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Hetero-pentamerization determines mobility and conductance of Glycine receptor α3 splice variants

Veerle Lemmens, Bart Thevelein, Yana Vella,Svenja Kankowski, Julia Leonhard,Hideaki Mizuno,Susana Rocha,Bert Brône,Jochen C. Meier, Jelle Hendrix

Cellular and Molecular Life Sciences(2022)

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摘要
Glycine receptors (GlyRs) are ligand-gated pentameric chloride channels in the central nervous system. GlyR-α3 is a possible target for chronic pain treatment and temporal lobe epilepsy. Alternative splicing into K or L variants determines the subcellular fate and function of GlyR-α3, yet it remains to be shown whether its different splice variants can functionally co-assemble, and what the properties of such heteropentamers would be. Here, we subjected GlyR-α3 to a combined fluorescence microscopy and electrophysiology analysis. We employ masked Pearson’s and dual-color spatiotemporal correlation analysis to prove that GlyR-α3 splice variants heteropentamerize, adopting the mobility of the K variant. Fluorescence-based single-subunit counting experiments revealed a variable and concentration ratio dependent hetero-stoichiometry. Via cell-attached single-channel electrophysiology we show that heteropentamers exhibit currents in between those of K and L variants. Our data are compatible with a model where α3 heteropentamerization fine-tunes mobility and activity of GlyR-α3 channels, which is important to understand and tackle α3 related diseases.
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关键词
Glycine receptors,Ligand gated ion channels,Image correlation spectroscopy,Single-molecule fluorescence,Pearson’s correlation coefficient,Subunit counting,Protein co-assembly,Diffusion,Stoichiometry,Electrophysiology,Patch clamp
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