AbstractBackground: The ubiquitin proteasome system (UPS) mediates regulated protein degradation and provides a mechanism for closely controling protein abundance in spatially restricted domains within cells. We hypothesized that the UPS may acutely determine the local concentration of key regulatory proteins at neuronal synapses as a means for locally modulating synaptic efficacy and the strength of neurotransmission communication.Results: We investigated this hypothesis at the Drosophila neuromuscular synapse by using an array of genetic and pharmacological tools. This study demonstrates that UPS components are present in presynaptic boutons and that the UPS functions locally in the presynaptic compartment to rapidly eliminate a condition...
Recent studies documenting a role for local protein synthesis in synaptic plasticity have lead to in...
Mechanisms of local protein quality control in the presynaptic nerve terminal remain largely unknown...
Neuronal plasticity relies on tightly regulated control of protein levels at synapses. One mechanism...
AbstractBackground: The ubiquitin proteasome system (UPS) mediates regulated protein degradation and...
Differentiation of the presynaptic terminal is a complex and rapid event that normally occurs in spa...
AbstractBackground: Long-lasting forms of synaptic plasticity have been shown to depend on changes i...
AbstractThe ubiquitin-proteasome system regulates protein degradation in every eukaryotic cell. Rece...
Enduring modification of synapses is central to long-lasting neural circuit plasticity. Such adaptat...
AbstractThe ubiquitin proteasome system is one of the principle mechanisms for the regulation of pro...
AbstractNeuronal plasticity relies on tightly regulated control of protein levels at synapses. One m...
Here we explore the relationship between presynaptic homeostatic plasticity and proteasome function ...
AbstractRecent studies documenting a role for local protein synthesis in synaptic plasticity have le...
SummaryUbiquitin-proteasome system (UPS) is a multistep protein degradation machinery implicated in ...
In the nervous system, rapidly occurring processes such as neuronal transmission and calcium signali...
During neurotransmission, synaptic vesicles undergo multiple rounds of exo-endocytosis, involving re...
Recent studies documenting a role for local protein synthesis in synaptic plasticity have lead to in...
Mechanisms of local protein quality control in the presynaptic nerve terminal remain largely unknown...
Neuronal plasticity relies on tightly regulated control of protein levels at synapses. One mechanism...
AbstractBackground: The ubiquitin proteasome system (UPS) mediates regulated protein degradation and...
Differentiation of the presynaptic terminal is a complex and rapid event that normally occurs in spa...
AbstractBackground: Long-lasting forms of synaptic plasticity have been shown to depend on changes i...
AbstractThe ubiquitin-proteasome system regulates protein degradation in every eukaryotic cell. Rece...
Enduring modification of synapses is central to long-lasting neural circuit plasticity. Such adaptat...
AbstractThe ubiquitin proteasome system is one of the principle mechanisms for the regulation of pro...
AbstractNeuronal plasticity relies on tightly regulated control of protein levels at synapses. One m...
Here we explore the relationship between presynaptic homeostatic plasticity and proteasome function ...
AbstractRecent studies documenting a role for local protein synthesis in synaptic plasticity have le...
SummaryUbiquitin-proteasome system (UPS) is a multistep protein degradation machinery implicated in ...
In the nervous system, rapidly occurring processes such as neuronal transmission and calcium signali...
During neurotransmission, synaptic vesicles undergo multiple rounds of exo-endocytosis, involving re...
Recent studies documenting a role for local protein synthesis in synaptic plasticity have lead to in...
Mechanisms of local protein quality control in the presynaptic nerve terminal remain largely unknown...
Neuronal plasticity relies on tightly regulated control of protein levels at synapses. One mechanism...