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Sonic Hedgehog and Notch Signaling Can Cooperate to Regulate Neurogenic Divisions of Neocortical Progenitors
by
Reynolds, Brent A.
, Dave, Richa K.
, Wainwright, Brandon J.
, Ellis, Tammy
, Bartlett, Perry F.
, Cooper, Helen M.
, Robson, Jonathan P.
, Adolphe, Christelle
, Julian, Elaine
, Toumpas, Melissa C.
in
Animals
/ Body Patterning - genetics
/ Body Patterning - physiology
/ Brain
/ Cancer
/ Cell cycle
/ Cell Division - genetics
/ Cell Division - physiology
/ Cell proliferation
/ Cells (biology)
/ Cells, Cultured
/ Clonal deletion
/ Deactivation
/ Developmental Biology/Molecular Development
/ Developmental Biology/Neurodevelopment
/ Developmental Biology/Stem Cells
/ Divisions
/ Dopamine
/ Embryo cells
/ Embryo, Mammalian
/ Embryogenesis
/ Female
/ Glial cells
/ Hedgehog protein
/ Hedgehog Proteins - genetics
/ Hedgehog Proteins - metabolism
/ Hedgehog Proteins - physiology
/ Homeostasis
/ Inactivation
/ Intermediate filament proteins
/ Intermediate Filament Proteins - metabolism
/ Lamination
/ Mice
/ Mice, Transgenic
/ Neocortex
/ Neocortex - cytology
/ Neocortex - embryology
/ Neocortex - metabolism
/ Nerve Tissue Proteins - metabolism
/ Nervous system
/ Nestin
/ Neural stem cells
/ Neural Stem Cells - metabolism
/ Neural Stem Cells - physiology
/ Neurogenesis
/ Neurogenesis - genetics
/ Neurogenesis - physiology
/ Neuronal-glial interactions
/ Neurons
/ Notch protein
/ Patched Receptors
/ Patched-1 Receptor
/ Pregnancy
/ Progenitor cells
/ Radial glial cells
/ Receptors, Cell Surface - genetics
/ Receptors, Cell Surface - physiology
/ Receptors, Notch - genetics
/ Receptors, Notch - metabolism
/ Receptors, Notch - physiology
/ Rodents
/ Signal transduction
/ Signal Transduction - genetics
/ Signal Transduction - physiology
/ Signaling
/ Stem cells
/ Transcription
/ Ventricle
/ Ventricular zone
2011
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Sonic Hedgehog and Notch Signaling Can Cooperate to Regulate Neurogenic Divisions of Neocortical Progenitors
by
Reynolds, Brent A.
, Dave, Richa K.
, Wainwright, Brandon J.
, Ellis, Tammy
, Bartlett, Perry F.
, Cooper, Helen M.
, Robson, Jonathan P.
, Adolphe, Christelle
, Julian, Elaine
, Toumpas, Melissa C.
in
Animals
/ Body Patterning - genetics
/ Body Patterning - physiology
/ Brain
/ Cancer
/ Cell cycle
/ Cell Division - genetics
/ Cell Division - physiology
/ Cell proliferation
/ Cells (biology)
/ Cells, Cultured
/ Clonal deletion
/ Deactivation
/ Developmental Biology/Molecular Development
/ Developmental Biology/Neurodevelopment
/ Developmental Biology/Stem Cells
/ Divisions
/ Dopamine
/ Embryo cells
/ Embryo, Mammalian
/ Embryogenesis
/ Female
/ Glial cells
/ Hedgehog protein
/ Hedgehog Proteins - genetics
/ Hedgehog Proteins - metabolism
/ Hedgehog Proteins - physiology
/ Homeostasis
/ Inactivation
/ Intermediate filament proteins
/ Intermediate Filament Proteins - metabolism
/ Lamination
/ Mice
/ Mice, Transgenic
/ Neocortex
/ Neocortex - cytology
/ Neocortex - embryology
/ Neocortex - metabolism
/ Nerve Tissue Proteins - metabolism
/ Nervous system
/ Nestin
/ Neural stem cells
/ Neural Stem Cells - metabolism
/ Neural Stem Cells - physiology
/ Neurogenesis
/ Neurogenesis - genetics
/ Neurogenesis - physiology
/ Neuronal-glial interactions
/ Neurons
/ Notch protein
/ Patched Receptors
/ Patched-1 Receptor
/ Pregnancy
/ Progenitor cells
/ Radial glial cells
/ Receptors, Cell Surface - genetics
/ Receptors, Cell Surface - physiology
/ Receptors, Notch - genetics
/ Receptors, Notch - metabolism
/ Receptors, Notch - physiology
/ Rodents
/ Signal transduction
/ Signal Transduction - genetics
/ Signal Transduction - physiology
/ Signaling
/ Stem cells
/ Transcription
/ Ventricle
/ Ventricular zone
2011
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Sonic Hedgehog and Notch Signaling Can Cooperate to Regulate Neurogenic Divisions of Neocortical Progenitors
by
Reynolds, Brent A.
, Dave, Richa K.
