International audienceThe non-cell autonomous transfer of OTX2 homeoprotein transcription factor into juvenile mouse cerebral cortex regulates parvalbumin interneuron maturation and critical period timing. By analyzing gene expression in primary visual cortex of wild-type and Otx2 +/GFP mice at plastic and nonplastic ages, we identified several putative genes implicated in Otx2-dependent visual cortex plasticity for ocular dominance. Cortical OTX2 infusion in juvenile mice induced Gadd45b/g expression through direct regulation of transcription. Intriguingly, a reverse effect was found in the adult, where reducing cortical OTX2 resulted in Gadd45b/g upregulation. Viral expression of Gadd45b in adult visual cortex directly induced ocular domi...
The Otx2 homeodomain transcription factor is essential for gastrulation and early neural development...
Ocular dominance (OD) plasticity in the visual cortex is a classic model system for understanding de...
Ocular dominance plasticity is easily observed during the critical period in early postnatal life. C...
Durant le développement postnatal, l'homéoprotéine Otx2 est préférentiellement internalisée par les ...
International audienceBrain plasticity is often restricted to critical periods in early life. Here, ...
International audienceDuring postnatal life the cerebral cortex passes through critical periods of p...
SummaryBrain plasticity is often restricted to critical periods in early life. Here, we show that a ...
A surprising new mechanism that regulates the plasticity of postnatal neurons is reported in this is...
SummaryNeural circuits are shaped by experience in early postnatal life. Distinct GABAergic connecti...
International audienceSpecific transfer of (orthodenticle homeobox 2) Otx2 homeoprotein into GABAerg...
The ability of the environment to shape cortical function is at its highest during critical periods ...
Accumulation of non-cell autonomous Otx2 homeoprotein in postnatal mouse visual cortex (V1) has been...
During postnatal development of the visual cerebral cortex, Otx2 homeoprotein is transferred prefere...
During postnatal development, the cerebral cortex has limited temporal periods of high plasticity, c...
Plasticity in the visual cerebral cortex is regulated by the internalization of Otx2 homeoprotein in...
The Otx2 homeodomain transcription factor is essential for gastrulation and early neural development...
Ocular dominance (OD) plasticity in the visual cortex is a classic model system for understanding de...
Ocular dominance plasticity is easily observed during the critical period in early postnatal life. C...
Durant le développement postnatal, l'homéoprotéine Otx2 est préférentiellement internalisée par les ...
International audienceBrain plasticity is often restricted to critical periods in early life. Here, ...
International audienceDuring postnatal life the cerebral cortex passes through critical periods of p...
SummaryBrain plasticity is often restricted to critical periods in early life. Here, we show that a ...
A surprising new mechanism that regulates the plasticity of postnatal neurons is reported in this is...
SummaryNeural circuits are shaped by experience in early postnatal life. Distinct GABAergic connecti...
International audienceSpecific transfer of (orthodenticle homeobox 2) Otx2 homeoprotein into GABAerg...
The ability of the environment to shape cortical function is at its highest during critical periods ...
Accumulation of non-cell autonomous Otx2 homeoprotein in postnatal mouse visual cortex (V1) has been...
During postnatal development of the visual cerebral cortex, Otx2 homeoprotein is transferred prefere...
During postnatal development, the cerebral cortex has limited temporal periods of high plasticity, c...
Plasticity in the visual cerebral cortex is regulated by the internalization of Otx2 homeoprotein in...
The Otx2 homeodomain transcription factor is essential for gastrulation and early neural development...
Ocular dominance (OD) plasticity in the visual cortex is a classic model system for understanding de...
Ocular dominance plasticity is easily observed during the critical period in early postnatal life. C...