首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Structure and orientation study of fusion peptide FP23 of gp41 from HIV-1 alone or inserted into various lipid membrane models (mono-, bi- and multibi-layers) by FT-IR spectroscopies and Brewster angle microscopy
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Structure and orientation study of fusion peptide FP23 of gp41 from HIV-1 alone or inserted into various lipid membrane models (mono-, bi- and multibi-layers) by FT-IR spectroscopies and Brewster angle microscopy

机译:单独的HIV-1或插入各种脂质膜模型(单层,双层和多层)的gp41的gp41融合肽FP23的结构和定向研究,通过FT-IR光谱和Brewster角显微镜进行

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摘要

In the present work, we study the structure and the orientation of the 23 N-terminal peptide of the HIV-1 gp 41 protein (AVGIGALFLGFLGAAGSTMGARS) called FP23. The behaviour of FP23 was investigated alone at the air/water interface and inserted into various lipid model systems: in monolayer or multibilayers of a DOPC/cholesterol/DOPE/DOPG (6/5/3/2) and in a DMPC bilayer. PMIRRAS and polarized ATR spectroscopy coupled with Brewster angle microscopy and spectral simulations were used to precisely determine the structure and the orientation of the peptide in its environment as well as the lipid perturbations induced by the FP23 insertion. The infra-red results show the structural polymorphism of the FP23 and its ability to transit quasi irreversibly from an alpha-helix to antiparallel beta-sheets. At the air/water interface, the transition is induced by compression of the peptide alone and is modulated by compression and lipid to peptide ratio (Ri) when FP23 is inserted into a lipid monolayer. In multibilayers and in a single bilayer, there is coexistence in quasi equal proportions of alpha-helix and antiparallel beta-sheets of FP23 at low peptide content (Ri = 100, 200) while antiparallel beta-sheets are predominant at high FP23 concentration (Ri = 50). In (multi)bilayer systems, evaluation of dichroic ratios and sprectral simulations show that both the alpha-helix and the antiparallel beta-sheets are tilted at diluted FP23 concentrations (tilt angle of a-helix with respect to the normal of the interface = 36.5 +/- 3.0 degrees for FP23 in multibilayers of DOPC/Chol/DOPE/DOPG at Ri = 200 and 39.0 +/- 5.0 degrees in a single bilayer of DMPC at Ri = 100 and tilt angle of the beta-sheets = 36.0 +/- 2.0 degrees for the beta-sheets in multibilayers and 30.0 +/- 2.0 degrees in the lipid bilayer). In parallel, the FP23 induces an increase of the lipid chain disorder which shows both by an increase of the methylene stretching frequencies and an increase of the average C-C-C angle of the acyl chains, At high FP23 content (Ri = 50), the antiparallel beta-sheets induce a complete disorganization of the lipid chains in (multi)bilayers. (c) 2005 Elsevier B.V All rights reserved.
机译:在目前的工作中,我们研究了称为FP23的HIV-1 gp 41蛋白(AVGIGALFLGFLGAAGSTMGARS)的23 N端肽的结构和方向。 FP23的行为是在空气/水界面处单独研究的,并插入到各种脂质模型系统中:在DOPC /胆固醇/ DOPE / DOPG(6/5/3/2)的单层或多层中以及在DMPC双层中。 PMIRRAS和极化ATR光谱结合Brewster角显微镜和光谱模拟被用来精确确定肽在其环境中的结构和方向,以及由FP23插入引起的脂质扰动。红外结果显示FP23的结构多态性及其从a螺旋向反平行β折叠不可逆转变的能力。在空气/水界面处,当将FP23插入脂质单层中时,仅通过压缩肽就可以诱导转变,并且可以通过压缩和脂质与肽的比率(Ri)来调节转变。在多层结构和单个双层结构中,低肽含量(Ri = 100、200)时,FP23的α-螺旋和反平行β-折叠的准相等比例共存,而在高FP23浓度(Ri)中,反平行β-折叠主要存在= 50)。在(多层)双层系统中,二向色比和离散模拟的评估表明,α-螺旋和反平行β-折叠均在稀释的FP23浓度下倾斜(a螺旋相对于界面法线的倾斜角= 36.5在Ri = 200时在DOPC / Chol / DOPE / DOPG双层中的FP23 +/- 3.0度,在Ri = 100时且在双层DMPC双层中FP23的39.0 +/- 5.0度,β片的倾斜角= 36.0 + / -多层β-折叠片为2.0度,脂质双层为30.0 +/- 2.0度)。平行地,FP23引起脂质链紊乱的增加,这通过增加亚甲基拉伸频率和增加酰基链的平均CCC角来显示。在高FP23含量(Ri = 50)下,反平行β层诱导(多层)双层中的脂质链完全混乱。 (c)2005 Elsevier B.V保留所有权利。

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