Publication | Closed Access
Dual Requirement for Gephyrin in Glycine Receptor Clustering and Molybdoenzyme Activity
437
Citations
25
References
1998
Year
Synaptic TransmissionMolecular BiologyChemical BiologySynaptic SignalingDual RequirementMolybdoenzyme ActivityGlycine Receptor ClusteringNeurochemistryGlycosylationMolecular PhysiologyMolecular NeuroscienceBiochemistryG Protein-coupled ReceptorReceptor (Biochemistry)Mechanism Of ActionPharmacologyGlycine ReceptorsSynaptic PlasticityFunctional SelectivityNatural SciencesGephyrin FunctionNeuroscienceMolecular NeurobiologyMedicineDrug Discovery
Glycine receptors are anchored at inhibitory chemical synapses by a cytoplasmic protein, gephyrin. Molecular cloning revealed the similarity of gephyrin to prokaryotic and invertebrate proteins essential for synthesizing a cofactor required for activity of molybdoenzymes. Gene targeting in mice showed that gephyrin is required both for synaptic clustering of glycine receptors in spinal cord and for molybdoenzyme activity in nonneural tissues. The mutant phenotype resembled that of humans with hereditary molybdenum cofactor deficiency and hyperekplexia (a failure of inhibitory neurotransmission), suggesting that gephyrin function may be impaired in both diseases.
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