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Regulation of a pentameric ligand-gated ion channel by a semiconserved cationic lipid-binding site.
Sridhar, Akshay; Lummis, Sarah C R; Pasini, Diletta; Mehregan, Aujan; Brams, Marijke; Kambara, Kumiko; Bertrand, Daniel; Lindahl, Erik; Howard, Rebecca J; Ulens, Chris.
Affiliation
  • Sridhar A; Department of Applied Physics, Science for Life Laboratory, KTH Royal Institute of Technology, Solna, Sweden.
  • Lummis SCR; Department of Biochemistry, University of Cambridge, Cambridge, United Kingdom.
  • Pasini D; Laboratory of Structural Neurobiology, Department of Cellular and Molecular Medicine, Faculty of Medicine, KU Leuven, Leuven, Belgium.
  • Mehregan A; Laboratory of Structural Neurobiology, Department of Cellular and Molecular Medicine, Faculty of Medicine, KU Leuven, Leuven, Belgium.
  • Brams M; Laboratory of Structural Neurobiology, Department of Cellular and Molecular Medicine, Faculty of Medicine, KU Leuven, Leuven, Belgium.
  • Kambara K; HiQScreen Sàrl, Geneva, Switzerland.
  • Bertrand D; HiQScreen Sàrl, Geneva, Switzerland.
  • Lindahl E; Department of Applied Physics, Science for Life Laboratory, KTH Royal Institute of Technology, Solna, Sweden; Department of Biochemistry and Biophysics, Science for Life Laboratory, Stockholm University, Solna, Sweden.
  • Howard RJ; Department of Biochemistry and Biophysics, Science for Life Laboratory, Stockholm University, Solna, Sweden. Electronic address: rebecca.howard@scilifelab.se.
  • Ulens C; Laboratory of Structural Neurobiology, Department of Cellular and Molecular Medicine, Faculty of Medicine, KU Leuven, Leuven, Belgium. Electronic address: chris.ulens@kuleuven.be.
J Biol Chem ; 297(2): 100899, 2021 08.
Article de En | MEDLINE | ID: mdl-34157288
ABSTRACT
Pentameric ligand-gated ion channels (pLGICs) are crucial mediators of electrochemical signal transduction in various organisms from bacteria to humans. Lipids play an important role in regulating pLGIC function, yet the structural bases for specific pLGIC-lipid interactions remain poorly understood. The bacterial channel ELIC recapitulates several properties of eukaryotic pLGICs, including activation by the neurotransmitter GABA and binding and modulation by lipids, offering a simplified model system for structure-function relationship studies. In this study, functional effects of noncanonical amino acid substitution of a potential lipid-interacting residue (W206) at the top of the M1-helix, combined with detergent interactions observed in recent X-ray structures, are consistent with this region being the location of a lipid-binding site on the outward face of the ELIC transmembrane domain. Coarse-grained and atomistic molecular dynamics simulations revealed preferential binding of lipids containing a positive charge, particularly involving interactions with residue W206, consistent with cation-π binding. Polar contacts from other regions of the protein, particularly M3 residue Q264, further support lipid binding via headgroup ester linkages. Aromatic residues were identified at analogous sites in a handful of eukaryotic family members, including the human GABAA receptor ε subunit, suggesting conservation of relevant interactions in other evolutionary branches. Further mutagenesis experiments indicated that mutations at this site in ε-containing GABAA receptors can change the apparent affinity of the agonist response to GABA, suggesting a potential role of this site in channel gating. In conclusion, this work details type-specific lipid interactions, which adds to our growing understanding of how lipids modulate pLGICs.
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Texte intégral: 1 Collection: 01-internacional Base de données: MEDLINE Sujet principal: Ovocytes / Cristallographie aux rayons X / Canaux ioniques régulés par des ligands / Lipides Limites: Animals / Humans Langue: En Journal: J Biol Chem Année: 2021 Type de document: Article Pays d'affiliation: Suède

Texte intégral: 1 Collection: 01-internacional Base de données: MEDLINE Sujet principal: Ovocytes / Cristallographie aux rayons X / Canaux ioniques régulés par des ligands / Lipides Limites: Animals / Humans Langue: En Journal: J Biol Chem Année: 2021 Type de document: Article Pays d'affiliation: Suède