Your browser doesn't support javascript.
loading
Montrer: 20 | 50 | 100
Résultats 1 - 1 de 1
Filtrer
Plus de filtres











Base de données
Gamme d'année
1.
Cereb Cortex ; 22(6): 1431-41, 2012 Jun.
Article de Anglais | MEDLINE | ID: mdl-21878487

RÉSUMÉ

The development of a neuron from a precursor cell comprises a complex set of steps ranging from regulation of the proliferative cycle through the acquisition of distinct morphology and functionality. How these processes are orchestrated is largely unknown. Using in utero manipulation of gene expression in the mouse embryonic cerebral cortex, we found that the transition between multipolar and bipolar stages of newborn cortical pyramidal neurons is markedly delayed by depletion of CoREST, a corepressor component of chromatin remodeling complexes. This profoundly affects the onset of their radial migration. The loss of CoREST function also perturbs the dynamics of neuronal precursor cell populations, transiently increasing the fraction of cells remaining in progenitor states, but not the acquisition of the neuronal glutamatergic fate of pyramidal cells. The function of CoREST in these processes appears to be independent of its best-known interactor, the RE-1 silencer of transcription/neural restrictive silencing factor, and requires the histone demethylase LSD1. This reveals the importance of epigenetic control in the execution of neural development programs, specifically in the cerebral cortex.


Sujet(s)
Cortex cérébral/embryologie , Protéines de tissu nerveux/physiologie , Neurogenèse/physiologie , Oxidoreductases, (N-demethylating)/physiologie , Cellules pyramidales/embryologie , Protéines de répression/physiologie , Animaux , Mouvement cellulaire/physiologie , Cortex cérébral/cytologie , Protéines corépressives , Épigenèse génétique/physiologie , Femelle , Histone Demethylases , Protéines membranaires/physiologie , Souris , Neurones/physiologie , Grossesse
SÉLECTION CITATIONS
DÉTAIL DE RECHERCHE