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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Comparison of Ternary Bilayer Mixtures with Asymmetric or Symmetric Unsaturated Phosphatidylcholine Lipids by Coarse Grained Molecular Dynamics Simulations
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Comparison of Ternary Bilayer Mixtures with Asymmetric or Symmetric Unsaturated Phosphatidylcholine Lipids by Coarse Grained Molecular Dynamics Simulations

机译:粗粒分子动力学模拟比较不对称或不饱和磷脂酰胆碱脂质三元双层混合物

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We studied the phase behavior of various ternary bilayer mixtures composed of cholesterol, an unsaturated lipid, and a fully saturated lipid, by means of molecular dynamics simulations of the MARTINI~1 coarse grain model. We aimed at comparing lateral organization and local properties of bilayers containing phosphatidylcholine (PC) lipids, either with two unsaturated tails (symmetric), or one unsaturated and one saturated tail (asymmetric), as the low-melting component of the mixture. The number of unsaturations per chain was systematically varied in both classes of unsaturated lipids, to account for its consequences in segregation. In the asym-metric unsaturated PCs, the saturated tail was kept identical to the hydrophobic chains of the fully saturated lipid component. Membranes with a symmetric or an asymmetric unsaturated lipid, with the same kind of unsaturated chain, show different phase behavior. Symmetric polyunsaturated PCs set the separation in two phases. Instead, the asymmetric polyunsaturated lipids induced nonideal mixing of components in single-phase bilayers. A significative drop of temperature, within the accessible temperature range, enhances the segregation in mixtures with the more unsaturated asymmetric PC, but still within a single phase. This different phase behavior between membranes with symmetric and asymmetric unsaturated PCs is also observed for lipids with the same total number of unsaturations. On the other hand, the degree of unsaturation per se enhances the segregation, by increasing the composition fluctuations in single-phase membranes with asymmetric PC lipids, and raising the line tension in the two-phase bilayer mixtures with symmetric polyunsaturated PCs. Dynamic clusters of unsaturated asymmetric lipids can be identified. The clusters show no correlation between leaflets, as observed for the phase domains in mixtures with the symmetric polyunsaturated PCs. Interestingly, we found that asymmetric PC lipids have a preferential orientation such that their saturated tails increase their density toward the periphery of the clusters, facing regions enriched in the fully saturated lipids and cholesterol. The degree of unsaturation increases the cluster size and also enhances the anisotropy of the orientation. The surface density of cholesterol follows a gradient that favors its interaction with the saturated tails. Such gradients in composition lead to gradients in order parameters, such as the conformational order and the area of the tails, which increases away from the unsaturated lipid clusters. We compared, in addition, differences in hydrophobic length mismatch between acyl chains of the low-melting and high-melting components, in mixtures containing either symmetric or asymmetric unsaturated lipids.
机译:我们通过MARTINI〜1粗粒模型的分子动力学模拟研究了由胆固醇,不饱和脂质和完全饱和脂质组成的各种三元双层混合物的相行为。我们旨在比较包含磷脂酰胆碱(PC)脂质的双层的横向组织和局部性质,该脂质具有两个不饱和尾巴(对称)或一个不饱和尾巴和一个饱和尾巴(不对称)作为混合物的低熔点成分。在不饱和脂质的两类中,每条链的不饱和键数量都有系统地变化,以说明其在分离中的后果。在不对称不饱和PC中,饱和尾巴与完全饱和脂质成分的疏水链保持相同。具有不饱和脂质对称或不对称的膜,具有相同种类的不饱和链,表现出不同的相行为。对称的多不饱和PC分为两个阶段。相反,不对称的多不饱和脂质诱导单相双层中组分的非理想混合。在可达到的温度范围内,温度的显着下降会增强与更不饱和的不对称PC的混合物中的偏析,但仍在单相内。对于具有相同不饱和总数的脂质,还可以观察到具有对称和不对称不饱和PC的膜之间的这种不同相行为。另一方面,不饱和度本身通过增加具有不对称PC脂质的单相膜的组成波动以及提高具有对称多不饱和PC的两相双层混合物中的线张力来增强偏析。可以确定不饱和不对称脂质的动态簇。簇显示小叶之间没有相关性,正如在与对称多不饱和PC的混合物中观察到的相域一样。有趣的是,我们发现非对称PC脂质具有优先的取向,以使它们的饱和尾部朝着簇的外围增加密度,朝向富含完全饱和脂质和胆固醇的区域。不饱和度增加了簇的大小,并且还增加了取向的各向异性。胆固醇的表面密度遵循有利于其与饱和尾巴相互作用的梯度。这种组成上的梯度导致顺序参数(例如构象顺序和尾巴面积)的梯度增加,其远离不饱和脂质簇而增加。此外,我们在包含对称或不对称不饱和脂质的混合物中比较了低熔点和高熔点组分的酰基链之间疏水长度失配的差异。

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