Synapse-specific regulation of AMPA receptor function by PSD-95
- 19 December 2006
- journal article
- research article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 103 (51) , 19535-19540
- https://doi.org/10.1073/pnas.0608492103
Abstract
PSD-95 is a major protein found in virtually all mature excitatory glutamatergic synapses in the brain. Here, we have addressed the role of PSD-95 in controlling glutamatergic synapse function by generating and characterizing a PSD-95 KO mouse. We found that the alpha-amino-3-hydroxy-5-methylisoxazole-4-propionic acid (AMPA)subtype of glutamate receptor (AMPAR)-mediated synaptic transmission was reduced in these mice. Two-photon (2P) uncaging of MNI-glutamate onto individual spines suggested that the decrease in AMPAR function in the PSD-95 KO mouse stems from an increase in the proportion of "silent" synapses i.e., synapses containing N-methyl-d-aspartate (NMDA) receptors (NMDARs) but no AMPARs. Unexpectedly, the silent synapses in the KO mouse were located onto morphologically mature spines. We also observed that a significant population of synapses appeared unaffected by PSD-95 gene deletion, suggesting that the functional role of PSD-95 displays synapse-specificity. In addition, we report that the decay of NMDAR-mediated current was slower in KO mice: The contribution of NR2B subunit containing receptors to the NMDAR-mediated synaptic current was greater in KO mice. The greater occurrence of silent synapses might be related to the greater magnitude of potentiation after long-term potentiation induction observed in these mice. Together, these results suggest a synapse-specific role for PSD-95 in controlling synaptic function that is independent of spine morphology.Keywords
This publication has 33 references indexed in Scilit:
- NMDA Receptor Subunit Composition Controls Synaptic Plasticity by Regulating Binding to CaMKIIPublished by Elsevier ,2005
- Activation of NR2A-Containing NMDA Receptors Is Not Obligatory for NMDA Receptor-Dependent Long-Term PotentiationJournal of Neuroscience, 2005
- Lack of NMDA Receptor Subtype Selectivity for Hippocampal Long-Term PotentiationJournal of Neuroscience, 2005
- Role of NMDA Receptor Subtypes in Governing the Direction of Hippocampal Synaptic PlasticityScience, 2004
- Homeostatic plasticity in the developing nervous systemNature Reviews Neuroscience, 2004
- Acute versus chronic NMDA receptor blockade and synaptic AMPA receptor deliveryNature Neuroscience, 2002
- Long-Term Potentiation--A Decade of Progress?Science, 1999
- Evidence for silent synapses: Implications for the expression of LTPNeuron, 1995
- Activation of postsynaptically silent synapses during pairing-induced LTP in CA1 region of hippocampal sliceNature, 1995
- Developmental switch in the expression of NMDA receptors occurs in vivo and in vitroNeuron, 1993