SummaryThe cytoplasmic polyadenylation element-binding protein 3 (CPEB3), a regulator of local protein synthesis, is the mouse homolog of ApCPEB, a functional prion protein in Aplysia. Here, we provide evidence that CPEB3 is activated by Neuralized1, an E3 ubiquitin ligase. In hippocampal cultures, CPEB3 activated by Neuralized1-mediated ubiquitination leads both to the growth of new dendritic spines and to an increase of the GluA1 and GluA2 subunits of AMPA receptors, two CPEB3 targets essential for synaptic plasticity. Conditional overexpression of Neuralized1 similarly increases GluA1 and GluA2 and the number of spines and functional synapses in the hippocampus and is reflected in enhanced hippocampal-dependent memory and synaptic plasti...
SummaryThe mouse cytoplasmic polyadenylation element-binding protein 3 (CPEB3) is a translational re...
Neuronal ApoE receptors are linked to learning and memory, but the pathways governing their abundanc...
Neuronal ApoE receptors are linked to learning and memory, but the pathways governing their abundanc...
International audienceThe cytoplasmic polyadenylation element-binding protein 3 (CPEB3), a regulator...
Summary: Activity-dependent synthesis of plasticity-related proteins is necessary to sustain long-la...
SummaryThe mouse cytoplasmic polyadenylation element-binding protein 3 (CPEB3) is a translational re...
SummaryProtein synthesis is crucial for the maintenance of long-term-memory-related synaptic plastic...
The mouse cytoplasmic polyadenylation element-binding protein 3 (CPEB3) is a translational regulator...
Consolidation of long-term memories depends on de novo protein synthesis. Several translational regu...
Regulated RNA translation is critical to provide proteins needed to maintain persistent modification...
Protein synthesis is crucial for the maintenance of long-term-memory-related synaptic plasticity. Th...
Consolidation of long-term memories depends on de novo protein synthesis. Several translational regu...
Consolidation of long-term memories depends on de novo protein synthesis. Several translational regu...
SummaryConsolidation of long-term memories depends on de novo protein synthesis. Several translation...
SummaryProtein synthesis is crucial for the maintenance of long-term-memory-related synaptic plastic...
SummaryThe mouse cytoplasmic polyadenylation element-binding protein 3 (CPEB3) is a translational re...
Neuronal ApoE receptors are linked to learning and memory, but the pathways governing their abundanc...
Neuronal ApoE receptors are linked to learning and memory, but the pathways governing their abundanc...
International audienceThe cytoplasmic polyadenylation element-binding protein 3 (CPEB3), a regulator...
Summary: Activity-dependent synthesis of plasticity-related proteins is necessary to sustain long-la...
SummaryThe mouse cytoplasmic polyadenylation element-binding protein 3 (CPEB3) is a translational re...
SummaryProtein synthesis is crucial for the maintenance of long-term-memory-related synaptic plastic...
The mouse cytoplasmic polyadenylation element-binding protein 3 (CPEB3) is a translational regulator...
Consolidation of long-term memories depends on de novo protein synthesis. Several translational regu...
Regulated RNA translation is critical to provide proteins needed to maintain persistent modification...
Protein synthesis is crucial for the maintenance of long-term-memory-related synaptic plasticity. Th...
Consolidation of long-term memories depends on de novo protein synthesis. Several translational regu...
Consolidation of long-term memories depends on de novo protein synthesis. Several translational regu...
SummaryConsolidation of long-term memories depends on de novo protein synthesis. Several translation...
SummaryProtein synthesis is crucial for the maintenance of long-term-memory-related synaptic plastic...
SummaryThe mouse cytoplasmic polyadenylation element-binding protein 3 (CPEB3) is a translational re...
Neuronal ApoE receptors are linked to learning and memory, but the pathways governing their abundanc...
Neuronal ApoE receptors are linked to learning and memory, but the pathways governing their abundanc...