Scribble1/AP2 Complex Coordinates NMDA Receptor Endocytic Recycling

Archive ouverte

Piguel, Nicolas, H | Fievre, Sabine | Blanc, Jean-Michel | Carta, Mario | Moreau, Maïté, M | Moutin, Enora | Pinheiro, Vera, L | Medina, Chantal | Ezan, Jerome | Lasvaux, Léa | Loll, François | Durand, Christelle, M | Chang, Kai | Petralia, Ronald, S | Wenthold, Robert, J | Stephenson, F, Anne | Vuillard, Laurent | Darbon, Hervé | Perroy, Julie | Mulle, Christophe | Montcouquiol, Mireille | Racca, Claudia | Sans, Nathalie

Edité par CCSD ; Elsevier Inc -

International audience. The appropriate trafficking of glutamate receptors to synapses is crucial for basic synaptic function and synaptic plasticity. It is now accepted that NMDA receptors (NMDARs) internalize and are recycled at the plasma membrane but also exchange between synaptic and extrasynaptic pools; these NMDAR properties are also key to governing synaptic plasticity. Scribble1 is a large PDZ protein required for synaptogenesis and synaptic plasticity. Herein, we show that the level of Scribble1 is regulated in an activity-dependent manner and that Scribble1 controls the number of NMDARs at the plasma membrane. Notably, Scribble1 prevents GluN2A subunits from undergoing lysosomal trafficking and degradation by increasing their recycling to the plasma membrane following NMDAR activation. Finally, we show that a specific YxxR motif on Scribble1 controls these mechanisms through a direct interaction with AP2. Altogether, our findings define a molecular mechanism to control the levels of synaptic NMDARs via Scribble1 complex signaling.

Suggestions

Du même auteur

Scribble1/AP2 complex coordinates NMDA receptor endocytic recycling

Archive ouverte | Piguel, Nicolas H. | CCSD

International audience. The appropriate trafficking of glutamate receptors to synapses is crucial for basic synaptic function and synaptic plasticity. It is now accepted that NMDA receptors (NMDARs) internalize and ...

Activity-Dependent Neuroplasticity Induced by an Enriched Environment Reverses Cognitive Deficits in Scribble Deficient Mouse

Archive ouverte | Hilal, Muna, L | CCSD

International audience. Planar cell polarity (PCP) signaling is well known to play a critical role during prenatal brain development; whether it plays specific roles at postnatal stages remains rather unknown. Here,...

The Planar Polarity Protein Scribble1 Is Essential for Neuronal Plasticity and Brain Function

Archive ouverte | Moreau, Maïté, M | CCSD

International audience. Scribble (Scrib) is a key regulator of apicobasal polarity, presynaptic architecture, and short-term synaptic plasticity in Drosophila. In mammals, its homolog Scrib1 has been implicated in c...

Chargement des enrichissements...