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Gamma-aminobutyric acid type A receptor α4βδ (GABAA α4βδ receptor) (GABAA α4βδ receptor)

Target
GABAA α4βδ receptor
Molecular classification
Ligand-gated ion channel, Ion channel, Receptor, Cys-loop receptor superfamily
01

Overview

The **gamma-aminobutyric acid type A receptor α4βδ (GABAA α4βδ receptor)** is a subtype of the GABAA receptor family, assembled from α4, β (typically β2 or β3), and δ subunits. As part of the ligand-gated ion channel (Cys-loop) superfamily, it mediates rapid inhibitory neurotransmission by permitting chloride ion influx upon activation by the neurotransmitter GABA. In contrast to the more widely-studied synaptic GABAA receptors (α1β2γ2), the α4βδ subtype is most commonly expressed extrasynaptically, where it mediates a persistent “tonic” inhibition, responding to ambient extracellular concentrations of GABA rather than to phasic (synaptic) release[1][4]. These receptors show low sensitivity to benzodiazepines but are distinctly sensitive to neurosteroids and specific agonists like gaboxadol, making them a focus for targeted drug development in epilepsy, anxiety, sleep, and certain neuropsychiatric and metabolic disorders[2][4]. Dysfunction or altered expression of this receptor subtype has been linked to epilepsy, some forms of anxiety, and other CNS pathologies. Pharmacological targeting of these receptors holds therapeutic promise, but side effects may include sedation, cognitive disturbance, and in some cases (with high-potency agonists), respiratory depression[4].

Other names
GABA-A receptor α4βδ subtypeGABAA receptor containing α4, β, and δ subunitsExtrasynaptic GABAA receptor
02

Mechanism of action

Positive allosteric modulators: Enhance channel opening duration or frequency (e.g., neurosteroids, gaboxadol)\nAgonists: Directly activate the receptor (e.g., muscimol, gaboxadol)\nNegative modulators/antagonists: Inhibit channel function (e.g., certain neuroactive compounds in development)\nSome agents promote tonic inhibition by enhancing extrasynaptic receptor function

03

Biological functions

Inhibitory neurotransmissionSignal transductionRegulation of neuronal excitabilitySynaptic and extrasynaptic inhibition (notably “tonic” inhibition)Modulation of neuroendocrine and metabolic functions
04

Disease associations

EpilepsyAnxiety disordersNeurodevelopmental disordersInsomniaMood disordersSchizophreniaNeurodegenerative diseasesAlcohol dependenceOther CNS disorders
05

Safety considerations

SedationCognitive impairmentTolerance and dependencePotential for abuse (for agonist modulators like barbiturates, less so for δ-containing receptor modulators)Possible endocrine/metabolic effects (due to impact in pancreatic islet cells)Respiratory depression (at high doses of strong modulators)
06

Interacting drugs

Gaboxadol (THIP)

6 more in the full profile.

07

Biomarkers

δ subunit expression (increased or decreased in some brain regions in disease states)Altered tonic current in neurons (can correlate with receptor density/function in patient tissue or animal models)

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