiple molecularly distinct progenitor domains, each generating different neuronal subtypes. Using an in vitro differentiation system, we defined gene expression signatures of distinct progenitor populations and identified direct gene-regulatory inputs corresponding to locations of specific transcription factor binding. Combined with targeted perturbations of the network, this revealed a mechanism in which a progenitor identity is installed by active repression of the entire transcriptional programs of other neural progenitor fates. In the ventral neural tube, sonic hedgehog (Shh) signaling, together with broadly expressed transcriptional activators...
In vertebrates, cranial placodes contribute to all sense organs and sensory ganglia and arsise from ...
AbstractSpecification of neuronal fate in the vertebrate central nervous system depends on the profi...
AbstractThe specification of neuronal fates in the ventral spinal cord depends on the regulation of ...
In the vertebrate neural tube, a morphogen-induced transcriptional network produces multiple molecul...
Sonic hedgehog (Shh) signaling patterns the vertebrate spinal cord by activating a group of transcri...
The differentiation of neural progenitors into distinct classes within the central nervous system oc...
Transcriptional networks, regulated by extracellular signals, control cell fate decisions and determ...
SummaryThe generation of specific types of neurons from stem cells offers important opportunities in...
SummarySecreted signals, known as morphogens, provide the positional information that organizes gene...
Development of the central nervous system relies on the generation of specialized cell types in a ti...
Cell identity and function is determined by the intrinsic wiring of the gene regulatory network that...
Secreted signals, known as morphogens, provide the positional information that organizes gene expres...
We have investigated the genetic circuitry underlying the determination of neuronal identity, using ...
Sonic hedgehog (Shh) signaling patterns the vertebrate spinal cord by activating a group of transcri...
AbstractThe partitioning of the ventral neural tube into five distinct neuronal progenitor domains i...
In vertebrates, cranial placodes contribute to all sense organs and sensory ganglia and arsise from ...
AbstractSpecification of neuronal fate in the vertebrate central nervous system depends on the profi...
AbstractThe specification of neuronal fates in the ventral spinal cord depends on the regulation of ...
In the vertebrate neural tube, a morphogen-induced transcriptional network produces multiple molecul...
Sonic hedgehog (Shh) signaling patterns the vertebrate spinal cord by activating a group of transcri...
The differentiation of neural progenitors into distinct classes within the central nervous system oc...
Transcriptional networks, regulated by extracellular signals, control cell fate decisions and determ...
SummaryThe generation of specific types of neurons from stem cells offers important opportunities in...
SummarySecreted signals, known as morphogens, provide the positional information that organizes gene...
Development of the central nervous system relies on the generation of specialized cell types in a ti...
Cell identity and function is determined by the intrinsic wiring of the gene regulatory network that...
Secreted signals, known as morphogens, provide the positional information that organizes gene expres...
We have investigated the genetic circuitry underlying the determination of neuronal identity, using ...
Sonic hedgehog (Shh) signaling patterns the vertebrate spinal cord by activating a group of transcri...
AbstractThe partitioning of the ventral neural tube into five distinct neuronal progenitor domains i...
In vertebrates, cranial placodes contribute to all sense organs and sensory ganglia and arsise from ...
AbstractSpecification of neuronal fate in the vertebrate central nervous system depends on the profi...
AbstractThe specification of neuronal fates in the ventral spinal cord depends on the regulation of ...