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Light-Controlled Lipid Interaction and Membrane Organization in Photolipid Bilayer Vesicles

机译:光紫色双层囊泡中轻控制的脂质相互作用和膜组织

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摘要

Controlling lateral interactions between lipid molecules in a bilayer membrane to guide membrane organization and domain formation is a key factor for studying and emulating membrane functionality in synthetic biological systems. Here, we demonstrate an approach to reversibly control lipid organization, domain formation, and membrane stiffness of phospholipid bilayer membranes using the photoswitchable phospholipid azo-PC. azo-PC contains an azobenzene group in the sn2 acyl chain that undergoes reversible photoisomerization on illumination with UV-A and visible light. We demonstrate that the concentration of the photolipid molecules and also the assembly and disassembly of photolipids into lipid domains can be monitored by UV-vis spectroscopy because of a blue shift induced by photolipid aggregation.
机译:控制双层膜中的脂质分子之间的横向相互作用,以引导膜组织和结构域组织是研究合成生物系统中膜官能团的关键因素。 在这里,我们用光学磷脂偶氮PC证明了一种可逆地控制磷脂双层膜的脂质组织,结构域和膜刚度的方法。 AZO-PC在SN2酰基链中含有偶氮苯基,通过UV-A和可见光进行可逆光学剂。 我们证明,由于光紫色聚集诱导的蓝色移位,可以通过UV-Vis光谱监测光芳脂分子和将光紫色的组件和拆卸的将光胶和拆卸物体进行监测。

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