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Stimulation-dependent gating of TRPM3 channel in planar lipid bilayers

机译:平面脂质双层中TRPM3通道的刺激依赖性门控

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摘要

The transient receptor potential melastatin (TRPM)-3 channel is critical for various physiologic processes. In somatosensory neurons, TRPM3 has been implicated in temperature perception and inflammatory hyperalgesia, whereas in pancreatic β-cells the channel has been linked to glucose-induced insulin release. As a typical representative of the TRP family, TRPM3 is highly polymodal. In cells, it is activated by heat and chemical agonists, including pregnenolone sulfate (PS) and nifedipine (Nif). To define the nuances of TRPM3 channel activity and its modulators, we succeeded in incorporating the TRPM3 protein into planar lipid bilayers. We found that phosphatidylinositol-4,5-bisphosphate (PIP2) or clotrimazole is necessary for channel opening by PS. Unlike PS, the presence of Nif alone sufficed to induce TRPM3 activity and demonstrated distinct gating behavior. We also performed an extensive thermodynamic analysis of TRPM3 activation and found that TRPM3 exhibited slight temperature sensitivity in the bilayers. In the absence of other agonists TRPM3 channels remained closed upon heat-induced stimulation, but opened in the presence of PIP2, although with only a low open-probability profile. Together, our results elucidate the details peculiar to TRPM3 channel function in an isolated system. We confirmed its direct gating by PS and PIP2, but found a lack of the strong intrinsic temperature sensitivity common to other thermosensitive TRP channels.—Kunitoshi, U., Demirkhanyan, L., Asuthkar, S., Cohen, A., Tominaga, M., Zakharian, E. Stimulation-dependent gating of TRPM3 channel in planar lipid bilayers.
机译:瞬时受体电位褪黑素(TRPM)-3通道对于各种生理过程至关重要。在体感神经元中,TRPM3与温度感知和炎性痛觉过敏有关,而在胰腺β细胞中,该通道与葡萄糖诱导的胰岛素释放有关。作为TRP家族的典型代表,TRPM3是高度多峰的。在细胞中,它被热和化学激动剂激活,包括硫酸孕烯醇酮(PS)和硝苯地平(Nif)。为了定义TRPM3通道活性及其调节剂的细微差别,我们成功地将TRPM3蛋白整合到了平面脂质双层中。我们发现磷脂酰肌醇-4,5-双磷酸酯(PIP2)或克霉唑是PS开通通道所必需的。与PS不同,仅Nif的存在就足以诱导TRPM3活性并表现出独特的门控行为。我们还对TRPM3激活进行了广泛的热力学分析,发现TRPM3在双层中显示出轻微的温度敏感性。在没有其他激动剂的情况下,TRPM3通道在热诱导刺激下保持关闭,但在PIP2存在时打开,尽管打开概率分布较低。总之,我们的结果阐明了隔离系统中TRPM3通道功能特有的细节。我们通过PS和PIP2确认了它的直接门控功能,但是发现它缺乏其他热敏TRP通道常见的强固有温度敏感性。-Kunitoshi,U.,Demirkhanyan,L.,Asuthkar,S.,Cohen,A.,Tominaga, M.,Zakharian,E。平面脂质双层中TRPM3通道的刺激依赖性门控。

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