Menny Anaïs, Lefebvre Solène N, Schmidpeter Philipp Am, Drège Emmanuelle, Fourati Zaineb, Delarue Marc, Edelstein Stuart J, Nimigean Crina M, Joseph Delphine, Corringer Pierre-Jean
Channel Receptors Unit, Institut Pasteur, Paris, France.
Unité Mixte de Recherche 3571, Centre National de la Recherche Scientifique, Paris, France.
Elife. 2017 Mar 15;6:e23955. doi: 10.7554/eLife.23955.
Pentameric ligand-gated ion channels (pLGICs) mediate fast chemical signaling through global allosteric transitions. Despite the existence of several high-resolution structures of pLGICs, their dynamical properties remain elusive. Using the proton-gated channel GLIC, we engineered multiple fluorescent reporters, each incorporating a bimane and a tryptophan/tyrosine, whose close distance causes fluorescence quenching. We show that proton application causes a global compaction of the extracellular subunit interface, coupled to an outward motion of the M2-M3 loop near the channel gate. These movements are highly similar in lipid vesicles and detergent micelles. These reorganizations are essentially completed within 2 ms and occur without channel opening at low proton concentration, indicating that they report a pre-active intermediate state in the transition pathway toward activation. This provides a template to investigate the gating of eukaryotic neurotransmitter receptors, for which intermediate states also participate in activation.
五聚体配体门控离子通道(pLGICs)通过全局变构转变介导快速化学信号传导。尽管已经存在几种pLGICs的高分辨率结构,但其动态特性仍然难以捉摸。利用质子门控通道GLIC,我们设计了多个荧光报告分子,每个报告分子都包含一个双硫腙和一个色氨酸/酪氨酸,它们之间的近距离会导致荧光猝灭。我们发现,施加质子会导致细胞外亚基界面发生全局压缩,同时伴随着通道门附近M2-M3环的向外移动。这些运动在脂质囊泡和去污剂胶束中高度相似。这些重组在2毫秒内基本完成,并且在低质子浓度下不伴随着通道开放发生,这表明它们报告了向激活转变途径中的一个预激活中间状态。这为研究真核神经递质受体的门控提供了一个模板,对于真核神经递质受体而言,中间状态也参与激活过程。