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哺乳动物冷激活通道TRPM8上两种激动剂类型的定义。

Definition of two agonist types at the mammalian cold-activated channel TRPM8.

作者信息

Janssens Annelies, Gees Maarten, Toth Balazs Istvan, Ghosh Debapriya, Mulier Marie, Vennekens Rudi, Vriens Joris, Talavera Karel, Voets Thomas

机构信息

Laboratory of Ion Channel Research and TRP channel Research Platform Leuven, Department of Cellular and Molecular Medicine, University of Leuven, Leuven, Belgium.

Laboratory of Experimental Gynaecology, University of Leuven, Leuven, Belgium.

出版信息

Elife. 2016 Jul 23;5:e17240. doi: 10.7554/eLife.17240.

Abstract

Various TRP channels act as polymodal sensors of thermal and chemical stimuli, but the mechanisms whereby chemical ligands impact on TRP channel gating are poorly understood. Here we show that AITC (allyl isothiocyanate; mustard oil) and menthol represent two distinct types of ligands at the mammalian cold sensor TRPM8. Kinetic analysis of channel gating revealed that AITC acts by destabilizing the closed channel, whereas menthol stabilizes the open channel, relative to the transition state. Based on these differences, we classify agonists as either type I (menthol-like) or type II (AITC-like), and provide a kinetic model that faithfully reproduces their differential effects. We further demonstrate that type I and type II agonists have a distinct impact on TRPM8 currents and TRPM8-mediated calcium signals in excitable cells. These findings provide a theoretical framework for understanding the differential actions of TRP channel ligands, with important ramifications for TRP channel structure-function analysis and pharmacology.

摘要

多种瞬时受体电位(TRP)通道可作为热刺激和化学刺激的多模态传感器,但化学配体影响TRP通道门控的机制仍知之甚少。在此,我们表明异硫氰酸烯丙酯(AITC;芥子油)和薄荷醇是哺乳动物冷感受器TRPM8的两种不同类型的配体。通道门控的动力学分析表明,相对于过渡态,AITC通过使关闭的通道不稳定而起作用,而薄荷醇则使开放的通道稳定。基于这些差异,我们将激动剂分为I型(薄荷醇样)或II型(AITC样),并提供了一个能如实再现其不同效应的动力学模型。我们进一步证明,I型和II型激动剂对可兴奋细胞中的TRPM8电流和TRPM8介导的钙信号有不同的影响。这些发现为理解TRP通道配体的不同作用提供了一个理论框架,对TRP通道的结构-功能分析和药理学具有重要意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/249b/4985286/b3be71f45c8f/elife-17240-fig1.jpg

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