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Effect of lipid peroxidation on the properties of lipid bilayers: A molecular dynamics study

机译:脂质过氧化对脂质双层特性的影响:分子动力学研究

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Lipid peroxidation plays an important role in cell membrane damage. We investigated the effect of lipid peroxidation on the properties of 1-palmitoyl-2-linoleoyl-sn-glycero-3-phosphatidylcholine ( PLPC) lipid bilayers using molecular dynamics simulations. We focused on four main oxidation products of linoleic acid with either a hydroperoxide or an aldehyde group: 9-trans, cis-hydroperoxide linoleic acid, 13-trans, cis-hydroperoxide linoleic acid, 9-oxo-nonanoic acid, and 12-oxo-9-dodecenoic acid. These oxidized chains replaced the sn-2 linoleate chain. The properties of PLPC lipid bilayers were characterized as a function of the concentration of oxidized lipids, with concentrations from 2.8% to 50% for each oxidation product. The introduction of oxidized functional groups in the lipid tail leads to an important conformational change in the lipids: the oxidized tails bend toward the water phase and the oxygen atoms form hydrogen bonds with water and the polar lipid headgroup. This conformational change leads to an increase in the average area per lipid and, correspondingly, to a decrease of the bilayer thickness and the deuterium order parameters for the lipid tails, especially evident at high concentrations of oxidized lipid. Water defects are observed in the bilayers more frequently as the concentration of the oxidized lipids is increased. The changes in the structural properties of the bilayer and the water permeability are associated with the tendency of the oxidized lipid tails to bend toward the water interface. Our results suggest that one mechanism of cell membrane damage is the increase in membrane permeability due to the presence of oxidized lipids.
机译:脂质过氧化在细胞膜损伤中起重要作用。我们使用分子动力学模拟研究了脂质过氧化对1-棕榈酰基-2-亚油酰基-sn-甘油-3-磷脂酰胆碱(PLPC)脂质双层性能的影响。我们重点研究了具有氢过氧化物或醛基的亚油酸的四种主要氧化产物:9-反式,顺式-氢过氧化物亚油酸,13-反式,顺式-氢过氧化物亚油酸,9-氧代壬酸和12-氧代。 -9-十二碳烯酸。这些氧化的链取代了sn-2亚油酸酯链。 PLPC脂质双层的特性被表征为氧化脂质浓度的函数,每种氧化产物的浓度为2.8%至50%。脂质尾部中氧化官能团的引入导致脂质的重要构象变化:氧化尾部向水相弯曲,氧原子与水和极性脂质头基形成氢键。这种构象变化导致每个脂质的平均面积增加,并且相应地导致脂质尾部的双层厚度和氘阶参数的减小,尤其是在高浓度的氧化脂质下明显。随着氧化脂质浓度的增加,在双层中更频繁地观察到水缺陷。双层的结构性质和透水性的变化与氧化脂质尾巴向水界面弯曲的趋势有关。我们的结果表明,细胞膜损伤的一种机制是由于氧化脂质的存在导致膜通透性增加。

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