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SUMOylation is required for glycine-induced increases in AMPA receptor surface expression (ChemLTP) in hippocampal neurons

Jaafari, Nadia; Konopacki, Filip A.; Owen, Thomas F.; Kantamneni, Sriharsha; Rubin, Philip; Craig, Tim J.; Wilkinson, Kevin A.; Henley, Jeremy M.

SUMOylation is required for glycine-induced increases in AMPA receptor surface expression (ChemLTP) in hippocampal neurons Thumbnail


Authors

Nadia Jaafari

Filip A. Konopacki

Thomas F. Owen

Sriharsha Kantamneni

Philip Rubin

Profile image of Tim Craig

Dr Tim Craig Tim.Craig@uwe.ac.uk
Associate Professor of Neuroscience

Kevin A. Wilkinson

Jeremy M. Henley



Abstract

Multiple pathways participate in the AMPA receptor trafficking that underlies long-term potentiation (LTP) of synaptic transmission. Here we demonstrate that protein SUMOylation is required for insertion of the GluA1 AMPAR subunit following transient glycine-evoked increase in AMPA receptor surface expression (ChemLTP) in dispersed neuronal cultures. ChemLTP increases co-localisation of SUMO-1 and the SUMO conjugating enzyme Ubc9 and with PSD95 consistent with the recruitment of SUMOylated proteins to dendritic spines. In addition, we show that ChemLTP increases dendritic levels of SUMO-1 and Ubc9 mRNA. Consistent with activity dependent translocation of these mRNAs to sites near synapses, levels of the mRNA binding and dendritic transport protein CPEB are also increased by ChemLTP. Importantly, reducing the extent of substrate protein SUMOylation by overexpressing the deSUMOylating enzyme SENP-1 or inhibiting SUMOylation by expressing dominant negative Ubc9 prevent the ChemLTP-induced increase in both AMPAR surface expression and dendritic SUMO-1 mRNA. Taken together these data demonstrate that SUMOylation of synaptic protein(s) involved in AMPA receptor trafficking is necessary for activity-dependent increases in AMPAR surface expression.

Journal Article Type Article
Acceptance Date Nov 16, 2012
Online Publication Date Jan 11, 2013
Publication Date Jan 11, 2013
Deposit Date Nov 7, 2024
Publicly Available Date Nov 8, 2024
Journal PLoS ONE
Electronic ISSN 1932-6203
Publisher Public Library of Science
Peer Reviewed Peer Reviewed
Volume 8
Issue 1
Article Number e52345
DOI https://doi.org/10.1371/journal.pone.0052345
Public URL https://uwe-repository.worktribe.com/output/13406183

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