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首页> 外文期刊>Journal of Lipid Research >Nascent high density lipoproteins formed by ABCA1 resemble lipid rafts and are structurally organized by three apoA-I monomers
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Nascent high density lipoproteins formed by ABCA1 resemble lipid rafts and are structurally organized by three apoA-I monomers

机译:由ABCA1形成的新生高密度脂蛋白类似于脂质筏,并且由三个apoA-I单体在结构上组织

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This report details the lipid composition of nascent HDL (nHDL) particles formed by the action of the ATP binding cassette transporter A1 (ABCA1) on apolipoprotein A-I (apoA-I). nHDL particles of different size (average diameters of ~12, 10, 7.5, and <6 nm) and composition were purified by size-exclusion chromatography. Electron microscopy suggested that the nHDL were mostly spheroidal. The proportions of the principal nHDL lipids, free cholesterol, glycerophosphocholine, and sphingomyelin were similar to that of lipid rafts, suggesting that the lipid originated from a raft-like region of the cell. Smaller amounts of glucosylceramides, cholesteryl esters, and other glycerophospholipid classes were also present. The largest particles, ~12 nm and 10 nm diameter, contained ~43% free cholesterol, 2-3% cholesteryl ester, and three apoA-I molecules. Using chemical cross-linking chemistry combined with mass spectrometry, we found that three molecules of apoA-I in the ~9-14 nm nHDL adopted a belt-like conformation. The smaller (7.5 nm diameter) spheroidal nHDL particles carried 30% free cholesterol and two molecules of apoA-I in a twisted, antiparallel, double-belt conformation. Overall, these new data offer fresh insights into the biogenesis and structural constraints involved in forming nascent HDL from ABCA1.
机译:该报告详细介绍了由ATP结合盒转运蛋白A1(ABCA1)对载脂蛋白A-I(apoA-I)作用形成的新生HDL(nHDL)颗粒的脂质组成。通过尺寸排阻色谱纯化不同大小(组成的平均直径分别为〜12、10、7.5和<6 nm)的nHDL颗粒。电子显微镜显示nHDL多为球形。主要nHDL脂质,游离胆固醇,甘油磷酸胆碱和鞘磷脂的比例与脂质筏的比例相似,这表明脂质起源于细胞的筏样区域。还存在少量的葡萄糖基神经酰胺,胆固醇酯和其他甘油磷脂类别。最大的粒子直径约为12 nm和10 nm,其中含有约43%的游离胆固醇,2-3%的胆固醇酯和三个apoA-I分子。使用化学交联化学结合质谱,我们发现〜9-14 nm nHDL中的三个apoA-I分子呈带状构象。较小的球形(直径7.5 nm)nHDL颗粒以扭曲,反平行,双带的构型携带30%的游离胆固醇和两个apoA-I分子。总体而言,这些新数据为从ABCA1形成新生HDL涉及的生物发生和结构限制提供了新的见解。

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