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TRP Channels as Sensors of Chemically-Induced Changes in Cell Membrane Mechanical Properties

机译:TRP通道作为细胞膜机械性质化学诱导变化的传感器

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摘要

Transient Receptor Potential ion channels (TRPs) have been described as polymodal sensors, being responsible for transducing a wide variety of stimuli, and being involved in sensory functions such as chemosensation, thermosensation, mechanosensation, and photosensation. Mechanical and chemical stresses exerted on the membrane can be transduced by specialized proteins into meaningful intracellular biochemical signaling, resulting in physiological changes. Of particular interest are compounds that can change the local physical properties of the membrane, thereby affecting nearby proteins, such as TRP channels, which are highly sensitive to the membrane environment. In this review, we provide an overview of the current knowledge of TRP channel activation as a result of changes in the membrane properties induced by amphipathic structural lipidic components such as cholesterol and diacylglycerol, and by exogenous amphipathic bacterial endotoxins.
机译:瞬态受体电位离子通道(TRP)已被描述为多峰传感器,负责转导多种刺激,并参与感觉功能,如化学传感,热敏,机械传感和光敏。施加在膜上的机械和化学应力可以通过专门的蛋白质转换为有意义的细胞内生化信号,从而导致生理变化。尤其令人感兴趣的是能够改变膜的局部物理性质,从而影响对膜环境高度敏感的附近蛋白质,例如TRP通道的化合物。在这篇综述中,我们概述了由于两亲性结构性脂质成分(例如胆固醇和二酰基甘油)以及外源性两亲性细菌内毒素引起的膜特性变化而导致的TRP通道激活的当前知识。

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