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On the microscopic and mesoscopic perturbations of lipid bilayers upon interaction with the MPER domain of the HIV glycoprotein gp41

机译:在与HIV糖蛋白GP41的酰磷蛋白的互动域相互作用时脂双层的微观和脑镜扰动

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摘要

The effect of the 665-683 fragment of the HIV fusion glycoprotein 41, corresponding to the MPER domain of the protein and named gp41MPER, on the microscopic structure and mesoscopic arrangement of palmitoyl oleoyl phosphatidylcholine (POPC) and POPC/sphingomyelin (SM)/cholesterol (CHOL) lipid bilayers is analyzed. The microscopic structuring of the bilayers has been studied by Electron Spin Resonance (ESR) spectroscopy, using glycerophosphocholines spin-labelled in different positions along the acyl chain. Transitions of the bilayer liquid crystalline state have been also monitored by Differential Scanning Calorimetry (DSC). Changes of the bilayers morphology have been studied by determining the dimension of the liposomes through Dynamic Light Scattering (DLS) measurements. The results converge in showing that the sample preparation procedure, the bilayer composition and the peptide/lipid ratio critically tune the lipid response to the peptide/membrane interaction. When gp41MPER is added to preformed liposomes, it positions at the bilayer interface and the lipid perturbation is limited to the more external segments. In contrast, if the peptide is mixed with the lipids during the liposome preparation, it assumes a trans-membrane topology. This happens at all peptide/lipid ratios for fluid POPC bilayers, while in the case of rigid POPC/SM/CHOL membranes a minimum ratio has to be reached, thus suggesting peptide self-aggregation to occur. Peptide insertion results in a dramatic increase of the lipid ordering and bilayer stiffening, which reflect in significant changes in liposome average dimension and distribution. The biological implications of these findings are discussed. (C) 2016 Elsevier B.V. All rights reserved.
机译:HIV融合糖蛋白41的665-683片段的效果,对应于蛋白质的MPER结构域和名为GP41mper的棕榈酰到磷脂酰氨基(POPC)和POPC /鞘磷脂(SM)/胆固醇的微观结构和思科排列(CHOL)分析脂质双层。通过电子自旋共振(ESR)光谱研究了双层的微观结构,使用沿酰基链的不同位置旋转标记的甘油磷计算机。通过差示扫描量热法(DSC)监测双层液晶状态的转变。通过通过动态光散射(DLS)测量来确定脂质体的尺寸来研究双层形态的变化。结果通过表明样品制备方法,双层组合物和肽/脂质比重视脂质响应对肽/膜相互作用的影响。当添加GP41mper以预先形成的脂质体时,它位于双层界面处并且脂质扰动限于更外部段。相反,如果在脂质体制剂期间肽与脂质混合,则它呈现跨膜拓扑。这种情况发生在流体popc双层的所有肽/脂质比中,而在刚性popc / sm / chol膜的情况下,必须达到最小值,因此表明发生肽自聚集。肽插入导致脂质排序和双层加强的显着增加,这反映了脂质体平均尺寸和分布的显着变化。讨论了这些发现的生物学意义。 (c)2016年Elsevier B.v.保留所有权利。

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