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Subunit Stoichiometry and Arrangement in a Heteromeric Glutamate-gated Chloride Channel

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Specialty Science
Date 2016 Jan 22
PMID 26792524
Citations 10
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Abstract

The invertebrate glutamate-gated chloride-selective receptors (GluClRs) are ion channels serving as targets for ivermectin (IVM), a broad-spectrum anthelmintic drug used to treat human parasitic diseases like river blindness and lymphatic filariasis. The native GluClR is a heteropentamer consisting of α and β subunit types, with yet unknown subunit stoichiometry and arrangement. Based on the recent crystal structure of a homomeric GluClαR, we introduced mutations at the intersubunit interfaces where Glu (the neurotransmitter) binds. By electrophysiological characterization of these mutants, we found heteromeric assemblies with two equivalent Glu-binding sites at β/α intersubunit interfaces, where the GluClβ and GluClα subunits, respectively, contribute the "principal" and "complementary" components of the putative Glu-binding pockets. We identified a mutation in the IVM-binding site (far away from the Glu-binding sites), which significantly increased the sensitivity of the heteromeric mutant receptor to both Glu and IVM, and improved the receptor subunits' cooperativity. We further characterized this heteromeric GluClR mutant as a receptor having a third Glu-binding site at an α/α intersubunit interface. Altogether, our data unveil heteromeric GluClR assemblies having three α and two β subunits arranged in a counterclockwise β-α-β-α-α fashion, as viewed from the extracellular side, with either two or three Glu-binding site interfaces.

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References
1.
Etter A, Cully D, Schaeffer J, Liu K, Arena J . An amino acid substitution in the pore region of a glutamate-gated chloride channel enables the coupling of ligand binding to channel gating. J Biol Chem. 1996; 271(27):16035-9. DOI: 10.1074/jbc.271.27.16035. View

2.
Kiefer F, Arnold K, Kunzli M, Bordoli L, Schwede T . The SWISS-MODEL Repository and associated resources. Nucleic Acids Res. 2008; 37(Database issue):D387-92. PMC: 2686475. DOI: 10.1093/nar/gkn750. View

3.
Collier M, Hume J . Unitary chloride channels activated by protein kinase C in guinea pig ventricular myocytes. Circ Res. 1995; 76(2):317-24. DOI: 10.1161/01.res.76.2.317. View

4.
Perkins D, Trudell J, Crawford D, Asatryan L, Alkana R, Davies D . Loop 2 structure in glycine and GABA(A) receptors plays a key role in determining ethanol sensitivity. J Biol Chem. 2009; 284(40):27304-14. PMC: 2785658. DOI: 10.1074/jbc.M109.023598. View

5.
Harpsoe K, Ahring P, Christensen J, Jensen M, Peters D, Balle T . Unraveling the high- and low-sensitivity agonist responses of nicotinic acetylcholine receptors. J Neurosci. 2011; 31(30):10759-66. PMC: 6623092. DOI: 10.1523/JNEUROSCI.1509-11.2011. View