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Optical anisotropy in lipid bilayer membranes: coupled plasmon-waveguide resonance measurements of molecular orientation polarizability and shape.

机译:脂质双层膜中的光学各向异性:分子方向极化性和形状的耦合等离子体激元共振测量。

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摘要

The birefringence and linear dichroism of anisotropic thin films such as proteolipid membranes are related to molecular properties such as polarizability, shape, and orientation. Coupled plasmon-waveguide resonance (CPWR) spectroscopy is shown in the present work to provide a convenient means of evaluating these parameters in a single lipid bilayer. This is illustrated by using 1-10 mol % of an acyl chain chromophore-labeled phosphatidylcholine (PC) incorporated into a solid-supported PC bilayer deposited onto a hydrated silica surface. CPWR measurements were made of refractive index and extinction coefficient anisotropies with two exciting light wavelengths, one of which is absorbed by the chromophore and one of which is not. These results were used to calculate longitudinal and transverse molecular polarizabilities, the orientational order parameter and average angle between the longitudinal axis of the lipid molecule and the membrane normal, and the molecular shape factors of the lipid molecules. The values thereby obtained are in excellent agreement with parameters determined by other techniques, and provide a powerful tool for analyzing lipid-protein, protein-protein, and protein-ligand interactions in proteolipid films.
机译:各向异性薄膜(如脂蛋白膜)的双折射和线性二色性与分子特性(如极化率,形状和方向)有关。耦合等离子体激元-波导共振(CPWR)光谱显示在本工作中,以提供一种方便的方法来评估单个脂质双层中的这些参数。这是通过使用1-10 mol%的酰基链发色团标记的磷脂酰胆碱(PC)掺入沉积在水合二氧化硅表面上的固体支持的PC双层中来说明的。 CPWR测量是通过具有两个激发光波长的折射率和消光系数各向异性来进行的,其中一个被发色团吸收,而另一个未被吸收。这些结果用于计算纵向和横向分子极化率,脂质分子的纵轴与膜法线之间的取向顺序参数和平均角度,以及脂质分子的分子形状因子。由此获得的值与通过其他技术确定的参数非常吻合,并且为分析脂蛋白膜中的脂蛋白,蛋白蛋白和蛋白配体相互作用提供了强大的工具。

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