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P2X7 receptors exhibit at least three modes of allosteric antagonism

机译:P2X7 受体表现出至少三种变构拮抗模式

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摘要

P2X receptors are trimeric ion channels activated by adenosine triphosphate (ATP) that contribute to pathophysiological processes ranging from asthma to neuropathic pain and neurodegeneration. A number of small-molecule antagonists have been identified for these important pharmaceutical targets. However, the molecular pharmacology of P2X receptors is poorly understood because of the chemically disparate nature of antagonists and their differential actions on the seven constituent subtypes. Here, we report high-resolution cryo–electron microscopy structures of the homomeric rat P2X7 receptor bound to five previously known small-molecule allosteric antagonists and a sixth antagonist that we identify. Our structural, biophysical, and electrophysiological data define the molecular determinants of allosteric antagonism in this pharmacologically relevant receptor, revealing three distinct classes of antagonists that we call shallow, deep, and starfish. Starfish binders, exemplified by the previously unidentified antagonist methyl blue, represent a unique class of inhibitors with distinct functional properties that could be exploited to develop potent P2X7 ligands with substantial clinical impact.
机译:P2X 受体是由三磷酸腺苷 (ATP) 激活的三聚体离子通道,有助于从哮喘到神经性疼痛和神经退行性变的病理生理过程。已经为这些重要的药物靶点确定了许多小分子拮抗剂。然而,由于拮抗剂的化学性质不同以及它们对 7 种组成亚型的不同作用,人们对 P2X 受体的分子药理学知之甚少。在这里,我们报告了同聚大鼠 P2X7 受体的高分辨率冷冻电子显微镜结构,该受体与我们鉴定的五种先前已知的小分子变构拮抗剂和第六种拮抗剂结合。我们的结构、生物物理和电生理学数据定义了这种药理学相关受体中变构拮抗作用的分子决定因素,揭示了我们称为浅、深和海星的三类不同类别的拮抗剂。海星结合剂,以以前未鉴定的拮抗剂甲基蓝为例,代表了一类独特的抑制剂,具有不同的功能特性,可用于开发具有重大临床影响的强效 P2X7 配体。

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