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利用新推导参数对皮肤神经酰胺NS进行的粗粒度模拟阐明了熔融相的结构。

Coarse-grain simulations of skin ceramide NS with newly derived parameters clarify structure of melted phase.

作者信息

Sovová Žofie, Berka Karel, Otyepka Michal, Jurečka Petr

机构信息

Regional Centre of Advanced Technologies and Materials, Department of Physical Chemistry, Faculty of Science, Palacký University , 17 Listopadu 12, 77146 Olomouc, Czech Republic.

出版信息

J Phys Chem B. 2015 Mar 12;119(10):3988-98. doi: 10.1021/jp5092366. Epub 2015 Feb 25.

Abstract

Ceramides are lipids that are involved in numerous biologically important structures (e.g., the stratum corneum and ceramide-rich platforms) and processes (e.g., signal transduction and membrane fusion), but their behavior is not fully understood. We report coarse-grain force field parameters for N-lignocerylsphingosine (ceramide NS, also known as ceramide 2) that are consistent with the Martini force field. These parameters were optimized for simulations in the gel phase and validated against atomistic simulations. Coarse-grained simulations with our parameters provide areas per lipid, membrane thicknesses, and electron density profiles that are in good agreement with atomistic simulations. Properties of the simulated membranes are compared with available experimental data. The obtained parameters were used to model the phase behavior of ceramide NS as a function of temperature and hydration. At low water content and above the main phase transition temperature, the bilayer melts into an irregular phase, which may correspond to the unstructured melted-chain phase observed in X-ray diffraction experiments. The developed parameters also reproduce the extended conformation of ceramide, which may occur in the stratum corneum. The parameters presented herein will facilitate studies on important complex functional structures such as the uppermost layer of the skin and ceramide-rich platforms in phospholipid membranes.

摘要

神经酰胺是一种脂质,参与众多具有重要生物学意义的结构(如角质层和富含神经酰胺的平台)和过程(如信号转导和膜融合),但其行为尚未完全被理解。我们报告了与Martini力场一致的N-木质酰鞘氨醇(神经酰胺NS,也称为神经酰胺2)的粗粒度力场参数。这些参数针对凝胶相模拟进行了优化,并通过原子模拟进行了验证。使用我们的参数进行的粗粒度模拟提供的每个脂质的面积、膜厚度和电子密度分布与原子模拟结果高度吻合。将模拟膜的性质与现有的实验数据进行了比较。所获得的参数用于模拟神经酰胺NS随温度和水合作用的相行为。在低含水量且高于主要相变温度时,双层膜熔化为不规则相,这可能对应于X射线衍射实验中观察到的无结构的熔融链相。所开发的参数还重现了可能出现在角质层中的神经酰胺的伸展构象。本文提出的参数将有助于对重要的复杂功能结构进行研究,如皮肤的最上层和磷脂膜中富含神经酰胺的平台。

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