Microglial TNFα controls daily changes in synaptic GABAARs and sleep slow waves

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Abstract

Microglia sense the changes in their environment. How microglia actively translate these changes into suitable cues to adapt brain physiology is unknown. We reveal an activity-dependent regulation of cortical inhibitory synapses by microglia, driven by purinergic signaling acting on P2RX7 and mediated by microglia-derived TNFα. We demonstrate that sleep induces microgliadependent synaptic enrichment of GABAARs in a manner dependent on microglial TNFα and P2RX7. We further show that microglia-specific depletion of TNFα alters slow waves during NREM sleep and blunt memory consolidation in sleep-dependent learning tasks. Together, our results reveal that microglia orchestrate sleep-intrinsic plasticity of synaptic GABAARs, sculpt sleep slow waves, and support memory consolidation.

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Pinto, M. J., Bizien, L., Fabre, J. M. J., Ðukanović, N., Lepetz, V., Henderson, F., … Bessis, A. (2024). Microglial TNFα controls daily changes in synaptic GABAARs and sleep slow waves. Journal of Cell Biology, 223(7). https://doi.org/10.1083/jcb.202401041

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