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Hypoosmotic- and pressure-induced membrane stretch activate TRPC5 channels

机译:低渗和压力诱导的膜拉伸激活TRPC5通道

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摘要

Transient receptor potential (TRP) channels mediate a wide array of sensory functions. We investigated the role of TRPC5, a poorly characterized channel widely expressed in the central and peripheral nervous system, as a potential osmosensory protein. Here we show that hypoosmotic stimulation activates TRPC5 channels resulting in a large calcium influx. The response to osmotically induced membrane stretch is blocked by GsMTx-4, an inhibitor of stretch activated ion channels. Direct hypoosmotic activation of TRPC5 is independent of phospholipase C function. However, the osmotic response is inhibited in a cell line in which PIP2 levels are reduced by regulated overexpression of a lipid phosphatase. The response was restored by increasing intracellular PIP2 levels through the patch pipette. The mechano-sensitivity of the channel was probed in the whole-cell configuration by application of steps of positive pressure through the patch pipette. Pressure-induced membrane stretch also activated TRPC5 channels, suggesting its role as a transducer of osmo-mechanical stimuli. We also demonstrated the expression of TRPC5 in sensory neurones which together with the osmo-mechanical characteristics of TRPC5 channels suggest its putative role in mechanosensory transduction events. © 2008 The Author. Journal compilation © 2008 The Physiological Society.
机译:瞬态受体电位(TRP)通道介导多种感觉功能。我们调查了TRPC5(一种在中枢神经系统和外周神经系统中广泛表达的特征较差的通道)作为潜在渗透压蛋白的作用。在这里,我们显示低渗刺激激活TRPC5通道,导致大量钙流入。对渗透诱导的膜拉伸的反应被拉伸活化离子通道的抑制剂GsMTx-4阻断。 TRPC5的直接低渗激活独立于磷脂酶C功能。但是,在通过调节脂质磷酸酶的过表达来降低PIP2水平的细胞系中,渗透反应受到抑制。通过通过移液管增加细胞内PIP2水平来恢复反应。通过通过贴片移液器施加正压步骤,在全细胞配置中探测通道的机械敏感性。压力诱导的膜拉伸也激活了TRPC5通道,表明其作为渗透机械刺激的转换器。我们还证明了TRPC5在感觉神经元中的表达,以及TRPC5通道的渗透机械特性表明其在机械感觉转导事件中的推定作用。 ©2008作者。期刊编辑©2008生理学会。

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