Institute of Physiology, RWTH Aachen University, Aachen, Germany.
Department of Physics and Astronomy, McMaster University, Hamilton, Ontario, Canada.
Biophys J. 2018 Mar 27;114(6):1321-1335. doi: 10.1016/j.bpj.2018.01.028.
The bile acid-sensitive ion channel is activated by amphiphilic substances such as bile acids or artificial detergents via membrane alterations; however, the mechanism of membrane sensitivity of the bile acid-sensitive ion channel is not known. It has also not been systematically investigated whether other members of the degenerin/epithelial Na channel (DEG/ENaC) gene family are affected by amphiphilic compounds. Here, we show that DEG/ENaCs ASIC1a, ASIC3, ENaC, and the purinergic receptor P2X2 are modulated by a large number of different, structurally unrelated amphiphilic substances, namely the detergents N-lauroylsarcosine, Triton X-100, and β-octylglucoside; the fenamate flufenamic acid; the antipsychotic drug chlorpromazine; the natural phenol resveratrol; the chili pepper compound capsaicin; the loop diuretic furosemide; and the antiarrythmic agent verapamil. We determined the modification of membrane properties using large-angle x-ray diffraction experiments on model lipid bilayers, revealing that the amphiphilic compounds are positioned in a characteristic fashion either in the lipid tail group region or in the lipid head group region, demonstrating that they perturbed the membrane structure. Collectively, our results show that DEG/ENaCs and structurally related P2X receptors are modulated by diverse amphiphilic molecules. Furthermore, they suggest alterations of membrane properties by amphiphilic compounds as a mechanism contributing to modulation.
胆酸敏感离子通道通过膜改变被两亲物质(如胆酸或人工去污剂)激活;然而,胆酸敏感离子通道的膜敏感性机制尚不清楚。也没有系统地研究过 DEG/ENaC 基因家族的其他成员是否受两亲化合物的影响。在这里,我们表明,DEG/ENaC 的 ASIC1a、ASIC3、ENaC 和嘌呤能受体 P2X2 被大量不同的、结构上无关的两亲物质调节,即去污剂 N-月桂酰肌氨酸、Triton X-100 和 β-辛基葡糖苷;芬那酸氟芬那酸;抗精神病药氯丙嗪;天然酚白藜芦醇;辣椒素化合物辣椒素;噻嗪类利尿剂呋塞米;和抗心律失常药维拉帕米。我们使用模型脂质双层的大角度 X 射线衍射实验来确定膜性质的修饰,结果表明两亲化合物以特征方式定位在脂质尾部区域或脂质头部区域,表明它们扰乱了膜结构。总的来说,我们的结果表明,DEG/ENaC 和结构上相关的 P2X 受体被多种两亲分子调节。此外,它们表明两亲化合物通过改变膜性质作为调节的一种机制。