首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Configurational entropies of lipids in pure and mixed bilayers from atomic-level and coarse-grained molecular dynamics simulations
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Configurational entropies of lipids in pure and mixed bilayers from atomic-level and coarse-grained molecular dynamics simulations

机译:从原子级和粗粒度分子动力学模拟看纯净和混合双层中脂质的结构熵

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摘要

Single-chain and single-fragment configurational entropies of lipid tails in hydrated lipid bilayers are evaluated from molecular dynamics simulations using the quasi-harmonic approximation. The entropy distribution along individual acyl tails is obtained and compared to that of corresponding hydrocarbon chains in the liquid phase. We consider pure dipalmitoylphosphatidylcholine and mixed dioleoylphosphatidylcholine/dioleoylphosphatidylethanolamine bilayers. The systems are modeled at different levels of spatial resolution: In an atomic-level (AL) model all (heavy) atoms are explicitly simulated; in a coarse-grained (CG) model particles (beads) representing groups of covalently bound atoms are used, which map approximately four non-hydrogen atoms to one interaction site. Single-chain and single-fragment entropies and correlations between the motions of ( single) acyl chains are compared. A good correspondence is found between the flexibility of the AL and CG models. The loss in configurational entropy due to the reduction in the number of degrees of freedom upon coarse-graining of the model is estimated. The CG model shows about 4 times faster convergence of the chain entropies than the more detailed AL model. Corrections to the quasi-harmonic entropy estimates were found to be small for the CG model. For the AL model, the correction due to mode anharmonicities is small, but the correction due to pairwise (supralinear) mode correlations is sizable.
机译:水合脂质双层中脂质尾巴的单链和单片段构型熵是通过使用准谐波近似的分子动力学模拟进行评估的。获得沿各个酰基尾的熵分布,并将其与液相中相应的烃链的熵分布进行比较。我们考虑纯二棕榈酰磷脂酰胆碱和混合的油酰磷脂酰胆碱/油酰磷脂酰乙醇胺双层。在不同级别的空间分辨率下对系统进行建模:在原子级(AL)模型中,所有(重)原子都得到了明确模拟;在粗粒(CG)模型中,使用表示共价键合的原子组的粒子(珠子),这些粒子将大约四个非氢原子映射到一个相互作用位点。比较了单链和单片段的熵以及(单)酰基链的运动之间的相关性。在AL和CG模型的灵活性之间找到了很好的对应关系。估计由于模型粗粒度时自由度数量减少而导致的结构熵损失。 CG模型显示的链熵收敛速度比更详细的AL模型快4倍。发现对CG模型的准谐波熵估计值的校正很小。对于AL模型,由于模式不谐和引起的校正很小,但是由于成对(超线性)模式相关引起的校正相当大。

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