During mammalian nervous system development, neural precursor cells first generate neurons and then switch to astrocytes. In this issue of Developmental Cell, Namihira and colleagues show that committed neuronal precursors and young neurons promote the production of astrocytes from the remaining neural precursors by activating Notch signaling, leading to demethylation and upregulation of astrocyte-specific genes via cytokine-mediated JAK-STAT signaling
Astrocytes are the key component of the central nervous system (CNS), serving as pivotal regulators ...
AbstractRecent studies demonstrated that the molecules secreted from astrocytes play important roles...
AbstractUnderstanding how to specify rapid differentiation of human neural progenitor towards enrich...
During mammalian nervous system development, neural precursor cells first generate neurons and then ...
SummaryDuring midgestation, mammalian neural precursor cells (NPCs) differentiate only into neurons....
Astrocytes emerge as crucial cells for proper neuronal functioning in the developing and adult brain...
SummaryPrecursor cells of the embryonic cortex sequentially generate neurons and then glial cells, b...
AbstractThe mechanisms by which neural stem cells give rise to neurons, astrocytes, or oligodendrocy...
AbstractIn vertebrates, Notch signaling is generally thought to inhibit neural differentiation. Howe...
AbstractNotch1 has been shown to induce glia in the peripheral nervous system. However, it has not b...
Understanding the mechanisms underlying neuronal fate determination will provide important insights ...
SummaryThe mechanisms controlling the transition from neurogenesis to gliogenesis in the vertebrate ...
In the developing nervous system the Notch signaling pathway has recently been shown to be necessary...
Manipulating neurotransmitter release from astrocytes neighboring the developing new neurons in the ...
Astrocytes are considered a default developmental state in mammalian nervous system differentiation...
Astrocytes are the key component of the central nervous system (CNS), serving as pivotal regulators ...
AbstractRecent studies demonstrated that the molecules secreted from astrocytes play important roles...
AbstractUnderstanding how to specify rapid differentiation of human neural progenitor towards enrich...
During mammalian nervous system development, neural precursor cells first generate neurons and then ...
SummaryDuring midgestation, mammalian neural precursor cells (NPCs) differentiate only into neurons....
Astrocytes emerge as crucial cells for proper neuronal functioning in the developing and adult brain...
SummaryPrecursor cells of the embryonic cortex sequentially generate neurons and then glial cells, b...
AbstractThe mechanisms by which neural stem cells give rise to neurons, astrocytes, or oligodendrocy...
AbstractIn vertebrates, Notch signaling is generally thought to inhibit neural differentiation. Howe...
AbstractNotch1 has been shown to induce glia in the peripheral nervous system. However, it has not b...
Understanding the mechanisms underlying neuronal fate determination will provide important insights ...
SummaryThe mechanisms controlling the transition from neurogenesis to gliogenesis in the vertebrate ...
In the developing nervous system the Notch signaling pathway has recently been shown to be necessary...
Manipulating neurotransmitter release from astrocytes neighboring the developing new neurons in the ...
Astrocytes are considered a default developmental state in mammalian nervous system differentiation...
Astrocytes are the key component of the central nervous system (CNS), serving as pivotal regulators ...
AbstractRecent studies demonstrated that the molecules secreted from astrocytes play important roles...
AbstractUnderstanding how to specify rapid differentiation of human neural progenitor towards enrich...