Dalal Vikram, Tan Brandon K, Xu Hanrui, Cheng Wayland W L
Department of Anesthesiology, Washington University School of Medicine, St Louis, United States.
Elife. 2025 Jul 16;14:RP106728. doi: 10.7554/eLife.106728.
Detergents and lipid nanodiscs affect the cryo-EM structures of pentameric ligand-gated ion channels (pLGICs) including ELIC. To determine the structure of a pLGIC in a membrane environment that supports ion channel function, we performed single particle cryo-EM of ELIC in liposomes. ELIC activation and desensitization were confirmed in liposomes with a stopped-flow thallium flux assay. Using WT ELIC and a non-desensitizing mutant (ELIC5), we captured resting, activated, and desensitized structures at high resolution. In the desensitized structure, the ion conduction pore has a constriction at the 9' leucine of the pore-lining M2 helix, indicating that 9' is the desensitization gate in ELIC. The agonist-bound structures of ELIC in liposomes are distinct from those in nanodiscs. In general, the transmembrane domain is more loosely packed in liposomes compared to nanodiscs. It has been suggested that large nanodiscs are superior for supporting membrane protein function. However, ELIC localizes to the rim of large circularized nanodiscs, and structures of ELIC in large nanodiscs deviate from the liposome structures more than those in small nanodiscs. Using liposomes for cryo-EM structure determination of a pLGIC increases our confidence that the structures are snapshots of functional states.
去污剂和脂质纳米盘会影响包括ELIC在内的五聚体配体门控离子通道(pLGICs)的冷冻电镜结构。为了确定在支持离子通道功能的膜环境中pLGIC的结构,我们对脂质体中的ELIC进行了单颗粒冷冻电镜分析。通过停流铊通量测定法在脂质体中证实了ELIC的激活和脱敏。使用野生型ELIC和一种非脱敏突变体(ELIC5),我们以高分辨率捕获了静息、激活和脱敏状态的结构。在脱敏结构中,离子传导孔在孔内衬M2螺旋的9'亮氨酸处有一个收缩,表明9'是ELIC中的脱敏门。脂质体中ELIC的激动剂结合结构与纳米盘中的不同。一般来说,与纳米盘相比,跨膜结构域在脂质体中的堆积更为松散。有人提出,大的纳米盘更有利于支持膜蛋白功能。然而,ELIC定位于大的圆形化纳米盘的边缘,并且大纳米盘中ELIC的结构比小纳米盘中的结构更偏离脂质体结构。使用脂质体进行pLGIC的冷冻电镜结构测定增加了我们对这些结构是功能状态快照的信心。