4.7 Article

Narp regulates homeostatic scaling of excitatory synapses on parvalbumin-expressing interneurons

Journal

NATURE NEUROSCIENCE
Volume 13, Issue 9, Pages 1090-U83

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NATURE PUBLISHING GROUP
DOI: 10.1038/nn.2621

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Funding

  1. US National Institutes of Health [PAR-02-059, NS 39156]

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Homeostatic synaptic scaling alters the strength of synapses to compensate for prolonged changes in network activity and involves both excitatory and inhibitory neurons. The immediate-early gene Narp (neuronal activity-regulated pentraxin) encodes a secreted synaptic protein that can bind to and induce clustering of AMPA receptors (AMPARs). We found that Narp prominently accumulated at excitatory synapses on parvalbumin-expressing interneurons (PV-INs). Increasing network activity resulted in a homeostatic increase of excitatory synaptic strength onto PV-INs that increased inhibitory drive and this response was absent in neurons cultured from Narp(-/-) mice. Activity-dependent changes in the strength of excitatory inputs on PV-INs in acute hippocampal slices were also dependent on Narp and Narp(-/-) mice had increased sensitivity to kindling-induced seizures. We propose that Narp recruits AMPARs at excitatory synapses onto PV-INs to rebalance network excitation/inhibition dynamics following episodes of increased circuit activity.

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