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Activity-dependent inhibitory synapse remodeling through gephyrin phosphorylation.

Proc Natl Acad Sci U S A.. 2014-12;  112(1):E65-72
Flores CE, Nikonenko I, Mendez P, Fritschy JM, Tyagarajan SK, Muller D. Departement des Neurosciences Fondamentales, Faculte de Medecine, Centre Medical Universitaire, Universite de Geneve, 1211 Geneve 4, Switzerland.
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Abstract

Maintaining a proper balance between excitation and inhibition is essential for the functioning of neuronal networks. However, little is known about the mechanisms through which excitatory activity can affect inhibitory synapse plasticity. Here we used tagged gephyrin, one of the main scaffolding proteins of the postsynaptic density at GABAergic synapses, to monitor the activity-dependent adaptation of perisomatic inhibitory synapses over prolonged periods of time in hippocampal slice cultures. We find that learning-related activity patterns known to induce N-methyl-d-aspartate (NMDA) receptor-dependent long-term potentiation and transient optogenetic activation of single neurons induce within hours a robust in... More

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