首页> 外文期刊>Journal of Molecular Biology >Molecular dynamics simulations of the influenza hemagglutinin fusion peptide in micelles and bilayers: conformational analysis of peptide and lipids.
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Molecular dynamics simulations of the influenza hemagglutinin fusion peptide in micelles and bilayers: conformational analysis of peptide and lipids.

机译:胶束和双层中流感血凝素融合肽的分子动力学模拟:肽和脂质的构象分析。

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摘要

Molecular dynamics simulations of the influenza hemagglutinin fusion peptide in two differently sized dodecylphosphocholine micelles and a palmitoyl oleoyl phosphatidylcholine bilayer were generated to analyze the influence of the environment. Four independent trajectories (5 ns each for the bilayer, and 2 ns each for the micelles) were generated for each system. The peptide lies at the surface of the micelles, while its N-terminal region inserts deeply in the bilayer. This leads to a substantial increase of the solvation and rigidity of the peptide in micelles as compared to the bilayer. The average structures, nevertheless, are similar in all three systems and agree reasonably with micelle-based NMR structures. When in the bilayer, the peptide increases the chain gauche population and area of adjacent lipids in the same binding leaflet, while it has the opposite effect for the nearby lipids of the other leaflet. These changes, which occur spontaneously to fill voids and defects, cause a decrease in the thickness of the membrane in the neighborhood of the peptide. They would be expected to promote positive curvature, as consistent with the formation of the convex bulge, or nipple classical surfactant theory of Israelachvili based on shapes is proposed to introduce the concept of a "dynamically induced shape" of the membrane lipids by the peptide.
机译:流行性感冒血凝素融合肽在两个不同大小的十二烷基磷脂酰胆碱胶束和一个棕榈酰油酰磷脂酰胆碱双层中的分子动力学模拟被用来分析环境的影响。为每个系统生成四个独立的轨迹(双层每个5 ns,胶束每个2 ns)。肽位于胶束的表面,而其N端区域深深插入双层中。与双层相比,这导致了胶束中肽的溶剂化和刚性的显着提高。尽管如此,平均结构在所有三个系统中都相似,并且与基于胶束的NMR结构合理地吻合。当在双层中时,该肽增加了同一结合小叶中的链状薄纱数量和相邻脂质的面积,而对另一小叶中的附近脂质却具有相反的作用。这些变化自发地发生,以填补空隙和缺陷,从而使肽附近的膜厚度减小。可以预期它们会促进正曲率,这与凸出凸起的形成相一致,或者提出了基于形状的基于Israelachvili的乳头经典表面活性剂理论,以引入由肽产生的膜脂质“动态诱导形状”的概念。

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