, Wainwright, Brandon J.
, Ellis, Tammy
, Bartlett, Perry F.
, Cooper, Helen M.
, Robson, Jonathan P.
, Adolphe, Christelle
, Julian, Elaine
, Toumpas, Melissa C.
in
Animals
/ Body Patterning - genetics
/ Body Patterning - physiology
/ Brain
/ Cancer
/ Cell cycle
/ Cell Division - genetics
/ Cell Division - physiology
/ Cell proliferation
/ Cells (biology)
/ Cells, Cultured
/ Clonal deletion
/ Deactivation
/ Developmental Biology/Molecular Development
/ Developmental Biology/Neurodevelopment
/ Developmental Biology/Stem Cells
/ Divisions
/ Dopamine
/ Embryo cells
/ Embryo, Mammalian
/ Embryogenesis
/ Female
/ Glial cells
/ Hedgehog protein
/ Hedgehog Proteins - genetics
/ Hedgehog Proteins - metabolism
/ Hedgehog Proteins - physiology
/ Homeostasis
/ Inactivation
/ Intermediate filament proteins
/ Intermediate Filament Proteins - metabolism
/ Lamination
/ Mice
/ Mice, Transgenic
/ Neocortex
/ Neocortex - cytology
/ Neocortex - embryology
/ Neocortex - metabolism
/ Nerve Tissue Proteins - metabolism
/ Nervous system
/ Nestin
/ Neural stem cells
/ Neural Stem Cells - metabolism
/ Neural Stem Cells - physiology
/ Neurogenesis
/ Neurogenesis - genetics
/ Neurogenesis - physiology
/ Neuronal-glial interactions
/ Neurons
/ Notch protein
/ Patched Receptors
/ Patched-1 Receptor
/ Pregnancy
/ Progenitor cells
/ Radial glial cells
/ Receptors, Cell Surface - genetics
/ Receptors, Cell Surface - physiology
/ Receptors, Notch - genetics
/ Receptors, Notch - metabolism
/ Receptors, Notch - physiology
/ Rodents
/ Signal transduction
/ Signal Transduction - genetics
/ Signal Transduction - physiology
/ Signaling
/ Stem cells
/ Transcription
/ Ventricle
/ Ventricular zone
2011
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Sonic Hedgehog and Notch Signaling Can Cooperate to Regulate Neurogenic Divisions of Neocortical Progenitors
Journal Article
Sonic Hedgehog and Notch Signaling Can Cooperate to Regulate Neurogenic Divisions of Neocortical Progenitors
2011
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Overview
Hedgehog (Hh) signaling is crucial for the generation and maintenance of both embryonic and adult stem cells, thereby regulating development and tissue homeostasis. In the developing neocortex, Sonic Hedgehog (Shh) regulates neural progenitor cell proliferation. During neurogenesis, radial glial cells of the ventricular zone (VZ) are the predominant neocortical progenitors that generate neurons through both symmetric and asymmetric divisions. Despite its importance, relatively little is known of the molecular pathways that control the switch from symmetric proliferative to differentiative/neurogenic divisions in neural progenitors.
Here, we report that conditional inactivation of Patched1, a negative regulator of the Shh pathway, in Nestin positive neural progenitors of the neocortex leads to lamination defects due to improper corticogenesis and an increase in the number of symmetric proliferative divisions of the radial glial cells. Hedgehog-activated VZ progenitor cells demonstrated a concomitant upregulation of Hes1 and Blbp, downstream targets of Notch signaling. The Notch signaling pathway plays a pivotal role in the maintenance of stem/progenitor cells and the regulation of glial versus neuronal identity. To study the effect of Notch signaling on Hh-activated neural progenitors, we inactivated both Patched1 and Rbpj, a transcriptional mediator of Notch signaling, in Nestin positive cells of the neocortex.
Our data indicate that by mid neurogenesis (embryonic day 14.5), attenuation of Notch signaling reverses the effect of Patched1 deletion on neurogenesis by restoring the balance between symmetric proliferative and neurogenic divisions. Hence, our results demonstrate that correct corticogenesis is an outcome of the interplay between the Hh and Notch signaling pathways.
Publisher
Public Library of Science,Public Library of Science (PLoS)
Subject
/ Body Patterning - physiology
/ Brain
/ Cancer
/ Developmental Biology/Molecular Development
/ Developmental Biology/Neurodevelopment
/ Developmental Biology/Stem Cells
/ Dopamine
/ Female
/ Hedgehog Proteins - genetics
/ Hedgehog Proteins - metabolism
/ Hedgehog Proteins - physiology
/ Intermediate filament proteins
/ Intermediate Filament Proteins - metabolism
/ Mice
/ Nerve Tissue Proteins - metabolism
/ Nestin
/ Neural Stem Cells - metabolism
/ Neural Stem Cells - physiology
/ Neurons
/ Receptors, Cell Surface - genetics
/ Receptors, Cell Surface - physiology
/ Receptors, Notch - metabolism
/ Receptors, Notch - physiology
/ Rodents
/ Signal Transduction - genetics
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