| Literature DB >> 18549786 |
Lorenzo A Cingolani1, Agnes Thalhammer, Lily M Y Yu, Myriam Catalano, Timothy Ramos, Michael A Colicos, Yukiko Goda.
Abstract
At synapses, cell adhesion molecules (CAMs) provide the molecular framework for coordinating signaling events across the synaptic cleft. Among synaptic CAMs, the integrins, receptors for extracellular matrix proteins and counterreceptors on adjacent cells, are implicated in synapse maturation and plasticity and memory formation. However, little is known about the molecular mechanisms of integrin action at central synapses. Here, we report that postsynaptic beta3 integrins control synaptic strength by regulating AMPA receptors (AMPARs) in a subunit-specific manner. Pharmacological perturbation targeting beta3 integrins promotes endocytosis of GluR2-containing AMPARs via Rap1 signaling, and expression of beta3 integrins produces robust changes in the abundance and composition of synaptic AMPARs without affecting dendritic spine structure. Importantly, homeostatic synaptic scaling induced by activity deprivation elevates surface expression of beta3 integrins, and in turn, beta3 integrins are required for synaptic scaling. Our findings demonstrate a key role for integrins in the feedback regulation of excitatory synaptic strength.Entities:
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Year: 2008 PMID: 18549786 PMCID: PMC2446609 DOI: 10.1016/j.neuron.2008.04.011
Source DB: PubMed Journal: Neuron ISSN: 0896-6273 Impact factor: 17.173