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番茄红素,而不是玉米黄质,作为角质层薄片层内细胞间脂质形成正交组织的骨架:水合神经酰胺 NS 双层模型的分子动力学模拟。

Lycopene, but not zeaxanthin, serves as a skeleton for the formation of an orthorhombic organization of intercellular lipids within the lamellae in the stratum corneum: Molecular dynamics simulations of the hydrated ceramide NS bilayer model.

机构信息

Faculty of Materials Science, Kim Il Sung University, Pyongyang, Democratic People's Republic of Korea.

Faculty of Physics, Kim Il Sung University, Pyongyang, Democratic People's Republic of Korea.

出版信息

Biochim Biophys Acta Biomembr. 2023 Jan 1;1865(1):184081. doi: 10.1016/j.bbamem.2022.184081. Epub 2022 Oct 27.

Abstract

Carotenoids play an important role in the protection of biomembranes against oxidative damage. Their function depends on the surroundings and the organization of the lipid membrane they are embedded in. Carotenoids are located parallel or perpendicular to the surface of the lipid bilayer. The influence of carotenoids on the organization of the lipid bilayer in the stratum corneum has not been thoroughly considered. Here, the orientation of the exemplary cutaneous carotenoids lycopene and zeaxanthin in a hydrated ceramide NS24 bilayer model and the influence of carotenoids on the lateral organization of the lipid bilayer model were studied by means of molecular dynamics simulations for 32 °C and 37 °C. The results confirm that lycopene is located parallel and zeaxanthin perpendicular to the surface of the lipid bilayer. The lycopene-loaded lipid bilayer appeared to have a strong orthorhombic organization, while zeaxanthin-loaded and pure lipid bilayers were organized in a disordered hexagonal-like and liquid-like state, respectively. The effect is stronger at 32 °C compared to 37 °C based on p-values. Therefore, it was assumed that carotenoids without hydroxyl polar groups in their structure facilitate the formation of the orthorhombic organization of lipids, which provides the skin barrier function. It was shown that the distance between carotenoid atoms matched the distance between atoms in the lipids, indicating that parallel located carotenoids without hydroxyl groups serve as a skeleton for lipid membranes inside the lamellae. The obtained results provide reasonable prediction of the overall qualitative properties of lipid model systems and show the importance of parallel-oriented carotenoids in the development and maintenance of the skin barrier function.

摘要

类胡萝卜素在保护生物膜免受氧化损伤方面发挥着重要作用。它们的功能取决于它们所处的环境和所嵌入的脂质膜的组织。类胡萝卜素位于脂质双层的平行或垂直于表面。类胡萝卜素对角质层中脂质双层组织的影响尚未得到充分考虑。在这里,通过分子动力学模拟研究了在水合神经酰胺 NS24 双层模型中代表性皮肤类胡萝卜素番茄红素和玉米黄质的取向,以及类胡萝卜素对脂质双层模型的侧向组织的影响,模拟温度分别为 32°C 和 37°C。结果证实,番茄红素位于脂质双层的平行面,而玉米黄质则垂直于脂质双层的表面。负载番茄红素的脂质双层似乎具有强烈的正交组织,而负载玉米黄质和纯脂质双层则分别呈无序六方状和液态状组织。基于 p 值,在 32°C 下的效果比 37°C 下的要强。因此,假设结构中没有羟基极性基团的类胡萝卜素有利于正交组织的形成,从而提供皮肤屏障功能。结果表明,类胡萝卜素原子之间的距离与脂质原子之间的距离相匹配,表明无羟基的平行定位类胡萝卜素作为层状内脂质膜的骨架。所得结果对脂质模型系统的整体定性性质提供了合理的预测,并表明了平行定位的类胡萝卜素在皮肤屏障功能的发展和维持中的重要性。

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