PLoS ONE · 2010 · 100 citations · 37 references
Synaptic TransmissionStructural PlasticityCellular NeurobiologySynaptic SignalingPsd Scaffold ProteinsUbiquitin-proteasome SystemSocial SciencesSynaptic NeurosciencePostsynaptic Scaffold GkapProtein DegradationCell SignalingProtein FunctionMolecular NeuroscienceCell BiologySynaptic PlasticitySignal TransductionNeurophysiologyNeuroanatomyDendritic Spine MorphologyRna InterferenceNeuroscienceMolecular NeurobiologyCentral Nervous SystemMedicineTrim3 Ubiquitin Ligase
Changes in neuronal activity modify the structure of dendritic spines and alter the function and protein composition of synapses. Regulated degradation of postsynaptic density (PSD) proteins by the ubiquitin-proteasome system is believed to play an important role in activity-dependent synaptic remodeling. Stimulating neuronal activity in vitro and in vivo induces the ubiquitination and degradation of GKAP/SAPAP and Shank, major scaffold proteins of the PSD. However, the specific ubiquitin ligases that regulate postsynaptic protein composition have not been identified. Here we identify the RING finger-containing protein TRIM3 as a specific E3 ubiquitin ligase for the PSD scaffold GKAP/SAPAP1. Present in PSD fractions from rat brain, TRIM3 stimulates ubiquitination and proteasome-dependent degradation of GKAP, and induces the loss of GKAP and associated scaffold Shank1 from postsynaptic sites. Suppression of endogenous TRIM3 by RNA interference (RNAi) results in increased accumulation of GKAP and Shank1 at synapses, as well as enlargement of dendritic spine heads. RNAi of TRIM3 also prevented the loss of GKAP induced by synaptic activity. Thus, TRIM3 is a novel E3 ligase that mediates activity-dependent turnover of PSD scaffold proteins and is a negative regulator of dendritic spine morphology.
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Christelle M. Durand, Catalina Betancur, Tobias M. Boeckers et al. · Nature Genetics · 2006 · 1.6K citations · Full text
Neurodevelopmental Disorders, Synaptic Plasticity, Molecular Neuroscience +12
PSD-95 Involvement in Maturation of Excitatory Synapses
Alaa El-Husseini, Eric Schnell, Dane M. Chetkovich et al. · Science · 2000 · 1.3K citations
Synaptic Plasticity, Developmental Biology, Neurophysiology +13