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来源于猫免疫缺陷病毒糖蛋白 gp36 的肽使脂质膜不稳定:分子动力学/实验联合研究。

Destabilization of lipid membranes by a peptide derived from glycoprotein gp36 of feline immunodeficiency virus: a combined molecular dynamics/experimental study.

机构信息

Department of Chemistry, University of Naples 'Federico II', Complesso di Monte S. Angelo, Naples, Italy.

出版信息

J Phys Chem B. 2012 Jan 12;116(1):401-12. doi: 10.1021/jp204781a. Epub 2011 Dec 19.

DOI:10.1021/jp204781a
PMID:22129079
Abstract

Viral fusion glycoproteins present a membrane-proximal external region (MPER) which is usually rich in aromatic residues and exhibits a marked tendency to stably reside at the membrane interfaces, leading, through unknown mechanisms, to a destabilization of the bilayer structure. This step has been proposed to be fundamental for the fusion process between target membrane and viral envelope. In the present work, we investigate the interaction between an octapeptide (C8) deriving from the MPER domain of gp36 of feline immunodeficiency virus and POPC bilayers by combining experimental results obtained by neutron reflectivity, electron spin resonance, circular dichroism, and fluorescence spectroscopy with molecular dynamics simulations. Our data indicate that C8 binds to the lipid bilayer adsorbing onto the membrane surface without deep penetration. As a consequence of this interaction, the bilayer thickness decreases. The association of the peptide with the lipid membrane is driven by hydrogen bonds as well as hydrophobic interactions that the Trp side chains form with the lipid headgroups. Upon peptide-bilayer interaction, C8 forms transient secondary structures ranging from 3(10) helices to turn conformations, while acyl chains of the peptide-exposed POPC molecules assume a more ordered packing. At the same time, lipid headgroups' hydration increases. The asymmetric lipid bilayer perturbation is proposed to play a fundamental role in favoring the membrane fusion process.

摘要

病毒融合糖蛋白呈现一个位于膜近外侧区域(MPER)的结构,通常富含芳香族残基,表现出稳定位于膜界面的明显趋势,通过未知机制导致双层结构的不稳定性。这个步骤被认为是靶膜与病毒包膜之间融合过程的关键。在本工作中,我们通过将中子反射率、电子自旋共振、圆二色性和荧光光谱学实验结果与分子动力学模拟相结合,研究了来自猫免疫缺陷病毒 gp36 的 MPER 结构域的八肽(C8)与 POPC 双层膜之间的相互作用。我们的数据表明,C8 结合到双层膜上,吸附在膜表面上而不深入穿透。由于这种相互作用,双层厚度减小。肽与脂质膜的结合是由氢键以及疏水力驱动的,色氨酸侧链与脂质头部基团形成疏水力。在肽-双层相互作用时,C8 形成从 3(10) 螺旋到转折构象的瞬态二级结构,而肽暴露的 POPC 分子的酰基链呈现出更有序的堆积。同时,脂质头部基团的水合作用增加。不对称脂质双层的扰动被认为在促进膜融合过程中起着至关重要的作用。

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