Article
- The EMBO Journal (2008) 27, 361 - 372
- doi:10.1038/sj.emboj.7601969
Published online: 10 January 2008
Subject Categories:
Rapid and bi-directional regulation of AMPA receptor phosphorylation and trafficking by JNKEMBO Open
Gareth M Thomas1, Da-Ting Lin1, Mutsuo Nuriya1,2 and Richard L Huganir1
- Department of Neuroscience, Howard Hughes Medical Institute, Johns Hopkins University School of Medicine, Baltimore, MD, USA
Correspondence to:
Richard L Huganir, Department of Neuroscience, Howard Hughes Medical Institute, Johns Hopkins University School of Medicine, 725 N Wolfe Street, Hunterian 1001, Baltimore, MD 21205, USA. Tel.: +1 410 955 4050; Fax: +1 410 955 0877; E-mail: rhuganir@jhmi.edu
2Present address: Department of Pharmacology, School of Medicine, Keio University, 35 Shinanomachi, Shinjuku, Tokyo 160-8582, Japan
Received 5 November 2007; Accepted 3 December 2007
Abstract
Jun N-terminal kinases (JNKs) are implicated in various neuropathological conditions. However, physiological roles for JNKs in neurons remain largely unknown, despite the high expression level of JNKs in brain. Here, using bioinformatic and biochemical approaches, we identify the AMPA receptor GluR2L and GluR4 subunits as novel physiological JNK substrates in vitro, in heterologous cells and in neurons. Consistent with this finding, GluR2L and GluR4 associate with specific JNK signaling components in the brain. Moreover, the modulation of the novel JNK sites in GluR2L and GluR4 is dynamic and bi-directional, such that phosphorylation and de-phosphorylation are triggered within minutes following decreases and increases in neuronal activity, respectively. Using live-imaging techniques to address the functional consequence of these activity-dependent changes we demonstrate that the novel JNK site in GluR2L controls reinsertion of internalized GluR2L back to the cell surface following NMDA treatment, without affecting basal GluR2L trafficking. Taken together, our results demonstrate that JNK directly regulates AMPA-R trafficking following changes in neuronal activity in a rapid and bi-directional manner.
Keywords:
- LTD,
- LTP,
- MAPK,
- synaptic transmission
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