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首页> 外文期刊>Biophysical Journal >Interfacial properties of high-density lipoprotein-like lipid droplets with different lipid and apolipoprotein A-I compositions
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Interfacial properties of high-density lipoprotein-like lipid droplets with different lipid and apolipoprotein A-I compositions

机译:具有不同脂质和载脂蛋白A-I组成的高密度脂蛋白样脂质液滴的界面特性

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The surface properties of high-density lipoproteins (HDLs) are important because different enzymes bind and carry out their functions at the surface of HDL particles during metabolic processes. However, the surface properties of HDL and other lipoproteins are poorly known because they cannot be directly measured for nanoscale particles with contemporary experimental methods. In this work, we carried out coarse-grained molecular dynamics simulations to study the concentration of core lipids in the surface monolayer and the interfacial tension of droplets resembling HDL particles. We simulated lipid droplets composed of different amounts of phospholipids, cholesterol esters (CEs), triglycerides (TGs), and apolipoprotein A-Is. Our results reveal that the amount of TGs in the vicinity of water molecules in the phospholipid monolayer is 25-50% higher compared to the amount of CEs in a lipid droplet with a mixed core of an equal amount of TG and CE. In addition, the correlation time for the exchange of molecules between the core and the monolayer is significantly longer for TGs compared to CEs. This suggests that the chemical potential of TG is lower in the vicinity of aqueous phase but the free-energy barrier for the translocation between the monolayer and the core is higher compared to CEs. From the point of view of enzymatic modification, this indicates that TG molecules are more accessible from the aqueous phase. Further, our results point out that CE molecules decrease the interfacial tension of HDL-like lipid droplets whereas TG keeps it constant while the amount of phospholipids varies.
机译:高密度脂蛋白(HDL)的表面特性很重要,因为在代谢过程中,不同的酶会在HDL颗粒的表面结合并发挥其功能。但是,HDL和其他脂蛋白的表面性质知之甚少,因为无法用当代的实验方法直接测量纳米级颗粒的表面性质。在这项工作中,我们进行了粗粒度的分子动力学模拟,以研究表面单层中核心脂质的浓度以及类似于HDL颗粒的液滴的界面张力。我们模拟了由不同数量的磷脂,胆固醇酯(CEs),甘油三酸酯(TGs)和载脂蛋白A-Is组成的脂质液滴。我们的结果表明,与具有相同量的TG和CE的混合核心的脂质液滴中的CEs量相比,磷​​脂单层中水分子附近的TGs量高25-50%。另外,与CE相比,TGs在核心和单层之间交换分子的相关时间明显更长。这表明TG的化学势在水相附近较低,但与CEs相比,用于单层和核心之间易位的自由能垒较高。从酶促修饰的观点来看,这表明从水相中更容易获得TG分子。此外,我们的结果指出,CE分子降低了HDL样脂质滴的界面张力,而TG使其保持恒定,而磷脂量却变化。

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