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Synthesis of Group B Streptococcus type III polysaccharide fragments for evaluation of their interactions with monoclonal antibodies

机译:基团B型链球菌的合成III型多糖片段,用于评价它们与单克隆抗体相互作用

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Group B Streptococcus type III (GBSIII) is the most relevant serotype among GBS strains causing infections and the potential of its capsular polysaccharide conjugated to a protein carrier as vaccine is well documented. Polysaccharide from GBSIII (PSIII) can form helical structures in solution where negatively charged sialic acid residues would be disposed externally providing stabilization to the helix. A peculiar high affinity to specific monoclonal antibodies (mAbs) has been reported for PSIII, and fragments of diverse size bind to mAbs in a length dependent manner. These data have been rationalized in terms of conformational epitopes that would be formed by fragments with >4 saccharidic repeating units. Saturation Transfer Difference NMR experiments have demonstrated that the sialic acid residue is not involved in antibody recognition. However the molecular basis of the interaction between PSIII and mAbs has not been fully elucidated. An important prerequisite to achieve this would be the availability of the three possible sugar sequences representing the pentasaccharide PSIII repeating unit. Herein we established a [2 + 3] convergent approach leading to these three pentasaccharides (1-3) with the end terminal sugar bearing a linker for possible conjugation. The PSIII fragments were coupled to the genetically detoxified diphtheria toxin CRM197 to prove by ELISA that the three pentasaccharides are recognized by polyclonal anti-PSIII serum. The presence of the branching formed by a Glc residue beta-(1 -> 6) linked to GlcNAc was proven an important motif for antibody recognition.
机译:B组链球菌III型(GBSIII)是GBS菌株中最相关的血清型,导致感染和其囊状多糖与蛋白质载体缀合的潜力,因为疫苗记录得很好。来自GBSIII(PSIII)的多糖可以在溶液中形成螺旋结构,其中带负电荷的唾液酸残基将设置在外部向螺旋中提供稳定性。已经报道了对PSIII的特异性单克隆抗体(MAb)的特异性高亲和力,并且不同尺寸的片段以长度依赖性方式与MAb结合。这些数据在构象表位方面已经合理化,该表位将由具有> 4次糖重复单元的片段形成。饱和度转移差异NMR实验表明,唾液酸残基不参与抗体识别。然而,PSIII和MAb之间的相互作用的分子基础尚未得到完全阐明。实现这一目标的一个重要前提将是表示戊二糖PSIII重复单元的三种可能的糖序列的可用性。在本文中,我们建立了一种[2 + 3]会聚方法,其导致这三种戊二糖(1-3),其中端末端糖轴承用于可能的共轭。 PSIII片段与遗传解毒的白喉毒素CRM197偶联,以通过ELISA证明三种戊二糖被多克隆抗PSIII血清识别。通过连接到GlcNAc的Glc残基β-(1-> 6)形成的支化被证明是抗体识别的重要基色。

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