Impaired KCC2 Function Triggers Interictal-Like Activity Driven by Parvalbumin-Expressing Interneurons in the Isolated Subiculum In Vitro

Author:

Anstötz Max1,Fiske Michael Patrick1,Maccaferri Gianmaria1

Affiliation:

1. Department of Physiology, Feinberg School of Medicine, Northwestern University, Chicago, IL 60611, USA

Abstract

Abstract The decreased expression of the KCC2 membrane transporter in subicular neurons has been proposed to be a key epileptogenic event in temporal lobe epilepsy (TLE). Here, we have addressed this question in a reduced model in vitro and have studied the properties and mechanistic involvement of a major class of interneurons, that is, parvalbumin-expressing cells (PVs). When exposed to the KCC2 blocker VU0463271, mouse subicular slices generated hypersynchronous discharges that could be recorded electrophysiologically and visualized as clusters of co-active neurons with calcium imaging. The pharmacological profile of these events resembled interictal-like discharges in human epileptic tissue because of their dependence on GABAA and AMPA receptors. On average, PVs fired before pyramidal cells (PCs) and the area of co-active clusters was comparable to the individual axonal spread of PVs, suggesting their mechanistic involvement. Optogenetic experiments confirmed this hypothesis, as the flash-stimulation of PVs in the presence of VU0463271 initiated interictal-like discharges, whereas their optogenetic silencing suppressed network hyper-excitability. We conclude that reduced KCC2 activity in subicular networks in vitro is sufficient to induce interictal-like activity via altered GABAergic signaling from PVs without other epilepsy-related changes. This conclusion supports an epileptogenic role for impaired subicular KCC2 function during the progression of TLE.

Funder

National Institute of Neurological Disorders and Stroke

Northwestern University Center for Advanced Microscopy

National Cancer Institute

Publisher

Oxford University Press (OUP)

Subject

Cellular and Molecular Neuroscience,Cognitive Neuroscience

Reference64 articles.

1. Epileptiform activity in rat hippocampus strengthens excitatory synapses;Abegg;J Physiol,2004

2. Different mechanisms of ripple-like oscillations in the human epileptic subiculum;Alvarado-Rojas;Ann Neurol,2015

3. Developmental profile, morphology, and synaptic connectivity of Cajal-Retzius cells in the postnatal mouse hippocampus;Anstötz;Cereb Cortex,2016

4. Petilla terminology: nomenclature of features of GABAergic interneurons of the cerebral cortex;Ascoli;Nat Rev Neurosci,2008

5. Functional diversity of subicular principal cells during hippocampal ripples;Böhm;J Neurosci,2015

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