Target intelligence / Profile preview

Glycine receptor subunit alpha-1 (GLRA1) (GLRA1)

Target
GLRA1
Molecular classification
Ion channel, Ligand-gated ion channel, Cys-loop receptor family, Receptor
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Overview

The Glycine receptor subunit alpha-1 (GLRA1) is a primary component of the glycine receptor (GlyR), a member of the Cys-loop family of ligand-gated ion channels (UniProt: P23415). It functions as a pentameric chloride-selective channel that mediates fast inhibitory neurotransmission, particularly in the spinal cord, brainstem, and retina (PubMed: 21501885). When glycine binds to the receptor, it induces a conformational change that opens the pore, allowing chloride ions to flow into the neuron, which hyperpolarizes the membrane and suppresses action potential firing (StatPearls: NBK539739). GLRA1 is essential for controlling motor functions and sensory perception; consequently, mutations in the GLRA1 gene are the leading cause of hereditary hyperekplexia, a disorder marked by excessive startle responses (NCBI Gene: 2741). The receptor is famously antagonized by strychnine, a potent convulsant, and is a target for various modulators including general anesthetics, ethanol, and the antiparasitic drug ivermectin (PubChem: CID 5280959). Current therapeutic research focuses on GLRA1 as a target for managing chronic pain and spasticity due to its role in spinal inhibitory circuits. Additionally, autoantibodies against GLRA1 are associated with rare neurological conditions like Stiff Person Syndrome and Progressive Encephalomyelitis with Rigidity and Myoclonus (PERM). Its structural similarity to other Cys-loop receptors makes it a model for studying ion channel gating and pharmacology.

Other names
Glycine receptor alpha 1GLRA1Glycine receptor 48 kDa subunitHKPX1STHE
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Mechanism of action

Binding of the agonist glycine to the extracellular interface of the alpha-1 subunits triggers a conformational transition that opens an integral chloride-selective ion pore. This results in an influx of chloride ions into the postsynaptic neuron, leading to membrane hyperpolarization and a subsequent increase in the threshold for action potential generation, thereby inhibiting neuronal activity (PubMed: 21501885).

03

Biological functions

Inhibitory neurotransmissionChloride ion transportSignal transductionRegulation of motor neuron excitabilitySensory processing
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Disease associations

Hyperekplexia (Startle disease)Neuropathic painStiff person syndromeProgressive encephalomyelitis with rigidity and myoclonusEpilepsy
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Safety considerations

Respiratory failureConvulsionsMotor coordination impairmentSedationOff-target effects on GABA-A receptors
06

Interacting drugs

Glycine

7 more in the full profile.

07

Biomarkers

GLRA1 gene mutationsAnti-glycine receptor alpha-1 antibodies

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