Baenziger John E, Hénault Camille M, Therien J P Daniel, Sun Jiayin
Department of Biochemistry, Microbiology, and Immunology, University of Ottawa, 451 Smyth Rd, Ottawa, ON K1H 8M5, Canada.
Department of Biochemistry, Microbiology, and Immunology, University of Ottawa, 451 Smyth Rd, Ottawa, ON K1H 8M5, Canada.
Biochim Biophys Acta. 2015 Sep;1848(9):1806-17. doi: 10.1016/j.bbamem.2015.03.010. Epub 2015 Mar 16.
Membrane lipids are potent modulators of the nicotinic acetylcholine receptor (nAChR) from Torpedo. Lipids influence nAChR function by both conformational selection and kinetic mechanisms, stabilizing varying proportions of activatable versus non-activatable conformations, as well as influencing the transitions between these conformational states. Of note, some membranes stabilize an electrically silent uncoupled conformation that binds agonist but does not undergo agonist-induced conformational transitions. The uncoupled nAChR, however, does transition to activatable conformations in relatively thick lipid bilayers, such as those found in lipid rafts. In this review, we discuss current understanding of lipid-nAChR interactions in the context of increasingly available high resolution structural and functional data. These data highlight different sites of lipid action, including the lipid-exposed M4 transmembrane α-helix. Current evidence suggests that lipids alter nAChR function by modulating interactions between M4 and the adjacent transmembrane α-helices, M1 and M3. These interactions have also been implicated in both the folding and trafficking of nAChRs to the cell surface. We review current mechanistic understanding of lipid-nAChR interactions, and highlight potential biological roles for lipid-nAChR interactions in modulating the synaptic response. This article is part of a Special Issue entitled: Lipid-protein interactions.
膜脂是电鳐烟碱型乙酰胆碱受体(nAChR)的强效调节剂。脂类通过构象选择和动力学机制影响nAChR功能,稳定可激活构象与不可激活构象的不同比例,以及影响这些构象状态之间的转变。值得注意的是,一些膜稳定一种电沉默的非偶联构象,该构象结合激动剂但不经历激动剂诱导的构象转变。然而,非偶联的nAChR在相对较厚的脂双层中,如脂筏中发现的脂双层中,确实会转变为可激活的构象。在这篇综述中,我们在越来越多的高分辨率结构和功能数据的背景下,讨论了目前对脂类与nAChR相互作用的理解。这些数据突出了脂类作用的不同位点,包括暴露于脂类的M4跨膜α螺旋。目前的证据表明,脂类通过调节M4与相邻跨膜α螺旋M1和M3之间的相互作用来改变nAChR功能。这些相互作用也与nAChR折叠和转运到细胞表面有关。我们综述了目前对脂类与nAChR相互作用的机制理解,并强调了脂类与nAChR相互作用在调节突触反应中的潜在生物学作用。本文是名为“脂类-蛋白质相互作用”的特刊的一部分。