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P2X受体的分子药理学:探索结构生物学揭示的可成药结构域

Molecular Pharmacology of P2X Receptors: Exploring Druggable Domains Revealed by Structural Biology.

作者信息

Oken Adam C, Krishnamurthy Ipsita, Savage Jonathan C, Lisi Nicolas E, Godsey Michael H, Mansoor Steven E

机构信息

Department of Chemical Physiology and Biochemistry, Oregon Health & Science University, Portland, OR, United States.

Knight Cardiovascular Institute, Oregon Health & Science University, Portland, OR, United States.

出版信息

Front Pharmacol. 2022 Jun 17;13:925880. doi: 10.3389/fphar.2022.925880. eCollection 2022.

Abstract

Extracellular ATP is a critical signaling molecule that is found in a wide range of concentrations across cellular environments. The family of nonselective cation channels that sense extracellular ATP, termed P2X receptors (P2XRs), is composed of seven subtypes (P2X-P2X) that assemble as functional homotrimeric and heterotrimeric ion channels. Each P2XR is activated by a distinct concentration of extracellular ATP, spanning from high nanomolar to low millimolar. P2XRs are implicated in a variety of physiological and pathophysiological processes in the cardiovascular, immune, and central nervous systems, corresponding to the spatiotemporal expression, regulation, and activation of each subtype. The therapeutic potential of P2XRs is an emerging area of research in which structural biology has seemingly exceeded medicinal chemistry, as there are several published P2XR structures but currently no FDA-approved drugs targeting these ion channels. Cryogenic electron microscopy is ideally suited to facilitate structure-based drug design for P2XRs by revealing and characterizing novel ligand-binding sites. This review covers structural elements in P2XRs including the extracellular orthosteric ATP-binding site, extracellular allosteric modulator sites, channel pore, and cytoplasmic substructures, with an emphasis on potential therapeutic ligand development.

摘要

细胞外ATP是一种关键的信号分子,在各种细胞环境中都能发现其浓度范围很广。感知细胞外ATP的非选择性阳离子通道家族,称为P2X受体(P2XRs),由七个亚型(P2X1 - P2X7)组成,它们组装成功能性的同三聚体和异三聚体离子通道。每个P2XR都由不同浓度的细胞外ATP激活,范围从高纳摩尔到低毫摩尔。P2XRs参与心血管、免疫和中枢神经系统的多种生理和病理生理过程,这与每个亚型的时空表达、调节和激活相对应。P2XRs的治疗潜力是一个新兴的研究领域,在这个领域中,结构生物学似乎已经超越了药物化学,因为已经有几个已发表的P2XR结构,但目前尚无FDA批准的针对这些离子通道的药物。低温电子显微镜非常适合通过揭示和表征新的配体结合位点来促进基于结构的P2XR药物设计。本综述涵盖了P2XRs中的结构元件,包括细胞外正构ATP结合位点、细胞外变构调节剂位点、通道孔和细胞质亚结构,重点是潜在治疗性配体的开发。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5a9f/9248971/05408df7427a/fphar-13-925880-g001.jpg

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