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Joint small-angle X-ray and neutron scattering data analysis of asymmetric lipid vesicles

机译:不对称脂质囊泡的联合小角X射线和中子散射数据分析

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摘要

Low- and high-resolution models describing the internal transbilayer structure of asymmetric lipid vesicles have been developed. These models can be used for the joint analysis of small-angle neutron and X-ray scattering data. The models describe the underlying scattering length density/electron density profiles either in terms of slabs or through the so-called scattering density profile, previously applied to symmetric lipid vesicles. Both models yield structural details of asymmetric membranes, such as the individual area per lipid, and the hydrocarbon thickness of the inner and outer bilayer leaflets. The scattering density profile model, however, comes at a cost of increased computational effort but results in greater structural resolution, showing a slightly lower packing of lipids in the outer bilayer leaflet of ∼120 nm diameter palmitoyl­oleoyl phosphatidyl­choline (POPC) vesicles, compared to the inner leaflet. Analysis of asymmetric dipalmitoyl phosphatidylcholine/POPC vesicles did not reveal evidence of transbilayer coupling between the inner and outer leaflets at 323 K, i.e. above the melting transition temperature of the two lipids.
机译:已经开发了描述不对称脂质囊泡内部跨双分子层结构的低分辨率和高分辨率模型。这些模型可用于小角度中子和X射线散射数据的联合分析。这些模型通过平板或通过先前应用于对称脂质囊泡的所谓散射密度分布图描述了潜在的散射长度密度/电子密度分布图。两种模型均产生不对称膜的结构细节,例如每个脂质的单个面积以及内部和外部双层小叶的碳氢化合物厚度。然而,散射密度分布模型的代价是增加了计算工作量,但导致了更大的结构分辨率,与直径约120μm的棕榈酰油酰磷脂酰胆碱(POPC)囊泡相比,在双层外瓣中脂质的堆积略低。内部传单。不对称二棕榈酰磷脂酰胆碱/ POPC囊泡的分析未发现内小叶和外小叶在323 K(即高于两种脂质的熔融转变温度)之间的双分子层偶联证据。

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