首页> 美国卫生研究院文献>Biophysical Journal >Atomistic Simulations of Phosphatidylcholines and Cholesteryl Esters in High-Density Lipoprotein-Sized Lipid Droplet and Trilayer: Clues to Cholesteryl Ester Transport and Storage
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Atomistic Simulations of Phosphatidylcholines and Cholesteryl Esters in High-Density Lipoprotein-Sized Lipid Droplet and Trilayer: Clues to Cholesteryl Ester Transport and Storage

机译:高密度脂蛋白大小的脂质微滴和三层脂质体中磷脂酰胆碱和胆固醇酯的原子模拟:线索到胆固醇酯的运输和储存

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摘要

Cholesteryl esters (CEs) are the water-insoluble transport and storage form of cholesterol. For both transport and storage, phospholipids and proteins embrace the CEs to form an amphipathic monolayer that surrounds the CEs. CEs are transported extracellularly in lipoproteins and are stored intracellularly as cytoplasmic lipid droplets. To clarify the molecular phenomena related to the above structures, we conducted atomistic molecular-dynamics simulations for a spherical, approximately high density lipoprotein sized lipid droplet comprised of palmitoyl-oleoyl-phosphatidylcholine (POPC) and cholesteryl oleate (CO) molecules. An additional simulation was conducted for a lamellar lipid trilayer consisting of the same lipid constituents. The density profiles showed that COs were located in the core of the spherical droplet. In trilayer simulations, CO molecules were also in the core and formed two denser strata. This is remarkable because the intra- and intermolecular behaviors of the COs were similar to previous findings from bulk COs in the fluid phase. In accordance with previous experimental studies, the solubility of COs in the POPC monolayers was found to be low. The orientation distribution of the sterol moiety with respect to the normal of the system was found to be broad, with mainly isotropic or slightly parallel orientations observed deep in the core of the lipid droplet or the trilayer, respectively. In both systems, the orientation of the sterol moiety changed to perpendicular with respect to the normal close to the phopsholipid monolayers. Of interest, within the POPC monolayers, the intramolecular conformation of the COs varied from the previously proposed horseshoe-like conformation to a more extended one. From a metabolic point of view, the observed solubilization of CEs into the phospholipid monolayers, and the conformation of CEs in the phospholipid monolayers are likely to be important regulatory factors of CE transport and hydrolysis.
机译:胆固醇酯(CEs)是胆固醇的水不溶性运输和储存形式。为了运输和储存,磷脂和蛋白质包围CE,形成围绕CE的两亲性单层。 CEs在脂蛋白中进行细胞外运输,并以细胞质脂质小滴形式在细胞内存储。为了阐明与上述结构有关的分子现象,我们对由棕榈酰-油酰-磷脂酰胆碱(POPC)和胆甾醇油酸酯(CO)分子组成的球形,高密度脂蛋白大小的脂质滴进行了原子分子动力学模拟。对由相同脂质成分组成的层状脂质三层进行了额外的模拟。密度分布图表明,CO位于球形液滴的核心。在三层模拟中,CO分子也位于岩心中,并形成两个更致密的地层。这是惊人的,因为CO的分子内和分子间行为与先前从液相中的大量CO的发现相似。根据先前的实验研究,发现POPC单层中CO的溶解度很低。发现固醇部分相对于系统法线的取向分布较宽,在脂滴或三层核的深处分别观察到主要是各向同性或略微平行的取向。在这两个系统中,相对于接近磷脂单层的法线,固醇部分的取向改变为垂直。令人感兴趣的是,在POPC单层内,CO的分子内构象从先前提出的马蹄样构象变化到更广泛的构象。从代谢的观点来看,观察到的CEs增溶到磷脂单层中,以及CEs在磷脂单层中的构象很可能是CE运输和水解的重要调控因素。

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