Synaptic Expression of Glutamate Receptor after Encoding of Fear Memory in the Rat Amygdala
Open Access
- 1 January 2006
- journal article
- Published by Elsevier in Molecular Pharmacology
- Vol. 69 (1) , 299-308
- https://doi.org/10.1124/mol.105.017194
Abstract
Fear conditioning has been ascribed to presynaptic mechanisms, particularly presynaptic facilitation of transmission at thalamo- and cortico-amygdala synapses. Here, by labeling surface receptors with biotin or using membrane fractionation approaches, we report that fear conditioning resulted in an increase in surface expression of GluR1 subunit of α-amino-3-hydroxy-5-methyl-4-isoxazolepropionic acid receptors in the amygdala, whereas total GluR1 mRNA and protein levels were unchanged. The control group that received conditioned stimulus (CS) and unconditioned stimulus in an unpaired fashion did not present any increase, indicating that GluR1 increase was specific to the learning component of the task. Conditioning-induced increase in surface expression of GluR1 depended on the activation of N-methyl-d-aspartate receptors and protein kinases and required the synthesis of new proteins. CS-alone trials applied 24 h before training attenuated fear-potentiated startle and prevented conditioning-induced increase in surface expression of GluR1. Increase in GluR1 was also observed in the amygdala slices after delivery of tetanic stimulation that elicited long-term potentiation of synaptic transmission. Proteasome inhibitor increased surface expression of GluR1 in a time- and dose-dependent manner. Furthermore, pretraining administration of proteasome inhibitor into the amygdala facilitated the fear-potentiated startle. These results suggest that long-term memory formation is correlated with the change in synaptic expression of GluR1, and trafficking of GluR1 to the synaptic sites contributes at least in part to the expression of fear memory.This publication has 36 references indexed in Scilit:
- Presynaptic induction of heterosynaptic associative plasticity in the mammalian brainNature, 2003
- NMDA Receptors and L-Type Voltage-Gated Calcium Channels Contribute to Long-Term Potentiation and Different Components of Fear Memory Formation in the Lateral AmygdalaJournal of Neuroscience, 2002
- Stargazin regulates synaptic targeting of AMPA receptors by two distinct mechanismsNature, 2000
- Reinsertion or Degradation of AMPA Receptors Determined by Activity-Dependent Endocytic SortingNeuron, 2000
- Bidirectional, Activity-Dependent Regulation of Glutamate Receptors in the Adult Hippocampus In VivoNeuron, 2000
- Control of GluR1 AMPA Receptor Function by cAMP-Dependent Protein KinaseJournal of Neuroscience, 2000
- Postsynaptic Induction and PKA-Dependent Expression of LTP in the Lateral AmygdalaNeuron, 1998
- Consolidation: Fragility on the Road to the EngramNeuron, 1996
- Localization of AMPA receptors in the hippocampus and cerebellum of the rat using an anti-receptor monoclonal antibodyNeuroscience, 1992
- Biochemical characterization of a filtered synaptoneurosome preparation from guinea pig cerebral cortex: cyclic adenosine 3':5'-monophosphate- generating systems, receptors, and enzymesJournal of Neuroscience, 1985