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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Lateral Diffusion and Molecular Interaction in a Bilayer Membrane Consisting of Partially Fluorinated Phospholipids
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Lateral Diffusion and Molecular Interaction in a Bilayer Membrane Consisting of Partially Fluorinated Phospholipids

机译:由部分氟化的磷脂组成的双层膜中的横向扩散和分子相互作用

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Fluorinated lipids and surfactants are attractive biomimetic materials for the extraction and reorganization of membrane proteins because of the biological inertness of fluorocarbons. We investigated the fundamental physical properties of a partially fluorinated phospholipid (F4-DMPC), such as phase transition, area thermal expansion, and lateral lipid diffusion, to evaluate the intermolecular interaction of F4-DMPC in the hydrophobic region quantitatively on the basis of free-volume theory. Fluorescence microscope observation of the supported lipid bilayer (SLB) of F4-DMPC showed that the phase transition between the liquid crystalline and gel phases occurred at 5 degrees C and that the area thermal expansion coefficient was independent of the temperature near the phase transition temperature. We performed a single particle tracking of the F4-DMPC-SLB on a SiO2/Si substrate, to measure the diffusion coefficient and its temperature dependence. The apparent activation energy (E-a') of lateral lipid diffusion, which is an indicator of intermolecular interaction, was 39.1 kJ/mol for F4-DMPC, and 48.2 kJ/mol for a nonfluorinated 1,2-dioleoyl-sn-glycero-3-phosphocholine as a control. The difference of 9 kJ/mol in E-a' was significant compared with the difference due to the acyl chain species among nonfluorinated phosphatidylcholine and also that caused by the addition of cholesterol and alcohol in the bilayer membranes. We quantitatively evaluated the attenuation of intermolecular interaction, which results from the competition between the dipole-induced packing effect and steric effect at the fluorocarbon segment in F4-DMPC.
机译:由于碳氟化合物的生物惰性,氟化脂质和表面活性剂是用于膜蛋白提取和重组的有吸引力的仿生材料。我们研究了部分氟化磷脂(F4-DMPC)的基本物理特性,例如相变,区域热膨胀和侧向脂质扩散,以基于游离的游离基定量评估F4-DMPC在疏水区域中的分子间相互作用。体积理论。荧光显微镜观察的F4-DMPC负载的脂质双层(SLB)表明,液晶相和凝胶相之间的相变发生在5摄氏度,并且面积热膨胀系数与相变温度附近的温度无关。我们对SiO2 / Si衬底上的F4-DMPC-SLB进行了单颗粒跟踪,以测量扩散系数及其温度依赖性。侧向脂质扩散的表观活化能(E-a')是分子间相互作用的指标,对于F4-DMPC为39.1 kJ / mol,对于非氟化的1,2-二油酰基-sn-甘油为48.2 kJ / mol -3-磷酸胆碱作为对照。与非氟化磷脂酰胆碱中的酰基链种类以及双层膜中胆固醇和酒精的添加所引起的酰基链种类所引起的差异相比,E-a'中的9 kJ / mol的差异具有显着性。我们定量评估了分子间相互作用的衰减,这是由偶极诱导的堆积效应与F4-DMPC中碳氟化合物链段的空间效应之间的竞争所致。

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