| Literature DB >> 17699672 |
Haowei Shen1, Laxminarayana Korutla, Nicholas Champtiaux, Shigenobu Toda, Ryan LaLumiere, Joseph Vallone, Matthias Klugmann, Julie A Blendy, Scott A Mackler, Peter W Kalivas.
Abstract
Coordinated proteolysis of synaptic proteins is required for synaptic plasticity, but a mechanism for recruiting the ubiquitin-proteasome system (UPS) into dendritic spines is not known. NAC1 is a cocaine-regulated transcriptional protein that was found to complex with proteins in the UPS, including cullins and Mov34. NAC1 and the proteasome were cotranslocated from the nucleus into dendritic spines in cortical neurons in response to proteasome inhibition or disinhibiting synaptic activity with bicuculline. Bicuculline also produced a progressive accumulation of the proteasome and NAC1 in the postsynaptic density. Recruitment of the proteasome into dendrites and postsynaptic density by bicuculline was prevented in neurons from mice harboring an NAC1 gene deletion or in neurons transfected with mutated NAC1 lacking the proteasome binding domain. These experiments show that NAC1 modulates the translocation of the UPS from the nucleus into dendritic spines, thereby suggesting a potential missing link in the recruitment of necessary proteolysis machinery for synaptic remodeling.Entities:
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Year: 2007 PMID: 17699672 PMCID: PMC6672176 DOI: 10.1523/JNEUROSCI.1571-07.2007
Source DB: PubMed Journal: J Neurosci ISSN: 0270-6474 Impact factor: 6.167