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深入理解肽对多糖抗原分子模拟的基础:以福氏志贺菌5a为例。

Toward a better understanding of the basis of the molecular mimicry of polysaccharide antigens by peptides: the example of Shigella flexneri 5a.

作者信息

Clément Marie-Jeanne, Fortuné Antoine, Phalipon Armelle, Marcel-Peyre Véronique, Simenel Catherine, Imberty Anne, Delepierre Muriel, Mulard Laurence A

机构信息

Unité de RMN des Biomolécules, URA CNRS 2185, Institut Pasteur, 28 Rue du Dr. Roux, 75724 Paris Cedex 15, France.

出版信息

J Biol Chem. 2006 Jan 27;281(4):2317-32. doi: 10.1074/jbc.M510172200. Epub 2005 Oct 26.

Abstract

Protein conjugates of oligosaccharides or peptides that mimic complex bacterial polysaccharide antigens represent alternatives to the classical polysaccharide-based conjugate vaccines developed so far. Hence, a better understanding of the molecular basis ensuring appropriate mimicry is required in order to design efficient carbohydrate mimic-based vaccines. This study focuses on the following two unrelated sets of mimics of the Shigella flexneri 5a O-specific polysaccharide (O-SP): (i) a synthetic branched pentasaccharide known to mimic the average solution conformation of S. flexneri 5a O-SP, and (ii) three nonapeptides selected upon screening of phage-displayed peptide libraries with two protective murine monoclonal antibodies (mAbs) of the A isotype specific for S. flexneri 5a O-SP. By inducing anti-O-SP antibodies upon immunization in mice when appropriately presented to the immune system, the pentasaccharide and peptides p100c and p115, but not peptide p22, were qualified as mimotopes of the native antigen. NMR studies based on transferred NOE (trNOE) experiments revealed that both kinds of mimotopes had an average conformation when bound to the mAbs that was close to that of their free form. Most interestingly, saturation transfer difference (STD) experiments showed that the characteristic turn conformations adopted by the major conformers of p100c and p115, as well as of p22, are clearly involved in mAb binding. These latter experiments also showed that the branched glucose residue of the pentasaccharide was a key part of the determinant recognized by the protective mAbs. Finally, by using NMR-derived pentasaccharide and peptide conformations coupled to STD information, models of antigen-antibody interaction were obtained. Most interestingly, only one model was found compatible with experimental data when large O-SP fragments were docked into one of the mIgA-binding sites. This newly made available system provides a new contribution to the understanding of the molecular mimicry of complex polysaccharides by peptides and short oligosaccharides.

摘要

模仿复杂细菌多糖抗原的寡糖或肽的蛋白质缀合物是目前已开发的基于经典多糖的缀合疫苗的替代物。因此,为了设计高效的基于碳水化合物模拟物的疫苗,需要更好地理解确保适当模拟的分子基础。本研究聚焦于以下两组与弗氏志贺菌5a O特异性多糖(O-SP)无关的模拟物:(i)一种已知能模拟弗氏志贺菌5a O-SP平均溶液构象的合成支链五糖,以及(ii)通过用两种针对弗氏志贺菌5a O-SP的A同种型保护性鼠单克隆抗体(mAb)筛选噬菌体展示肽库而选择的三种九肽。当以适当方式呈递给免疫系统时,五糖以及肽p100c和p115在小鼠免疫后能诱导产生抗O-SP抗体,而肽p22则不能,它们被鉴定为天然抗原的模拟表位。基于转移核Overhauser效应(trNOE)实验的核磁共振(NMR)研究表明,两种模拟表位在与mAb结合时的平均构象与其游离形式相近。最有趣的是,饱和转移差异(STD)实验表明,p100c、p115以及p22的主要构象体所采用的特征性转角构象明显参与了mAb结合。这些实验还表明,五糖的分支葡萄糖残基是保护性mAb识别的决定簇的关键部分。最后,通过使用NMR衍生的五糖和肽构象以及STD信息,获得了抗原-抗体相互作用模型。最有趣的是,当将大的O-SP片段对接至其中一个mIgA结合位点时,仅发现一种模型与实验数据相符。这个新建立的系统为理解肽和短寡糖对复杂多糖的分子模拟提供了新的贡献。

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