Missense mutation of Fmr1 results in impaired AMPAR-mediated plasticity and socio-cognitive deficits in mice

Archive ouverte

Prieto, Marta | Folci, Alessandra | Poupon, Gwénola | Schiavi, Sara | Buzzelli, Valeria | Pronot, Marie | François, Urielle | Pousinha, Paula | Lattuada, Norma | Abelanet, Sophie | Castagnola, Sara | Chafai, Magda | Khayachi, Anouar | Gwizdek, Carole | Brau, Frédéric | Deval, Emmanuel | Francolini, Maura | Bardoni, Barbara | Humeau, Yann | Trezza, Viviana | Martin, Stéphane

Edité par CCSD ; Nature Publishing Group -

International audience. Fragile X syndrome (FXS) is the most frequent form of inherited intellectual disability and the best-described monogenic cause of autism. CGG-repeat expansion in the FMR1 gene leads to FMR1 silencing, loss-of-expression of the Fragile X Mental Retardation Protein (FMRP), and is a common cause of FXS. Missense mutations in the FMR1 gene were also identified in FXS patients, including the recurrent FMRP-R138Q mutation. To investigate the mechanisms underlying FXS caused by this mutation, we generated a knock-in mouse model (Fmr1R138Q) expressing the FMRP-R138Q protein. We demonstrate that, in the hippocampus of the Fmr1R138Q mice, neurons show an increased spine density associated with synaptic ultrastructural defects and increased AMPA receptor-surface expression. Combining biochemical assays, high-resolution imaging, electrophysiological recordings, and behavioural testing, we also show that the R138Q mutation results in impaired hippocampal long-term potentiation and socio-cognitive deficits in mice. These findings reveal the functional impact of the FMRP-R138Q mutation in a mouse model of FXS.

Suggestions

Du même auteur

Abnormal AMPAR-mediated synaptic plasticity, cognitive and autistic-like behaviors in a missense Fmr1 mutant mouse model of Fragile X syndrome

Archive ouverte | Prieto, Marta | CCSD

Fragile X syndrome (FXS) is the most frequent form of inherited intellectual disability and the best-described monogenic cause of autism. FXS is usually caused by a CGG-repeat expansion in the FMR1 gene leading to its silencing an...

Sumoylation regulates FMRP-mediated dendritic spine elimination and maturation

Archive ouverte | Khayachi, Anouar | CCSD

International audience

Sumoylation regulates FMRP-mediated dendritic spine elimination and maturation

Archive ouverte | Khayachi, Anouar | CCSD

International audience

Chargement des enrichissements...