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热激活的瞬时受体电位通道:用于温度检测的分子传感器。

Thermally activated TRP channels: molecular sensors for temperature detection.

作者信息

Castillo Karen, Diaz-Franulic Ignacio, Canan Jonathan, Gonzalez-Nilo Fernando, Latorre Ramon

机构信息

Facultad de Ciencias, Centro Interdisciplinario de Neurociencia de Valparaíso, Universidad de Valparaíso, Valparaíso 2366103, Chile. www.cinv.cl.

出版信息

Phys Biol. 2018 Jan 24;15(2):021001. doi: 10.1088/1478-3975/aa9a6f.

Abstract

Temperature sensing is one of the oldest capabilities of living organisms, and is essential for sustaining life, because failure to avoid extreme noxious temperatures can result in tissue damage or death. A subset of members of the transient receptor potential (TRP) ion channel family is finely tuned to detect temperatures ranging from extreme cold to noxious heat, giving rise to thermoTRP channels. Structural and functional experiments have shown that thermoTRP channels are allosteric proteins, containing different domains that sense changes in temperature, among other stimuli, triggering pore opening. Although temperature-dependence is well characterized in thermoTRP channels, the molecular nature of temperature-sensing elements remains unknown. Importantly, thermoTRP channels are involved in pain sensation, related to pathological conditions. Here, we provide an overview of thermoTRP channel activation. We also discuss the structural and functional evidence supporting the existence of an intrinsic temperature sensor in this class of channels, and we explore the basic thermodynamic principles for channel activation. Finally, we give a view of their role in painful pathophysiological conditions.

摘要

温度感知是生物最古老的能力之一,对于维持生命至关重要,因为无法避免极端有害温度会导致组织损伤或死亡。瞬时受体电位(TRP)离子通道家族的一部分成员经过精细调节,可检测从极冷到有害热的温度范围,从而产生热敏TRP通道。结构和功能实验表明,热敏TRP通道是变构蛋白,包含不同的结构域,这些结构域除了能感知其他刺激外,还能感知温度变化,从而触发孔道开放。尽管热敏TRP通道的温度依赖性已得到充分表征,但温度传感元件的分子本质仍然未知。重要的是,热敏TRP通道与病理状况相关的疼痛感觉有关。在此,我们概述了热敏TRP通道的激活。我们还讨论了支持此类通道中存在内在温度传感器的结构和功能证据,并探讨了通道激活的基本热力学原理。最后,我们阐述了它们在疼痛病理生理状况中的作用。

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