Department of Chemistry, University of Guelph, Guelph, Ontario N1G 2W1, Canada.
Langmuir. 2022 Jul 12;38(27):8398-8406. doi: 10.1021/acs.langmuir.2c00953. Epub 2022 Jun 24.
The inhibition effect of amiloride on alamethicin ion channels was studied in a model zwitterionic floating bilayer lipid membrane (fBLM). The EIS studies indicated that amiloride prevents the transport of ions through the alamethicin channels leading to an overall increase in membrane resistance. The PM-IRRAS data demonstrated that amiloride has no influence on the secondary structure of alamethicin but restricts the insertion of the peptides into the bilayer and blocks ion transport through preformed alamethicin channels. The effect of amiloride on ion channel formation in the floating bilayer formed by a zwitterionic lipid was compared to those of previous studies involving negatively charged fBLMs and tethered zwitterionic lipid bilayers. The findings from these studies show that the effects of amiloride on ion channel formation strongly depend on the mobility and charge of the membrane lipids.
在两性离子浮动双层脂质膜(fBLM)模型中研究了阿米洛利对短杆菌肽离子通道的抑制作用。EIS 研究表明,阿米洛利阻止了离子通过短杆菌肽通道的传输,导致膜电阻整体增加。PM-IRRAS 数据表明,阿米洛利对短杆菌肽的二级结构没有影响,但限制了肽插入双层,并阻止了通过预形成的短杆菌肽通道的离子传输。将阿米洛利对由两性离子脂质形成的浮动双层中离子通道形成的影响与先前涉及带负电荷的 fBLM 和固定两性离子脂质双层的研究进行了比较。这些研究的结果表明,阿米洛利对离子通道形成的影响强烈取决于膜脂质的流动性和电荷。