论文标题

胆固醇与麦角固醇对DPPC双层特性的影响:原子模拟的见解

Effect of Cholesterol vs. Ergosterol on DPPC Bilayer Properties: Insights from Atomistic Simulations

论文作者

Alavizargar, Azadeh, Keller, Fabian, Wedlich-Söldner, R., Heuer, Andreas

论文摘要

固醇在生物膜的组织中属于主要作用,尤其是在复杂的脂质混合物中形成液体有序结构域。在这里,我们采用了分子动力学模拟来比较胆固醇和麦角固醇作为主要的哺乳动物和真菌细胞的主要固醇对二元混合物的1,2-二甲米酰二酰二酰基-SN-甘油-3-磷酸磷酸磷酸(DPPC)的二进制混合物,作为饱和脂质的含量。与先前的工作一致,我们观察到,固醇分子的添加在凝胶相和液相中都会修饰DPPC的顺序。当分别通过尾部扭转角的反式/hauche构型施加的整体倾斜角度和尾巴的结构时,可以制定出固醇影响的更详细的图片,例如,揭示,例如,近似温度 - 温度 - 温度 - 温度浓度的叠加范围从液体到液体到凝胶相。此外,讨论了一种新的定量措施来识别集体固醇效应的存在。此外,在比较两种类型的固醇时,添加胆固醇对磷脂特性的影响明显高于麦角固醇。观察到的差异可以归因于胆固醇环系统的较高平面性。这种平面性与其分子相互作用中固有的不对称性结合,从而可以更好地对齐,因此与饱和酰基链的相互作用更强。我们的结果表明,必须通过其他机制生成真菌质膜中麦角固醇的高阶。

Sterols have been ascribed a major role in the organization of biological membranes, in particular for the formation of liquid ordered domains in complex lipid mixtures. Here, we employed molecular dynamics simulations to compare the effects of cholesterol and ergosterol as the major sterol of mammalian and fungal cells, respectively, on binary mixtures with 1,2-dipalmitoyl-sn-glycero-3-phosphocholine (DPPC) as a proxy for saturated lipids. In agreement with previous work, we observe that the addition of sterol molecules modifies the order of DPPC both in the gel phase and in the liquid phase. When disentangling the overall tilt angle and the structure of the tail imposed by trans/gauche configurations of torsion angles in the tail, respectively, a more detailed picture of the impact of sterols can be formulated, revealing, e.g., an approximate temperature-concentration superposition ranging from the liquid to the gel phase. Furthermore, a new quantitative measure to identify the presence of collective sterol effects is discussed. Moreover, when comparing both types of sterols, addition of cholesterol has a noticeably stronger impact on phospholipid properties than of ergosterol. The observed differences can be attributed to higher planarity of the cholesterol ring system. This planarity combined with an inherent asymmetry in its molecular interactions leads to better alignment and hence stronger interaction with saturated acyl chains. Our results suggest that the high order demonstrated for ergosterol in fungal plasma membranes must therefore be generated via additional mechanisms.

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