Nanoscale co-organization and coactivation of AMPAR, NMDAR, and mGluR at excitatory synapses.
basic_science · Level V
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- Record sourced from PubMed, PMID 32513712.
- Also identified by DOI 10.1073/pnas.1922563117 and PMC identifier 7321977.
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Abstract
The nanoscale co-organization of neurotransmitter receptors facing presynaptic release sites is a fundamental determinant of their coactivation and of synaptic physiology. At excitatory synapses, how endogenous AMPARs, NMDARs, and mGluRs are co-organized inside the synapse and their respective activation during glutamate release are still unclear. Combining single-molecule superresolution microscopy, electrophysiology, and modeling, we determined the average quantity of each glutamate receptor type, their nanoscale organization, and their respective activation. We observed that NMDARs form a unique cluster mainly at the center of the PSD, while AMPARs segregate in clusters surrounding the NMDARs. mGluR5 presents a different organization and is homogenously dispersed at the synaptic surface. From these results, we build a model predicting the synaptic transmission properties of a unitary synapse, allowing better understanding of synaptic physiology.
Medical subject headings
- Models, Neurological
- Neurons
- Receptor, Metabotropic Glutamate 5
- Receptors, AMPA
- Receptors, N-Methyl-D-Aspartate
- Synaptic Transmission