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Coupling Optical and Electrical Measurements in Artificial Membranes:Lateral Diffusion of Lipids and Channel Forming Peptides in Planar Bilayers

机译:耦合人工膜的光电测量:脂质在平面双层膜中的横向扩散和通道形成肽

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摘要

Planar lipid bilayers (PLB) were prepared by the Montal-Mueller technique in a FRAP system designed to simultaneously measure conductivity across, and lateral diffusion of, the bilayer. In the first stage of the project the FRAP system was used to characterise the lateral dynamics of bilayer lipids with regards to phospholipid composition (headgroup, chain unsaturation etc.), presence of cholesterol and the effect of divalent cations on negatively-charged bilayers. In the second stage of the project, lateral diffusion of two fluorescently-labelled voltage-dependent pore-forming peptides (alamethicin and S4s from Shaker K+ channel) was determined at rest and in the conducting state. This study demonstrates the feasibility of such experiments with PLBs, amenable to physical constraints, and thus offers new opportunities for systematic studies of structure-function relationships in membrane-associating molecules.
机译:平面脂质双层(PLB)是通过Montal-Mueller技术在FRAP系统中制备的,该FRAP系统旨在同时测量跨双层的电导率和横向扩散。在该项目的第一阶段,FRAP系统用于表征双层脂质的横向动力学,这些动力学涉及磷脂成分(头基,链不饱和等),胆固醇的存在以及二价阳离子对带负电荷的双层的影响。在该项目的第二阶段,确定了两种荧光标记的电压依赖性成孔肽(Shaker K + 通道中的乐果霉素和S4s)在静态和导电状态下的横向扩散。这项研究证明了用PLB进行此类实验的可行性,该实验受物理限制,因此为系统研究膜结合分子中的结构-功能关系提供了新的机会。

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