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© Marie Prévost, Institut Pasteur
Image of a portion of a Xenopus oocyte expressing a channel receptor.
Publication : Nature communications

Illumination of a progressive allosteric mechanism mediating the glycine receptor activation.

Scientific Fields
Diseases
Organisms
Applications
Technique

Published in Nature communications - 13 Feb 2023

Shi S, Lefebvre SN, Peverini L, Cerdan AH, Milán Rodríguez P, Gielen M, Changeux JP, Cecchini M, Corringer PJ

Link to Pubmed [PMID] – 36781912

Link to DOI – 10.1038/s41467-023-36471-7

Nat Commun 2023 Feb; 14(1): 795

Pentameric ligand-gated ion channel mediate signal transduction at chemical synapses by transiting between resting and open states upon neurotransmitter binding. Here, we investigate the gating mechanism of the glycine receptor fluorescently labeled at the extracellular-transmembrane interface by voltage-clamp fluorometry (VCF). Fluorescence reports a glycine-elicited conformational change that precedes pore opening. Low concentrations of glycine, partial agonists or specific mixtures of glycine and strychnine trigger the full fluorescence signal while weakly activating the channel. Molecular dynamic simulations of a partial agonist bound-closed Cryo-EM structure show a highly dynamic nature: a marked structural flexibility at both the extracellular-transmembrane interface and the orthosteric site, generating docking properties that recapitulate VCF data. This work illuminates a progressive propagating transition towards channel opening, highlighting structural plasticity within the mechanism of action of allosteric effectors.