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B群脑膜炎球菌α(2-8)连接唾液酸多糖的螺旋表位

Helical epitope of the group B meningococcal alpha(2-8)-linked sialic acid polysaccharide.

作者信息

Brisson J R, Baumann H, Imberty A, Pérez S, Jennings H J

机构信息

Institute for Biological Sciences, National Research Council of Canada, Ottawa.

出版信息

Biochemistry. 1992 Jun 2;31(21):4996-5004. doi: 10.1021/bi00136a012.

Abstract

The immunological properties of the group B meningococcal alpha(2-8)-linked sialic acid polysaccharide have been rationalized in terms of a model where the random coil nature of the polymer can be described by the presence of local helices. The conformational versatility of the alpha NeuAc(2-8)alpha NeuAc linkage has been explored by NMR studies at 600 MHz in conjunction with potential energy calculations for colominic acid, an alpha(2-8)NeuAc polymer, and the trisaccharide alpha NeuAc(2-8)alpha NeuAc(2-8)beta NeuAc. Potential energy calculations were used to estimate the energetically favorable conformers and to describe the wide range of helices which the polymer can adopt. No unique conformer was found to satisfy all NMR constraints, and only ensemble averaged nuclear Overhauser enhancements could correctly simulate the experimental data. Conformational differences between the polymer and the trisaccharide could be best explained in terms of slight changes in the relative distribution of conformers in solution. Similar helical parameters for the alpha(2-8)NeuAc polymer and poly(A) were proposed as the basis for their cross-reactivity to a monoclonal antibody IgMNOV. The unusual length dependency for binding of oligosaccharide to group B specific antibodies was postulated to arise from the recognition of a high-order local helix with an extended conformation which was not highly populated in solution.

摘要

B群脑膜炎球菌α(2-8)连接的唾液酸多糖的免疫特性已根据一个模型得到合理解释,在该模型中,聚合物的无规卷曲性质可通过局部螺旋的存在来描述。通过600 MHz的核磁共振研究,结合对α(2-8)NeuAc聚合物结肠酸和三糖αNeuAc(2-8)αNeuAc(2-8)βNeuAc的势能计算,探索了αNeuAc(2-8)αNeuAc连接的构象多样性。势能计算用于估计能量上有利的构象异构体,并描述聚合物可以采用的广泛螺旋结构。未发现单一的构象异构体能满足所有核磁共振约束,只有集合平均核Overhauser增强效应才能正确模拟实验数据。聚合物和三糖之间的构象差异可以用溶液中构象异构体相对分布的微小变化来最好地解释。有人提出,α(2-8)NeuAc聚合物和聚(A)具有相似的螺旋参数,这是它们与单克隆抗体IgMNOV发生交叉反应的基础。寡糖与B群特异性抗体结合的异常长度依赖性被推测是由于识别了一种在溶液中丰度不高的具有伸展构象的高阶局部螺旋。

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