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与HIV-1包膜糖蛋白gp41中窖蛋白-1结合域相对应的免疫原性CBD1肽具有穿透细胞膜并结合窖蛋白-1的能力。

The immunogenic CBD1 peptide corresponding to the caveolin-1 binding domain in HIV-1 envelope gp41 has the capacity to penetrate the cell membrane and bind caveolin-1.

作者信息

Benferhat Rima, Sanchez-Martinez Silvia, Nieva José L, Briand Jean Paul, Hovanessian Ara G

机构信息

UPR 2228 CNRS, UFR Biomédicale-Université René Descartes, 45 rue des Saints Pères, 75270 Paris Cedex 06, France.

出版信息

Mol Immunol. 2008 Apr;45(7):1963-75. doi: 10.1016/j.molimm.2007.10.036. Epub 2007 Dec 3.

Abstract

The potential caveolin-1 binding domain (CBD), referred to as CBD1 and CBD2, is highly conserved in the transmembrane envelope glycoprotein of various HIV-1 and HIV-2 isolates, respectively. However, HIV-1 neutralizing antibodies raised against the synthetic CBD1 peptide (SLEQIWNNMTWMQWDK) do not cross-react with the CBD2 peptide (SLTPDWNNMTWQEWER) and have no effect on HIV-2 infection. Here we show that the CBD2 peptide is not immunogenic under similar immunization conditions as the CBD1 peptide. Moreover, the CBD1 but not the CBD2 peptide has the capacity to bind caveolin-1 in crude cell extracts thus suggesting the existence of structural and/or conformational differences between CBD1 and CBD2. Accordingly, circular dichroism spectroscopy and fluorimetry analysis indicated that CBD1 but not CBD2 could adopt a defined secondary structure and form a complex with a peptide corresponding to the caveolin-1 scaffolding domain, which is the site of interaction of caveolin-1 with various proteins. In line with these observations, CBD1 but not CBD2 binds cells and forms large aggregates at the plasma membrane by colocalizing with cytofacial caveolin-1. This latter is dependent on the lipid raft integrity of the plasma membrane. Supporting that the ability to penetrate into plasma membranes is sustained by folding at the interface, CBD1 but not CBD2 has the capacity to insert into lipid monolayers, penetrate into artificial membranes and adopt a beta-sheet conformation in presence of lipid vesicles. These structural determinants and membrane partitioning properties could account for the immunogenicity of the CBD1 peptide in various animals.

摘要

潜在的窖蛋白-1结合域(CBD),分别称为CBD1和CBD2,在各种HIV-1和HIV-2分离株的跨膜包膜糖蛋白中高度保守。然而,针对合成的CBD1肽(SLEQIWNNMTWMQWDK)产生的HIV-1中和抗体与CBD2肽(SLTPDWNNMTWQEWER)不发生交叉反应,并且对HIV-2感染没有影响。在此我们表明,在与CBD1肽相似的免疫条件下,CBD2肽不具有免疫原性。此外,CBD1肽而非CBD2肽能够在粗细胞提取物中结合窖蛋白-1,这表明CBD1和CBD2之间存在结构和/或构象差异。相应地,圆二色光谱和荧光分析表明,CBD1能够形成特定的二级结构并与对应于窖蛋白-1支架结构域的肽形成复合物,而CBD2则不能,窖蛋白-1支架结构域是窖蛋白-1与各种蛋白质相互作用的位点。与这些观察结果一致,CBD1而非CBD2结合细胞并通过与细胞膜内表面的窖蛋白-1共定位在质膜处形成大的聚集体。后者依赖于质膜的脂筏完整性。支持通过在界面处折叠来维持进入质膜的能力,CBD1而非CBD2能够插入脂质单层、穿透人工膜并在脂质囊泡存在下采用β-折叠构象。这些结构决定因素和膜分配特性可以解释CBD1肽在各种动物中的免疫原性。

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