| Literature DB >> 25979088 |
Francesco Bedogni1, Clementina Cobolli Gigli1,2, Davide Pozzi3, Riccardo Lorenzo Rossi4, Linda Scaramuzza1, Grazisa Rossetti4, Massimiliano Pagani4, Charlotte Kilstrup-Nielsen2, Michela Matteoli3,5, Nicoletta Landsberger1,2.
Abstract
MeCP2 is associated with several neurological disorders; of which, Rett syndrome undoubtedly represents the most frequent. Its molecular roles, however, are still unclear, and data from animal models often describe adult, symptomatic stages, while MeCP2 functions during embryonic development remain elusive. We describe the pattern and timing of Mecp2 expression in the embryonic neocortex highlighting its low but consistent expression in virtually all cells and show the unexpected occurrence of transcriptional defects in the Mecp2 null samples at a stage largely preceding the onset of overt symptoms. Through the deregulated expression of ionic channels and glutamatergic receptors, the lack of Mecp2 during early neuronal maturation leads to the reduction in the neuronal responsiveness to stimuli. We suggest that such features concur to morphological alterations that begin affecting Mecp2 null neurons around the perinatal age and become evident later in adulthood. We indicate MeCP2 as a key modulator of the transcriptional mechanisms regulating cerebral cortex development. Neurological phenotypes of MECP2 patients could thus be the cumulative result of different adverse events that are already present at stages when no obvious signs of the pathology are evident and are worsened by later impairments affecting the central nervous system during maturation and maintenance of its functionality.Entities:
Keywords: MeCP2 null cortex; embryonic cerebral cortex development; intrinsic neuronal excitability; neurological disorders; transcriptome
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Year: 2015 PMID: 25979088 DOI: 10.1093/cercor/bhv078
Source DB: PubMed Journal: Cereb Cortex ISSN: 1047-3211 Impact factor: 5.357