Science for Life Laboratory & Swedish e-Science Research Center, Department of Applied Physics, KTH Royal Institute of Technology, Stockholm, Sweden.
Science for Life Laboratory, Department of Biochemistry and Biophysics, Stockholm University, Stockholm, Sweden.
Elife. 2024 Jan 30;12:RP86016. doi: 10.7554/eLife.86016.
Ligand-gated ion channels transduce electrochemical signals in neurons and other excitable cells. Aside from canonical ligands, phospholipids are thought to bind specifically to the transmembrane domain of several ion channels. However, structural details of such lipid contacts remain elusive, partly due to limited resolution of these regions in experimental structures. Here, we discovered multiple lipid interactions in the channel GLIC by integrating cryo-electron microscopy and large-scale molecular simulations. We identified 25 bound lipids in the GLIC closed state, a conformation where none, to our knowledge, were previously known. Three lipids were associated with each subunit in the inner leaflet, including a buried interaction disrupted in mutant simulations. In the outer leaflet, two intrasubunit sites were evident in both closed and open states, while a putative intersubunit site was preferred in open-state simulations. This work offers molecular details of GLIC-lipid contacts particularly in the ill-characterized closed state, testable hypotheses for state-dependent binding, and a multidisciplinary strategy for modeling protein-lipid interactions.
配体门控离子通道在神经元和其他可兴奋细胞中传递电化学信号。除了经典配体外,人们认为磷脂还能特异性地结合到几个离子通道的跨膜结构域。然而,由于实验结构中这些区域的分辨率有限,因此这种脂质接触的结构细节仍然难以捉摸。在这里,我们通过整合冷冻电子显微镜和大规模分子模拟,在通道 GLIC 中发现了多种脂质相互作用。我们在 GLIC 关闭构象中鉴定出 25 个结合脂质,在这种构象中,据我们所知,以前没有发现任何脂质。三个脂质与每个亚基的内小叶结合,包括在突变模拟中被破坏的一个埋藏的相互作用。在外小叶中,两个亚基内的结合位点在关闭和开放状态下都很明显,而在开放状态模拟中,一个假定的亚基间位点更为优先。这项工作提供了 GLIC-脂质相互作用的分子细节,特别是在特征不明显的关闭状态下,为状态依赖性结合提供了可测试的假设,并为蛋白质-脂质相互作用的建模提供了多学科策略。