IFIBIO HOUSSAY   25014
INSTITUTO DE FISIOLOGIA Y BIOFISICA BERNARDO HOUSSAY
Unidad Ejecutora - UE
artículos
Título:
Presynaptic effects of NMDA receptors enhance parvalbumin cell-mediated inhibition of pyramidal cells in mouse prefrontal cortex
Autor/es:
PAFUNDO, DIEGO E.; GONZALEZ BURGOS, GUILLERMO; LEWIS, DAVID A.; MIYAMAE, TAKEAKI
Revista:
BIOLOGICAL PSYCHIATRY
Editorial:
ELSEVIER SCIENCE INC
Referencias:
Año: 2018 vol. 84 p. 460 - 470
ISSN:
0006-3223
Resumen:
Background: Testing hypotheses regarding the role of N-methyl-D-aspartate receptor (NMDAR) hypofunction in schizophrenia requires understanding the mechanisms of NMDAR regulation of prefrontal cortex (PFC) circuit function. NMDAR antagonists are thought to produce pyramidal cell (PC) disinhibition. However, inhibitory parvalbumin-positive basket cells (PVBCs) have modest NMDAR-mediated excitatory drive, and thus are unlikely to participate in NMDAR antagonist-mediated disinhibition. Interestingly, recent studies demonstrated that presynaptic NMDARs enhance transmitter release at central synapses. Thus, if presynaptic NMDARs enhance GABA release at PVBC-to-PC synapses, they could participate in NMDAR dependent PC disinhibition. Here, we examined if presynaptic NMDAR effects could modulate GABA release at PVBC-to-BC synapses in mouse PFC.Methods: Using whole-cell recordings from synaptically-connected pairs in mouse PFC, we determined if NMDA or NMDAR antagonist application affects PVBC-to-PC inhibition in a manner consistent with a presynaptic mechanism.Results: NMDAR activation enhanced by ~40% the synaptic current at PVBC-to-PC pairs. This effect was consistent with a presynaptic mechanism, since it was 1) observed with postsynaptic NMDARs blocked by intracellular MK801, 2) associated with lower rate of transmission failures and higher transmitter release probability, and 3) blocked by intracellular MK801 in the PVBC. NMDAR antagonist application did not affect the synaptic currents in PVBC-to-PC pairs, but reduced the inhibitory currents elicited in PCs with simultaneous glutamate release by extracellular stimulation.Conclusions: We demonstrate that NMDAR activation enhances PVBC-to-PC inhibition in a manner consistent with presynaptic mechanisms, and suggest that the functional impact of this presynaptic effect depends on the activity state of the PFC network.