Liu Beiying, Qin Feng
Department of Physiology and Biophysical Sciences, State University of New York at Buffalo, Buffalo, New York 14214, USA.
J Neurosci. 2005 Feb 16;25(7):1674-81. doi: 10.1523/JNEUROSCI.3632-04.2005.
Cold is detected by a small subpopulation of peripheral thermoreceptors. TRPM8, a cloned menthol- and cold-sensitive ion channel, has been suggested to mediate cold transduction in the innocuous range. The channel shows a robust response in whole-cell recordings but exhibits markedly reduced activity in excised membrane patches. Here we report that phosphatidylinositol 4,5-bisphosphate (PIP2) is an essential regulator of the channel function. The rundown of the channel is prevented by lipid phosphatase inhibitors. Application of exogenous PIP2 both activates the channel directly and restores rundown activity. Whole-cell experiments involving intracellular dialysis with polyvalent cations, inhibition of PIP2 synthesis kinases, and receptor-mediated hydrolysis of PIP2 show that PIP2 also modulates the channel activity in the intact cells. The crucial role of PIP2 on the function of TRPM8 suggests that the membrane PIP2 level may be an important regulator of cold transduction in vivo. The opposite effects of PIP2 on the vanilloid receptor TRPV1 and TRPM8 also implies that the membrane lipid may have dual actions as a bimodal switch to selectively control the heat- and cold-induced responses in nociceptors expressing both channels.
寒冷是由一小部分外周温度感受器检测到的。TRPM8是一种已克隆的对薄荷醇和寒冷敏感的离子通道,有人认为它在无害温度范围内介导冷传导。该通道在全细胞记录中表现出强烈反应,但在切除的膜片上活性明显降低。我们在此报告,磷脂酰肌醇4,5-二磷酸(PIP2)是该通道功能的重要调节因子。脂质磷酸酶抑制剂可防止通道功能衰退。外源性PIP2的应用既能直接激活通道,又能恢复衰退的活性。涉及用多价阳离子进行细胞内透析、抑制PIP2合成激酶以及受体介导的PIP2水解的全细胞实验表明,PIP2在完整细胞中也能调节通道活性。PIP2对TRPM8功能的关键作用表明,膜PIP2水平可能是体内冷传导的重要调节因子。PIP2对香草酸受体TRPV1和TRPM8的相反作用也意味着,膜脂质可能具有双重作用,作为一种双峰开关,以选择性地控制表达这两种通道的伤害感受器中热诱导和冷诱导的反应。