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HIV-1糖蛋白41000融合肽N端在胶束中的模拟。

Simulation of the N-terminus of HIV-1 glycoprotein 41000 fusion peptide in micelles.

作者信息

Langham Allison, Kaznessis Yiannis

机构信息

Department of Chemical Engineering and Materials Science, University of Minnesota, MN 55455, USA.

出版信息

J Pept Sci. 2005 Apr;11(4):215-24. doi: 10.1002/psc.623.

Abstract

In this paper, the N-terminus of glycoprotein-41, the HIV-1 fusion peptide, was studied by molecular dynamics simulations in an explicit sodium dodecyl sulfate micelle. The simulation provides a detailed picture of the equilibrium structure and peptide stability as it interacts with the micelle. The equilibrium location of the peptide shows the peptide at the surface of the micelle with hydrophobic residues interacting with the micelle's core. At equilibrium, the peptide adopts an alpha-helical structure from residues 5-16 and a type-1 beta-turn from 17-20 with the other residues exhibiting more flexible conformations. The primary hydrophobic interactions with the micelle are from the leucine and phenylalanine residues (Leu-7, Phe-8, Leu-9, Phe-11, Leu-12) while the alanine and glycine residues (Ala-1, Gly-3, Gly-5, Ala-6, Gly-10, Gly-13, Ala-14, Ala-15, Gly-16, Gly-10, Ala-21) interact favorably with water molecules. The results suggest that Phe-8, part of the highly conserved FLG motif of the fusion peptide, plays a key role in the interaction of the peptide with membranes. Our simulations corroborate experimental investigations of the fusion peptide in SDS micelles, providing a high-resolution picture that explains the experimental findings.

摘要

在本文中,我们通过在明确的十二烷基硫酸钠胶束中进行分子动力学模拟,研究了HIV-1融合肽糖蛋白-41的N端。该模拟提供了肽与胶束相互作用时的平衡结构和肽稳定性的详细情况。肽的平衡位置显示其位于胶束表面,疏水残基与胶束核心相互作用。在平衡状态下,肽从第5至16位残基形成α螺旋结构,从第17至20位残基形成1型β转角,其他残基呈现更灵活的构象。与胶束的主要疏水相互作用来自亮氨酸和苯丙氨酸残基(Leu-7、Phe-8、Leu-9、Phe-11、Leu-12),而丙氨酸和甘氨酸残基(Ala-1、Gly-3、Gly-5、Ala-6、Gly-10、Gly-13、Ala-14、Ala-15、Gly-16、Gly-10、Ala-21)与水分子有良好的相互作用。结果表明,融合肽高度保守的FLG基序中的一部分Phe-8在肽与膜的相互作用中起关键作用。我们的模拟证实了对SDS胶束中融合肽的实验研究,提供了一个解释实验结果的高分辨率图像。

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