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Structural determination of novel sulfated octasaccharides isolated from chondroitin sulfate of shark cartilage and their application for characterizing monoclonal antibody epitopes

机译:从鲨鱼软骨素硫酸盐分离的新型硫酸八糖的结构测定及其在单克隆抗体表位表征中的应用

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Twelve octasaccharide fractions were obtained from chondroitin sulfate C derived from shark cartilage after hyaluronidase digestion. Their sugar and sulfate composition was assigned by matrix-assisted laser desorption ionization time of flight mass spectrometry. The sequences were determined at low picomole amounts by a combination of enzymatic digestions with high-performance liquid chromatography, and were composed of disaccharide building units including O [GlcUAβ1–3GalNAc], C [GlcUAβ1–3GalNAc(6S)], A [GlcUAβ1–3GalNAc(4S)], and/or D [GlcUA(2S)β1–3GalNAc(6S)], where 2S, 4S, and 6S represent 2-O-, 4-O-, and 6-O-sulfate, respectively. As many as 24 different sequences including minor ones were revealed, exhibiting a high degree of structural diversity reflecting the enormous heterogeneity of the parent polysaccharides. Nineteen of them were novel, with the other four reported previously as unsaturated counterparts obtained after digestion with chondroitinase. Microarrays of these structurally defined octasaccharide fractions were prepared using low picomole amounts of their lipid-derivatives to investigate the binding specificity of four commercial anti-chondroitin sulfate antibodies CS-56, MO-225, 2H6, and LY111. The results revealed that multiple unique sequences were recognized by each antibody, which implies that the common conformation shared by the multiple primary sequences in the intact chondroitin sulfate chains is important as an epitope for each monoclonal antibody. Comparison of the specificity of the tested antibodies indicates that CS-56 and MO-225 specifically recognize octasaccharides containing an A–D tetrasaccharide sequence, whereas 2H6 and LY111 require a hexasaccharide as a minimum size for their binding, and prefer sequences with A- and C-units such as C-C-A-C (2H6) or C-C-A-O, C-C-A-A, and C-C-A-C (LY111) for strong binding but require no D-unit.
机译:从透明质酸酶消化后的鲨鱼软骨中提取的硫酸软骨素C获得了十二个八糖级分。它们的糖和硫酸盐组成通过基质辅助激光解吸电离飞行时间质谱仪确定。该序列是通过酶消化与高效液相色谱法测定的低披甲酚量组成的,并由双糖构建单元组成,包括O [GlcUAβ1-3GalNAc],C [GlcUAβ1-3GalNAc(6S)],A [GlcUAβ1-3G] 3GalNAc(4S)]和/或D [GlcUA(2S)β1-3GalNAc(6S)],其中2S,4S和6S分别代表2-O-,4-O-和6-O-硫酸盐。揭示了多达24个不同的序列,包括次要序列,表现出高度的结构多样性,反映了母体多糖的巨大异质性。其中有19种是新颖的,其他4种以前报道为用软骨素酶消化后获得的不饱和对应物。使用低匹comole量的脂质衍生物制备这些结构确定的八糖馏分的微阵列,以研究四种商业抗硫酸软骨素抗体CS-56,MO-225、2H6和LY111的结合特异性。结果表明,每种抗体均识别出多个独特序列,这意味着完整的硫酸软骨素链中多个初级序列共有的共有构象对于每种单克隆抗体的表位很重要。所测试抗体的特异性比较表明,CS-56和MO-225可以特异性识别含有A–D四糖序列的八糖,而2H6和LY111则需要六糖作为其结合的最小尺寸,并且首选具有A-和D-序列的八糖。 C单元(例如CCAC(2H6)或CCAO,CCAA和CCAC(LY111))具有强结合力,但不需要D单元。

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  • 来源
    《Glycobiology》 |2007年第6期|631-645|共15页
  • 作者单位

    Department of Biochemistry Kobe Pharmaceutical University Higashinada-ku Kobe 658-8558 Japan;

    Laboratory of Proteoglycan Signaling and Therapeutics Graduate School of Life Science Hokkaido University Frontier Research Center for Post-Genomic Science and Technology Nishi 11-choume Kita 21-jo Kita-ku Sapporo Hokkaido 001-0021 Japan;

    Department of Biotechnology Faculty of Engineering Kyoto Sangyo University Kyoto 603-8558 Japan;

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