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首页> 外文期刊>Cell Reports >Structural Basis for a Bimodal Allosteric Mechanism of General Anesthetic Modulation in Pentameric Ligand-Gated Ion Channels
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Structural Basis for a Bimodal Allosteric Mechanism of General Anesthetic Modulation in Pentameric Ligand-Gated Ion Channels

机译:五聚体配体门控离子通道中的全身麻醉调节双峰变构机制的结构基础。

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Summary Ion channel modulation by general anesthetics is a vital pharmacological process with implications for receptor biophysics and drug development. Functional studies have implicated conserved sites of both potentiation and inhibition in pentameric ligand-gated ion channels, but a detailed structural mechanism for these bimodal effects is lacking. The prokaryotic model protein GLIC recapitulates anesthetic modulation of human ion channels, and it is accessible to structure determination in both apparent open and closed states. Here, we report ten X-ray structures and electrophysiological characterization of GLIC variants in the presence and absence of general anesthetics, including the surgical agent propofol. We show that general anesthetics can allosterically favor closed channels by binding in the pore or favor open channels via various subsites in the transmembrane domain. Our results support an integrated, multi-site mechanism for allosteric modulation, and they provide atomic details of both potentiation and inhibition by one of the most common general anesthetics.
机译:总结全身麻醉药对离子通道的调节是至关重要的药理过程,对受体生物物理学和药物开发具有重要意义。功能研究已经暗示了五聚体配体门控离子通道中保守和抑制位点的保守,但是缺乏这些双峰效应的详细结构机制。原核模型蛋白GLIC概括了人类离子通道的麻醉调节作用,并且可以在明显的打开和关闭状态下进行结构确定。在这里,我们报告在存在和不存在全身麻醉药(包括手术药物异丙酚)的情况下,十个X射线结构和GLIC变体的电生理特征。我们表明,全身麻醉药可以通过在孔中结合或通过跨膜结构域中的各种亚位有利于开放通道变构地倾向于封闭通道。我们的研究结果支持了变构调节的集成,多部位机制,并且它们提供了最常见的全身麻醉药之一的增强和抑制作用的原子细节。

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