Multiple signals control the balance between proliferation and differentiation of neural progenitor cells during corticogenesis. A key point of this regulation is the control of G1 phase length, which is regulated by the Cyclin/Cdks complexes. Using genome-wide chromatin immunoprecipitation assay and mouse genetics, we have explored the transcriptional regulation of Cyclin D1 (Ccnd1) during the early developmental stages of the mouse cerebral cortex. We found evidence that SP8 binds to the Ccnd1 locus on exon regions. In vitro experiments show SP8 binding activity on Ccnd1 gene 3′-end, and point to a putative role for SP8 in modulating PAX6-mediated repression of Ccnd1 along the dorso-ventral axis of the developing pallium, creating a media...
Despite the vast abundance of glial progenitor cells in the mouse brain parenchyma, little is known ...
Elucidating the genetic control of cerebral cortical (pallial) development is essential for understa...
The patterning of cortical areas is controlled by a combination of intrinsic factors that are expres...
Multiple signals control the balance between proliferation and differentiation of neural progenitor ...
<p>Multiple signals control the balance between proliferation and differentiation of neural progenit...
<p>Multiple signals control the balance between proliferation and differentiation of neural progenit...
<p>Multiple signals control the balance between proliferation and differentiation of neural progenit...
<p>Multiple signals control the balance between proliferation and differentiation of neural progenit...
<p>Multiple signals control the balance between proliferation and differentiation of neural progenit...
<p>Multiple signals control the balance between proliferation and differentiation of neural progenit...
To gain new insights into the transcriptional regulation of cortical development, we examined the ro...
SummaryElucidating the genetic control of cerebral cortical (pallial) development is essential for u...
Cortical development is controlled by transcriptional programs, which are orchestrated by transcript...
The chromatin remodeling gene CHD8 represents a central node in neurodevelopmental gene networks imp...
Coordination of differentiation and cell cycle progression represents an essential process for embry...
Despite the vast abundance of glial progenitor cells in the mouse brain parenchyma, little is known ...
Elucidating the genetic control of cerebral cortical (pallial) development is essential for understa...
The patterning of cortical areas is controlled by a combination of intrinsic factors that are expres...
Multiple signals control the balance between proliferation and differentiation of neural progenitor ...
<p>Multiple signals control the balance between proliferation and differentiation of neural progenit...
<p>Multiple signals control the balance between proliferation and differentiation of neural progenit...
<p>Multiple signals control the balance between proliferation and differentiation of neural progenit...
<p>Multiple signals control the balance between proliferation and differentiation of neural progenit...
<p>Multiple signals control the balance between proliferation and differentiation of neural progenit...
<p>Multiple signals control the balance between proliferation and differentiation of neural progenit...
To gain new insights into the transcriptional regulation of cortical development, we examined the ro...
SummaryElucidating the genetic control of cerebral cortical (pallial) development is essential for u...
Cortical development is controlled by transcriptional programs, which are orchestrated by transcript...
The chromatin remodeling gene CHD8 represents a central node in neurodevelopmental gene networks imp...
Coordination of differentiation and cell cycle progression represents an essential process for embry...
Despite the vast abundance of glial progenitor cells in the mouse brain parenchyma, little is known ...
Elucidating the genetic control of cerebral cortical (pallial) development is essential for understa...
The patterning of cortical areas is controlled by a combination of intrinsic factors that are expres...