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Human LDL core cholesterol ester packing: three-dimensional image reconstruction and SAXS simulation studies

机译:人类低密度脂蛋白核心胆固醇酯包装:三维图像重建和SAXS模拟研究

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摘要

Human LDL undergoes a reversible thermal order-disorder phase transition associated with the cholesterol ester packing in the lipid core. Structural changes associated with this phase transition have been shown to affect the resistance of LDL to oxidation in vitro studies. Previous electron cryo-microscopy studies have provided image evidence that the cholesterol ester is packed in three flat layers in the core at temperatures below the phase transition. To study changes in lipid packing, overall structure and particle morphology in three dimensions (3D) subsequent to the phase transition, we cryo-preserved human LDL at a temperature above phase transition (53°C) and examined the sample by electron microscopy and image reconstruction. The LDL frozen from 53°C adopted a different morphology. The central density layer was disrupted and the outer two layers formed a “disrupted shell”-shaped density, located concentrically underneath the surface density of the LDL particle. Simulation of the small angle X-ray scattering curves and comparison with published data suggested that this disrupted shell organization represents an intermediate state in the transition from isotropic to layered packing of the lipid. Thus, the results revealed, with 3D images, the lipid packing in the dynamic process of the LDL lipid-core phase transition.
机译:人LDL经历与脂质核中的胆固醇酯堆积相关的可逆的热有序-无序相变。与这种相变相关的结构变化已显示出可影响LDL在体外研究中对氧化的抗性。先前的电子冷冻显微镜研究已经提供了图像证据,表明胆固醇酯在低于相变的温度下堆积在核中的三个平坦层中。为了研究相变后三个维度(3D)中脂质堆积,整体结构和颗粒形态的变化,我们在相变(53°C)以上的温度下冷冻保存了人LDL,并通过电子显微镜和图像检查了样品重建。从53°C冷冻的低密度脂蛋白采用不同的形态。中央密度层被破坏,外部两层形成“破坏的壳”形密度,同心地位于LDL颗粒的表面密度之下。小角度X射线散射曲线的模拟以及与已发表数据的比较表明,这种破裂的壳结构代表了脂质从各向同性到分层堆积过渡的中间状态。因此,结果通过3D图像揭示了LDL脂质核心相变动态过程中的脂质堆积。

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