Access
To read this story in full you will need to login or make a payment (see right).
Letter
Nature 441, 1144-1148 (29 June 2006) | doi:10.1038/nature04769; Received 28 December 2005; Accepted 30 March 2006
Open Innovation Challenges
-
Protect Enzyme from In Planta Degradation
A proposal for stable expression of an enzyme in corn seed is desired.
-
Fast Growth of Transformed Soybean Shoots
A method for accelerating growth of soybean shoots is desired.
nature jobs
Developer - Variation (Bioinformatician)
- European Bioinformatics Institute (EBI)
- Cambridge CB10 1SD United Kingdom
Biochemical Pharmacologist
- Eisai London Research Laboratories Ltd
- Hatfield, United Kingdom
Activity-dependent dynamics and sequestration of proteasomes in dendritic spines
Baris Bingol1 & Erin M. Schuman1
- Division of Biology, Howard Hughes Medical Institute, California Institute of Technology, 114-96, Pasadena, California 91125, USA
Correspondence to: Erin M. Schuman1 Correspondence and requests for materials should be addressed to E.M.S. (Email: schumane@caltech.edu).
Abstract
The regulated degradation of proteins by the ubiquitin proteasome pathway is emerging as an important modulator of synaptic function and plasticity1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15. 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 underlie proteasome sequestration, and show that activity modestly enhances the entry rate of proteasomes into spines while dramatically reducing their exit rate. Proteasome sequestration is persistent, reflecting an association with the actin-based cytoskeleton. Together, our data indicate that synaptic activity can promote the recruitment and sequestration of proteasomes to locally remodel the protein composition of synapses.
To read this story in full you will need to login or make a payment (see right).
MORE ARTICLES LIKE THIS
These links to content published by NPG are automatically generated.
NEWS AND VIEWS
Neuroscience Along memory laneNature News and Views (04 Dec 2008)
Experience-dependent development of NMDA receptor transmissionNature Neuroscience News and Views (01 Apr 1999)
RESEARCH
Efficiency of Ion Transport MechanismsNature Letters to Editor (22 Jan 1966)
Rapid and persistent modulation of actin dynamics regulates postsynaptic reorganization underlying bidirectional plasticityNature Neuroscience Article (01 Oct 2004)
See all 62 matches for Research
