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首页> 外文期刊>eLife journal >Ligand discrimination and gating in cyclic nucleotide-gated ion channels from apo and partial agonist-bound cryo-EM structures
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Ligand discrimination and gating in cyclic nucleotide-gated ion channels from apo and partial agonist-bound cryo-EM structures

机译:从载脂蛋白和部分激动剂结合的冷冻EM结构中,在环状核苷酸门控离子通道中的配体识别和门控

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摘要

Cyclic nucleotide-modulated channels have important roles in visual signal transduction and pacemaking. Binding of cyclic nucleotides (cAMP/cGMP) elicits diverse functional responses in different channels within the family despite their high sequence and structure homology. The molecular mechanisms responsible for ligand discrimination and gating are unknown due to lack of correspondence between structural information and functional states. Using single particle cryo-electron microscopy and single-channel recording, we assigned functional states to high-resolution structures of SthK, a prokaryotic cyclic nucleotide-gated channel. The structures for apo, cAMP-bound, and cGMP-bound SthK in lipid nanodiscs, correspond to no, moderate, and low single-channel activity, respectively, consistent with the observation that all structures are in resting, closed states. The similarity between apo and ligand-bound structures indicates that ligand-binding domains are strongly coupled to pore and SthK gates in an allosteric, concerted fashion. The different orientations of cAMP and cGMP in the ‘resting’ and ‘activated’ structures suggest a mechanism for ligand discrimination.
机译:环状核苷酸调节通道在视觉信号转导和起搏中起重要作用。尽管环状核苷酸(cAMP / cGMP)具有高度的序列和结构同源性,但它们在家族内的不同通道中仍会引发多种功能性反应。由于缺乏结构信息和功能状态之间的对应关系,负责配体识别和门控的分子机制是未知的。使用单粒子冷冻电子显微镜和单通道记录,我们将功能状态分配给SthK(原核环状核苷酸门控通道)的高分辨率结构。脂质纳米盘中与apo,cAMP结合和cGMP结合的SthK的结构分别对应于无,中和低单通道活性,这与观察到的所有结构均处于静止,闭合状态一致。载脂蛋白与配体结合的结构之间的相似性表明配体结合结构域以变构,一致的方式与孔和SthK门紧密结合。 cAMP和cGMP在“静止”和“激活”结构中的不同方向提示了配体识别的机制。

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