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热TRP通道的温度感知:热力学基础与分子见解

Temperature sensing by thermal TRP channels: thermodynamic basis and molecular insights.

作者信息

Feng Qin

机构信息

Department of Physiology and Biophysics, State University of New York, Buffalo, New York, USA.

出版信息

Curr Top Membr. 2014;74:19-50. doi: 10.1016/B978-0-12-800181-3.00002-6.

Abstract

All organisms need to sense temperature in order to survive and adapt. But how they detect and perceive temperature remains poorly understood. Recent discoveries of thermal Transient Receptor Potential (TRP) ion channels have shed light on the problem and unravel molecular entities for temperature detection and transduction in mammals. Thermal TRP channels belong to the large family of transient receptor potential channels. They are directly activated by heat or cold in physiologically relevant temperature ranges, and the activation is exquisitely sensitive to temperature changes. Thermodynamically, this strong temperature dependence of thermal channels occurs due to large enthalpy and entropy changes associated with channel opening. Thus understanding how the channel proteins obtain their exceptionally large energetics is central toward determining functional mechanisms of thermal TRP channels. The purpose of this chapter is to provide a comprehensive review on critical issues and challenges facing the problem, with emphases on underlying biophysical and molecular mechanisms.

摘要

所有生物为了生存和适应都需要感知温度。但它们如何检测和感知温度仍知之甚少。热敏感瞬时受体电位(TRP)离子通道的最新发现为这个问题带来了曙光,并揭示了哺乳动物中温度检测和传导的分子实体。热敏感TRP通道属于瞬时受体电位通道的大家族。它们在生理相关温度范围内直接被热或冷激活,并且这种激活对温度变化极为敏感。从热力学角度来看,热通道对温度的强烈依赖性是由于与通道开放相关的大焓变和熵变所致。因此,了解通道蛋白如何获得其异常大的能量对于确定热敏感TRP通道的功能机制至关重要。本章的目的是对该问题面临的关键问题和挑战进行全面综述,重点关注潜在的生物物理和分子机制。

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