GABAA Receptor Autoantibodies Decrease GABAergic Synaptic Transmission in the Hippocampal CA3 Network.Open Access

Menke AF; Ismail FS; Dornmair K; Cerina M; Meuth SG; Melzer N

Research article (journal) | Peer reviewed

Abstract

Autoimmune encephalitis associated with antibodies (Abs) against α1, β3, and γ2 subunits of γ-aminobutyric acid receptor A (GABAAR) represents a severe form of encephalitis with refractory seizures and status epilepticus. Reduction in inhibitory GABAergic synaptic activity is linked to dysfunction of neuronal networks, hyperexcitability, and seizures. The aim in this study was to investigate the direct pathogenic effect of a recombinant GABAAR autoantibody (rAb-IP2), derived from the cerebrospinal fluid (CSF) of a patient with autoimmune GABAAR encephalitis, on hippocampal CA1 and CA3 networks. Acute brain slices from C57BL/6 mice were incubated with rAb-IP2. The spontaneous synaptic GABAergic transmission was measured using electrophysiological recordings in voltage-clamp mode. The GABAAR autoantibody rAb-IP2 reduced inhibitory postsynaptic signaling in the hippocampal CA1 pyramidal neurons with regard to the number of spontaneous inhibitory postsynaptic currents (sIPSCs) but did not affect their amplitude. In the hippocampal CA3 network, decreased number and amplitude of sIPSCs were detected, leading to decreased GABAergic synaptic transmission. Immunohistochemical staining confirmed the rAb-IP2 bound to hippocampal tissue. These findings suggest that GABAAR autoantibodies exert direct functional effects on both hippocampal CA1 and CA3 pyramidal neurons and play a crucial role in seizure generation in GABAAR autoimmune encephalitis.

Details about the publication

JournalInternational Journal of Molecular Sciences ( Int J Mol Sci)
Volume23
Issue7
StatusPublished
Release year2022 (28/03/2022)
Language in which the publication is writtenEnglish
DOI10.3390/ijms23073707
Link to the full texthttps://www.mdpi.com/1422-0067/23/7/3707
KeywordsAnimals; Autoantibodies; Encephalitis; Hashimoto Disease; Hippocampus; Humans; Mice; Mice, Inbred C57BL; Pyramidal Cells; Receptors, GABA-A; Seizures; Synaptic Transmission; gamma-Aminobutyric Acid

Authors from the University of Münster

Cerina, Manuela
Department for Neurology
Menke, Amelie Friederike
Medical Clinic of Internal Medicine D (Nephrology and Rheumatology) (Med D)