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薄荷醇受体TRPM8是环境寒冷的主要探测器。

The menthol receptor TRPM8 is the principal detector of environmental cold.

作者信息

Bautista Diana M, Siemens Jan, Glazer Joshua M, Tsuruda Pamela R, Basbaum Allan I, Stucky Cheryl L, Jordt Sven-Eric, Julius David

机构信息

Department of Physiology, University of California, San Francisco, California 94143, USA.

出版信息

Nature. 2007 Jul 12;448(7150):204-8. doi: 10.1038/nature05910. Epub 2007 May 30.

Abstract

Sensory nerve fibres can detect changes in temperature over a remarkably wide range, a process that has been proposed to involve direct activation of thermosensitive excitatory transient receptor potential (TRP) ion channels. One such channel--TRP melastatin 8 (TRPM8) or cold and menthol receptor 1 (CMR1)--is activated by chemical cooling agents (such as menthol) or when ambient temperatures drop below approximately 26 degrees C, suggesting that it mediates the detection of cold thermal stimuli by primary afferent sensory neurons. However, some studies have questioned the contribution of TRPM8 to cold detection or proposed that other excitatory or inhibitory channels are more critical to this sensory modality in vivo. Here we show that cultured sensory neurons and intact sensory nerve fibres from TRPM8-deficient mice exhibit profoundly diminished responses to cold. These animals also show clear behavioural deficits in their ability to discriminate between cold and warm surfaces, or to respond to evaporative cooling. At the same time, TRPM8 mutant mice are not completely insensitive to cold as they avoid contact with surfaces below 10 degrees C, albeit with reduced efficiency. Thus, our findings demonstrate an essential and predominant role for TRPM8 in thermosensation over a wide range of cold temperatures, validating the hypothesis that TRP channels are the principal sensors of thermal stimuli in the peripheral nervous system.

摘要

感觉神经纤维能够在非常广泛的温度范围内检测温度变化,这一过程被认为涉及热敏性兴奋性瞬时受体电位(TRP)离子通道的直接激活。其中一种这样的通道——TRP褪黑素8(TRPM8)或冷觉与薄荷醇受体1(CMR1)——可被化学冷却剂(如薄荷醇)激活,或者当环境温度降至约26摄氏度以下时被激活,这表明它介导了初级传入感觉神经元对冷觉热刺激的检测。然而,一些研究对TRPM8在冷觉检测中的作用提出了质疑,或者认为其他兴奋性或抑制性通道在体内对这种感觉模式更为关键。在这里,我们表明,来自TRPM8基因缺陷小鼠的培养感觉神经元和完整感觉神经纤维对冷的反应显著减弱。这些动物在区分冷和暖表面或对蒸发冷却做出反应的能力方面也表现出明显的行为缺陷。同时,TRPM8突变小鼠并非对冷完全不敏感,因为它们会避免接触温度低于10摄氏度的表面,尽管效率有所降低。因此,我们的研究结果证明了TRPM8在广泛的冷温度范围内的温度感觉中起着至关重要且占主导地位的作用,验证了TRP通道是外周神经系统中热刺激的主要传感器这一假设。

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