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Developmental downregulation of histone posttranslational modifications regulates visual cortical plasticity.

Academic Article
Publication Date:
2007
abstract:
The action of visual experience on visual cortical circuits is maximal during a critical period of postnatal development. The long-term effects of this experience are likely mediated by signaling cascades regulating experience-dependent gene transcription. Developmental modifications of these pathways could explain the difference in plasticity between the young and adult cortex. We studied the pathways linking experience-dependent activation of ERK to CREB-mediated gene expression in vivo. In juvenile mice, visual stimulation that activates CREB-mediated gene transcription also induced ERK-dependent MSK and histone H3 phosphorylation and H3-H4 acetylation, an epigenetic mechanism of gene transcription activation. In adult animals, ERK and MSK were still inducible; however, visual stimulation induced weak CREB-mediated gene expression and H3-H4 posttranslational modifications. Stimulation of histone acetylation in adult animals by means of trichostatin promoted ocular dominance plasticity. Thus, differing, experience-dependent activations of signaling molecules might be at the basis of the differences in experience-dependent plasticity between juvenile and adult cortex.
Iris type:
01.01 Articolo in rivista
Keywords:
MOLNEURO; SIGNALING; DEVBIO
List of contributors:
Maffei, Lamberto; Putignano, Elena; Ratto, GIAN MICHELE; Costa, Mario
Authors of the University:
COSTA MARIO
PUTIGNANO ELENA
RATTO GIAN MICHELE
Handle:
https://iris.cnr.it/handle/20.500.14243/39410
Published in:
NEURON (CAMB. MASS.)
Journal
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URL

http://www.cell.com/neuron/retrieve/pii/S0896627307001067
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