Literature DB >> 21847097

CBP is required for environmental enrichment-induced neurogenesis and cognitive enhancement.

Jose P Lopez-Atalaya1, Alessandro Ciccarelli, Jose Viosca, Luis M Valor, Maria Jimenez-Minchan, Santiago Canals, Maurizio Giustetto, Angel Barco.   

Abstract

The epigenetic changes of the chromatin represent an attractive molecular substrate for adaptation to the environment. We examined here the role of CREB-binding protein (CBP), a histone acetyltransferase involved in mental retardation, in the genesis and maintenance of long-lasting systemic and behavioural adaptations to environmental enrichment (EE). Morphological and behavioural analyses demonstrated that EE ameliorates deficits associated to CBP deficiency. However, CBP-deficient mice also showed a strong defect in environment-induced neurogenesis and impaired EE-mediated enhancement of spatial navigation and pattern separation ability. These defects correlated with an attenuation of the transcriptional programme induced in response to EE and with deficits in histone acetylation at the promoters of EE-regulated, neurogenesis-related genes. Additional experiments in CBP restricted and inducible knockout mice indicated that environment-induced adult neurogenesis is extrinsically regulated by CBP function in mature granule cells. Overall, our experiments demonstrate that the environment alters gene expression by impinging on activities involved in modifying the epigenome and identify CBP-dependent transcriptional neuroadaptation as an important mediator of EE-induced benefits, a finding with important implications for mental retardation therapeutics.

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Year:  2011        PMID: 21847097      PMCID: PMC3199387          DOI: 10.1038/emboj.2011.299

Source DB:  PubMed          Journal:  EMBO J        ISSN: 0261-4189            Impact factor:   11.598


  76 in total

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Review 3.  Chromatin modifications and their function.

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Review 4.  Environmental epigenomics and disease susceptibility.

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  43 in total

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6.  Cbp-dependent histone acetylation mediates axon regeneration induced by environmental enrichment in rodent spinal cord injury models.

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7.  CBP-Dependent memory consolidation in the prefrontal cortex supports object-location learning.

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Review 8.  Rubinstein-Taybi Syndrome and Epigenetic Alterations.

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