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TRPM 亚家族内冷却剂结合口袋的保守性。

Conservation of the cooling agent binding pocket within the TRPM subfamily.

机构信息

Molecular Physiology and Biophysics Section, Porter Neuroscience Research Center, National Institute of Neurological Disorders and Stroke, National Institutes of Health, Bethesda, United States.

出版信息

Elife. 2024 Nov 1;13:RP99643. doi: 10.7554/eLife.99643.

Abstract

Transient receptor potential (TRP) channels are a large and diverse family of tetrameric cation-selective channels that are activated by many different types of stimuli, including noxious heat or cold, organic ligands such as vanilloids or cooling agents, or intracellular Ca. Structures available for all subtypes of TRP channels reveal that the transmembrane domains are closely related despite their unique sensitivity to activating stimuli. Here, we use computational and electrophysiological approaches to explore the conservation of the cooling agent binding pocket identified within the S1-S4 domain of the Melastatin subfamily member TRPM8, the mammalian sensor of noxious cold, with other TRPM channel subtypes. We find that a subset of TRPM channels, including TRPM2, TRPM4, and TRPM5, contain pockets very similar to the cooling agent binding pocket in TRPM8. We then show how the cooling agent icilin modulates activation of mouse TRPM4 to intracellular Ca, enhancing the sensitivity of the channel to Ca and diminishing outward-rectification to promote opening at negative voltages. Mutations known to promote or diminish activation of TRPM8 by cooling agents similarly alter activation of TRPM4 by icilin, suggesting that icilin binds to the cooling agent binding pocket to promote opening of the channel. These findings demonstrate that TRPM4 and TRPM8 channels share related ligand binding pockets that are allosterically coupled to opening of the pore.

摘要

瞬时受体电位 (TRP) 通道是一个由四个亚基组成的阳离子选择性通道大家族,可被多种不同类型的刺激激活,包括有害的热或冷、香草酸或冷却剂等有机配体或细胞内 Ca。所有 TRP 通道亚型的结构都表明,尽管它们对激活刺激的敏感性不同,但跨膜结构域密切相关。在这里,我们使用计算和电生理方法来探索在哺乳动物冷感受器 Melastatin 亚家族成员 TRPM8 的 S1-S4 结构域中发现的冷却剂结合口袋的保守性,与其他 TRPM 通道亚型进行比较。我们发现一组 TRPM 通道,包括 TRPM2、TRPM4 和 TRPM5,包含与 TRPM8 中冷却剂结合口袋非常相似的口袋。然后,我们展示了冷却剂 icilin 如何调节小鼠 TRPM4 对细胞内 Ca 的激活,提高通道对 Ca 的敏感性并减小外向整流,以促进在负电压下打开。已知促进或减弱冷却剂激活 TRPM8 的突变同样改变了 icilin 对 TRPM4 的激活,这表明 icilin 结合到冷却剂结合口袋以促进通道的打开。这些发现表明,TRPM4 和 TRPM8 通道共享相关的配体结合口袋,这些口袋与孔的打开是别构偶联的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/caff/11530238/5583ebfcb079/elife-99643-fig1.jpg

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