Proteasome Inhibition Triggers Activity-Dependent Increase in the Size of the Recycling Vesicle Pool in Cultured Hippocampal Neurons
Open Access
- 1 November 2006
- journal article
- research article
- Published by Society for Neuroscience in Journal of Neuroscience
- Vol. 26 (44), 11333-11341
- https://doi.org/10.1523/jneurosci.1684-06.2006
Abstract
The ubiquitin proteasome system, generally known for its function in protein degradation, also appears to play an important role in regulating membrane trafficking. A role for the proteasome in regulating presynaptic release and vesicle trafficking has been proposed for invertebrates, but it remains to be tested in mammalian presynaptic terminals. We used the fluorescent styrylpyridinium dye FM4-64 to visualize changes in the recycling pool of vesicles in hippocampal culture under pharmacological inhibition of the proteasome. We found that a 2 h inhibition increases the recycling pool of vesicles by 76%, with no change in the rate or total amount of dye release. Interestingly, enhancement did not depend on protein synthesis but did depend on synaptic activity; blocking action potentials during proteasome inhibition abolished the effect whereas increasing neuronal activity accelerated the effect with an increased recycling pool evident after 15 min. We propose that the proteasome acts as a negative-feedback regulator of synaptic transmission, possibly serving a homeostatic role.Keywords
This publication has 60 references indexed in Scilit:
- Differential regulation of proteasome activity in the nucleus and the synaptic terminalsNeurochemistry International, 2006
- Ubiquitin and Protein Turnover in Synapse FunctionNeuron, 2005
- Evidence that insulin secretion influences SNAP-25 through proteasomal activationBiochemical and Biophysical Research Communications, 2005
- The Anaphase-Promoting Complex Regulates the Abundance of GLR-1 Glutamate Receptors in the Ventral Nerve Cord of C. elegansCurrent Biology, 2004
- Ubiquitin-proteasome-mediated local protein degradation and synaptic plasticityProgress in Neurobiology, 2004
- Calmodulin and Munc13 Form a Ca2+ Sensor/Effector Complex that Controls Short-Term Synaptic PlasticityCell, 2004
- Systemic exposure to proteasome inhibitors causes a progressive model of Parkinson's diseaseAnnals of Neurology, 2004
- Synaptotagmin I is necessary for compensatory synaptic vesicle endocytosis in vivoNature, 2003
- Visualizing recycling synaptic vesicles in hippocampal neurons by FM 1-43 photoconversionProceedings of the National Academy of Sciences, 2001
- Early requirement for alpha -SNAP and NSF in the secretory cascade in chromaffin cellsThe EMBO Journal, 1999