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首页> 外文期刊>Biophysical Journal >Structure of immune stimulating complex matrices and immune stimulating complexes in suspension determined by small-angle X-ray scattering
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Structure of immune stimulating complex matrices and immune stimulating complexes in suspension determined by small-angle X-ray scattering

机译:小角度X射线散射确定悬浮液中免疫刺激复合物和免疫刺激复合物的结构

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Immune stimulating complex (ISCOM) particles consisting of a mixture of Quil-A, cholesterol, and phospholipids were structurally characterized by small-angle x-ray scattering (SAXS). The ISCOM particles are perforated vesicles of very well-defined structures. We developed and implemented a novel (to our knowledge) modeling method based on Monte Carlo simulation integrations to describe the SAXS data. This approach is similar to the traditional modeling of SAXS data, in which a structure is assumed, the scattering intensity is calculated, and structural parameters are optimized by weighted least-squares methods when the model scattering intensity is fitted to the experimental data. SAXS data from plain ISCOM matrix particles in aqueous suspension, as well as those from complete ISCOMs (i.e., with an antigen (tetanus toxoid) incorporated) can be modeled as a polydisperse distribution of perforated bilayer vesicles with icosahedral, football, or tennis ball structures. The dominating structure is the tennis ball structure, with an outer diameter of 40 nm and with 20 holes 5-6 nm in diameter. The lipid bilayer membrane is 4.6 nm thick, with a low-electron-density, 2.0-nm-thick hydrocarbon core. Surprisingly, in the ISCOMs, the tetanus toxoid is located just below the membrane inside the particles.
机译:由Quil-A,胆固醇和磷脂的混合物组成的免疫刺激复合物(ISCOM)颗粒在结构上通过小角度X射线散射(SAXS)进行了表征。 ISCOM颗粒是结构非常明确的穿孔小泡。我们根据蒙特卡洛模拟集成开发并实施了一种新颖的(据我们所知)建模方法来描述SAXS数据。此方法类似于SAXS数据的传统建模,在该模型中,假设模型的散射强度适合实验数据,则假设结构,计算散射强度,并通过加权最小二乘法优化结构参数。来自水性悬浮液中普通ISCOM基质颗粒以及完整ISCOM(即掺入抗原(破伤风类毒素))的SAXS数据可以建模为具有二十面体,足球或网球结构的多孔双层囊泡的多分散分布。主导结构是网球结构,其外径为40 nm,直径为5-6 nm,具有20个孔。脂质双层膜厚4.6 nm,具有低电子密度,2.0 nm厚的烃核。出人意料的是,在ISCOM中,破伤风类毒素位于颗粒内部膜的正下方。

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