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Maturation of GABAergic Synaptic Transmission From Neocortical Parvalbumin Interneurons Involves N-methyl-D-aspartate Receptor Recruitment of Cav2.1 Channels.

Authors :
Singh, Mahendra
Sapkota, Kiran
Sakimura, Kenji
Kano, Masanobu
Cowell, Rita M
Overstreet-Wadiche, Linda
Hablitz, John J
Nakazawa, Kazu
Source :
Neuroscience. Mar2023, Vol. 513, p38-53. 16p.
Publication Year :
2023

Abstract

[Display omitted] • Grin1 deletion in prospective parvalbumin interneurons reduces unitary GABA release. • Grin1 deletion in parvalbumin neurons impairs membrane properties and excitability. • No effect of Cav2.1 channel agonist on GABA release from Grin1 -deleted neurons. • Cav2.1-haploinsufficient parvalbumin neurons produce a similar GABA release deficit. • Grin1 deletion using parvalbumin promoter causes generally normal GABA release. N -methyl-D-aspartate receptor (NMDAR) hypofunction during brain development is likely to contribute to the manifestation of schizophrenia (SCZ) in young adulthood. The cellular targets of NMDAR hypofunction appear to be at least in part corticolimbic fast-spiking (FS) interneurons. However, functional alterations in parvalbumin (PV)-positive FS interneurons following NMDAR hypofunction are poorly understood. Paired patch-clamp recordings from murine cortical PV interneurons and pyramidal neurons revealed that genetic deletion of NMDAR subunit Grin1 in prospective PV interneurons before the second postnatal week impaired evoked- and synchronized-GABA release. Whereas intrinsic excitability and spiking characteristics were also disturbed by Grin1 deletion, neither restoring their excitability by K+ channel blockade nor increasing extracellular Ca2+ rescued the GABA release. GABA release was also insensitive to the Cav2.1 channel antagonist ω-agatoxin IVA. Heterozygous deletion of Cacna1a gene (encoding Cav2.1) in PV interneurons produced a similar GABA release phenotype as the Grin1 mutants. Treatment with the Cav2.1/2.2 channel agonist GV-58 augmented somatic Ca2+ currents and GABA release in Cacna1a -haploinsufficient PV interneurons, but failed to enhance GABA release in the Grin1 -deleted PV interneurons. Taken together, our results suggest that Grin1 deletion in prospective PV interneurons impairs proper maturation of membrane excitability and Cav2.1-recruited evoked GABA release. This may increase synaptic excitatory/inhibitory ratio in principal neurons, contributing to the emergence of SCZ-like phenotypes. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
03064522
Volume :
513
Database :
Academic Search Index
Journal :
Neuroscience
Publication Type :
Academic Journal
Accession number :
162028566
Full Text :
https://doi.org/10.1016/j.neuroscience.2023.01.007