| Literature DB >> 31591563 |
Camille M Hénault1, Cedric Govaerts2, Radovan Spurny3, Marijke Brams3, Argel Estrada-Mondragon4, Joseph Lynch4, Daniel Bertrand5, Els Pardon6,7, Genevieve L Evans3, Kristen Woods8,9, Benjamin W Elberson10, Luis G Cuello10, Grace Brannigan8,9, Hugues Nury11, Jan Steyaert6,7, John E Baenziger12, Chris Ulens13.
Abstract
Phospholipids are key components of cellular membranes and are emerging as important functional regulators of different membrane proteins, including pentameric ligand-gated ion channels (pLGICs). Here, we take advantage of the prokaryote channel ELIC (Erwinia ligand-gated ion channel) as a model to understand the determinants of phospholipid interactions in this family of receptors. A high-resolution structure of ELIC in a lipid-bound state reveals a phospholipid site at the lower half of pore-forming transmembrane helices M1 and M4 and at a nearby site for neurosteroids, cholesterol or general anesthetics. This site is shaped by an M4-helix kink and a Trp-Arg-Pro triad that is highly conserved in eukaryote GABAA/C and glycine receptors. A combined approach reveals that M4 is intrinsically flexible and that M4 deletions or disruptions of the lipid-binding site accelerate desensitization in ELIC, suggesting that lipid interactions shape the agonist response. Our data offer a structural context for understanding lipid modulation in pLGICs.Entities:
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Year: 2019 PMID: 31591563 PMCID: PMC8423587 DOI: 10.1038/s41589-019-0369-4
Source DB: PubMed Journal: Nat Chem Biol ISSN: 1552-4450 Impact factor: 15.040