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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Effects of Amiloride, an Ion Channel Blocker, on Alamethicin Pore Formation in Negatively Charged, Gold-Supported, Phospholipid Bilayers: A Molecular View
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Effects of Amiloride, an Ion Channel Blocker, on Alamethicin Pore Formation in Negatively Charged, Gold-Supported, Phospholipid Bilayers: A Molecular View

机译:离子通道阻断剂,对氨基磷蛋白孔隙形成带负电,金载,磷脂双层的影响:分子视图

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The effects of amiloride on the structure and conductivity of alamethicin ion pore formation within negatively charged, gold-supported, 1,2-dimyristoyl-sn-glyc- ero-3-phosphocholine/Egg-PG membranes were investigated with the help of electrochemical impedance spectroscopy EIS), photon polarization modulation-infrared reflection spectroscopy (PM-IRRAS), and atomic force microscopy (AFM). The EIS results indicate that ion conductivity across negatively charged phospholipid bilayers containing alamethicin decreases by an order of magnitude when amiloride is introduced to the system. Despite the reduction in ion conductivity, the PM-IRRAS data shows that amiloride does not inhibit ion channel formation by alamethicin peptides. High-resolution AFM images revealed that amiloride enlarges and distorts the shape of alamethicin ion pores when introduced to the system, indicating that it is inserting itself into the mouth of the alamethicin pores. This effect is driven by electrostatic interactions between positively charged amiloride molecules and the negative charge on the membrane.
机译:在电化学阻抗的帮助下,研究了在带负电荷,金属负载的1,2-二霉酰-NA-γ-Sn-Glyc-3-磷光胆碱/蛋壳中的阿拉米霉素离子孔隙形成结构和导电性的影响光谱学EIS),光子偏振调节 - 红外反射光谱(PM-IRRAS)和原子力显微镜(AFM)。 EIS结果表明,当将氨基硼引入系统时,含有阿拉米霉素的带负电荷的磷脂双层的离子传导率降低了一定程度。尽管离子电导率降低,PM-Irras数据表明,茉莉植物不抑制阿拉美汀肽的离子通道形成。高分辨率AFM图像显示,当引入系统时,茉莉胺扩大并扭曲了阿拉美汀离子孔的形状,表明它将其自身插入阿拉美汀孔的口腔中。这种效果是通过带正电荷的仲酰胺分子与膜上的负电荷之间的静电相互作用驱动的。

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