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脑膜炎奈瑟菌A群荚膜多糖片段的膦酸类似物的合成及生物学评价

Synthesis and biological evaluation of phosphono analogues of capsular polysaccharide fragments from Neisseria meningitidis A.

作者信息

Torres-Sanchez Maria I, Zaccaria Cristina, Buzzi Benedetta, Miglio Gianluca, Lombardi Grazia, Polito Laura, Russo Giovanni, Lay Luigi

机构信息

Dipartimento di Chimica Organica e Industriale and Centro Interdisciplinare Studi Bio-molecolari e Applicazioni Industriali, Università degli Studi di Milano via Venezian 21, 20133 Milano, Italy.

出版信息

Chemistry. 2007;13(23):6623-35. doi: 10.1002/chem.200601743.

Abstract

Neisseria meningitidis type A (MenA) is a Gram-negative encapsulated bacterium that may cause explosive epidemics of meningitis, especially in the sub-Saharan region of Africa. The development and manufacture of an efficient glycoconjugate vaccine against Neisseria meningitidis A is greatly hampered by the poor hydrolytic stability of its capsular polysaccharide, which is made up of (1-->6)-linked 2-acetamido-2-deoxy-alpha-D-mannopyranosyl phosphate repeating units. Since this chemical lability is a product of the inherent instability of the phosphodiester bridges, here we report the synthesis of phosphonoester-linked oligomers of N-acetyl mannosamine as candidates for stabilised analogues of the corresponding phosphate-bridged saccharides. The installation of each interglycosidic phosphonoester linkage was achieved by Mitsunobu coupling of a glycosyl C-phosphonate building block with the 6-OH moiety of a mannosaminyl residue. Each of the synthesised compounds contains an O-linked aminopropyl spacer at its reducing end (alpha- or beta-oriented) to allow for protein conjugation. The relative affinities of the synthetic molecules were investigated by a competitive ELISA assay and showed that a human polyclonal anti-MenA serum can recognise both the phosphonoester-bridged fragments 1-3 and their monomeric subunits, glycosides 20 and 21. Moreover, the biological results suggest that the abilities of these compounds to inhibit the binding of a specific antibody to MenA polysaccharide are dependent on the chain lengths of the molecules, but independent on the orientations of the anomeric linkers.

摘要

A群脑膜炎奈瑟菌(MenA)是一种革兰氏阴性有荚膜细菌,可引发脑膜炎的爆发性流行,尤其是在非洲撒哈拉以南地区。针对A群脑膜炎奈瑟菌研发和生产高效的糖缀合物疫苗,受到其荚膜多糖水解稳定性差的极大阻碍,该荚膜多糖由(1→6)连接的2-乙酰氨基-2-脱氧-α-D-甘露吡喃糖基磷酸重复单元组成。由于这种化学不稳定性是磷酸二酯桥固有不稳定性的产物,在此我们报告合成了N-乙酰甘露糖胺的膦酸酯连接的寡聚物,作为相应磷酸桥连糖类稳定类似物的候选物。每个糖苷间膦酸酯键的安装是通过糖基C-膦酸酯结构单元与甘露糖胺残基的6-OH部分的光延反应实现的。每个合成化合物在其还原端(α或β取向)含有一个O-连接的氨丙基间隔基,以允许与蛋白质偶联。通过竞争性ELISA测定研究了合成分子的相对亲和力,结果表明人多克隆抗MenA血清既能识别膦酸酯桥连片段1-3,也能识别它们的单体亚基,即糖苷20和21。此外,生物学结果表明,这些化合物抑制特异性抗体与MenA多糖结合的能力取决于分子的链长,但与异头连接基的取向无关。

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