The regulated degradation of proteins by the ubiquitin proteasome pathway is emerging as an important modulator of synaptic function and plasticity. The proteasome is a large, multi-subunit cellular machine that recognizes, unfolds and degrades target polyubiquitinated proteins. Here we report NMDA (N-methyl-D-aspartate) receptor-dependent redistribution of proteasomes from dendritic shafts to synaptic spines upon synaptic stimulation, providing a mechanism for local protein degradation. Using a proteasome-activity reporter and local perfusion, we show that synaptic stimulation regulates proteasome activity locally in the dendrites. We used restricted photobleaching of individual spines and dendritic shafts to reveal the dynamics that under...
SummaryProteasomes drive the selective degradation of protein substrates with covalently linked ubiq...
Proteasome-mediated proteolysis is important for synaptic plasticity, neuronal development, protein ...
The molecular mechanisms regulating the ubiquitin proteasome system (UPS) at synapses are poorly und...
SummaryGrowth of new dendritic spines contributes to experience-dependent circuit plasticity in the ...
Each neuron in the mammalian central nervous system makes up to ten thousand synaptic connections wi...
Protein degradation via the ubiquitin proteasome system (UPS) has been shown to regulate changes in ...
The ubiquitin-proteasome system regulates protein degradation in every eukaryotic cell. Recent work ...
AbstractThe ubiquitin-proteasome system regulates protein degradation in every eukaryotic cell. Rece...
SummaryThe molecular mechanisms regulating the ubiquitin proteasome system (UPS) at synapses are poo...
Recent studies documenting a role for local protein synthesis in synaptic plasticity have lead to in...
AbstractRecent studies documenting a role for local protein synthesis in synaptic plasticity have le...
AbstractBackground: The ubiquitin proteasome system (UPS) mediates regulated protein degradation and...
AbstractThe ubiquitin proteasome system is one of the principle mechanisms for the regulation of pro...
Differentiation of the presynaptic terminal is a complex and rapid event that normally occurs in spa...
In neurons, lysosomes, which degrade membrane and cytoplasmic components, are thought to primarily r...
SummaryProteasomes drive the selective degradation of protein substrates with covalently linked ubiq...
Proteasome-mediated proteolysis is important for synaptic plasticity, neuronal development, protein ...
The molecular mechanisms regulating the ubiquitin proteasome system (UPS) at synapses are poorly und...
SummaryGrowth of new dendritic spines contributes to experience-dependent circuit plasticity in the ...
Each neuron in the mammalian central nervous system makes up to ten thousand synaptic connections wi...
Protein degradation via the ubiquitin proteasome system (UPS) has been shown to regulate changes in ...
The ubiquitin-proteasome system regulates protein degradation in every eukaryotic cell. Recent work ...
AbstractThe ubiquitin-proteasome system regulates protein degradation in every eukaryotic cell. Rece...
SummaryThe molecular mechanisms regulating the ubiquitin proteasome system (UPS) at synapses are poo...
Recent studies documenting a role for local protein synthesis in synaptic plasticity have lead to in...
AbstractRecent studies documenting a role for local protein synthesis in synaptic plasticity have le...
AbstractBackground: The ubiquitin proteasome system (UPS) mediates regulated protein degradation and...
AbstractThe ubiquitin proteasome system is one of the principle mechanisms for the regulation of pro...
Differentiation of the presynaptic terminal is a complex and rapid event that normally occurs in spa...
In neurons, lysosomes, which degrade membrane and cytoplasmic components, are thought to primarily r...
SummaryProteasomes drive the selective degradation of protein substrates with covalently linked ubiq...
Proteasome-mediated proteolysis is important for synaptic plasticity, neuronal development, protein ...
The molecular mechanisms regulating the ubiquitin proteasome system (UPS) at synapses are poorly und...