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The structures of glycophorin C N-glycans a putative component of the GPC receptor site for Plasmodium falciparum EBA-140 ligand

机译:恶性疟原虫EBA-140配体的GPC受体位点的假定成分糖蛋白C N-聚糖的结构

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摘要

Glycophorins C and D are highly glycosylated integral sialoglycoproteins of human red blood cell membranes carrying the Gerbich blood group antigens. The O- and N-glycosidic chains of the major erythrocyte glycoprotein (Lisowska E. 2001, Antigenic properties of human glycophorins – an update. Adv Exp Med Biol, 491:155–169; Tomita M and Marchesi VT. 1975, Amino-acid sequence and oligosaccharide attachment sites of human erythrocyte glycophorin. Proc Natl Acad Sci USA, 72:2964–2968.) are well characterized but the structure of GPC N-glycans has remained unknown. This problem became important since it was reported that GPC N-glycans play an essential role in the interaction with Plasmodium falciparum EBA-140 merozoite ligand. The elucidation of these structures seems essential for full characterization of the GPC binding site for the EBA-140 ligand. We have employed detailed structural analysis using sequential mass spectrometry to show that many GPC N-glycans contain H2 antigen structures and several contain polylactosamine structures capped with fucose. The results obtained indicate structural heterogeneity of the GPC N-glycans and show the existence of structural elements not found in glycophorin A N-glycans. Our results also open a possibility of new interpretation of the data concerning the binding of P. falciparum EBA-140 ligand to GPC. We hypothesize that preferable terminal fucosylation of N-glycosidic chains containing repeating lactosamine units of the GPC Gerbich variant could be an explanation for why the EBA-140 ligand does not react with GPC Gerbich and an indication that the EBA-140 interaction with GPC is distinctly dependent on the GPC N-glycan structure.
机译:糖蛋白C和D是携带Gerbich血型抗原的人红细胞膜的高度糖基化的整体唾液酸糖蛋白。主要红细胞糖蛋白的O和N糖苷链(Lisowska E. 2001,人糖蛋白的抗原特性–更新。AdvExp Med Biol,491:155-169; Tomita M和Marchesi VT,1975,氨基酸)人红血球糖蛋白的序列和寡糖附着位点(美国国家科学院院刊,72:2964-2968)已被很好地表征,但GPC N-聚糖的结构仍然未知。由于据报道GPC N聚糖在与恶性疟原虫EBA-140裂殖子配体的相互作用中起重要作用,因此该问题变得很重要。这些结构的阐明似乎对于EBA-140配体的GPC结合位点的完整表征至关重要。我们已经使用顺序质谱法进行了详细的结构分析,以显示许多GPC N-聚糖含有H2抗原结构,而另一些含有以岩藻糖封端的聚乳糖胺结构。所获得的结果表明了GPC N-聚糖的结构异质性,并且表明了在糖蛋白A N-聚糖中未发现的结构元件的存在。我们的结果也为有关恶性疟原虫EBA-140配体与GPC结合的数据的新解释开辟了可能性。我们假设,包含GPC Gerbich变体的重复乳糖胺单元的N-糖苷链的优选末端岩藻糖基化可以解释EBA-140配体为何不与GPC Gerbich反应,并表明EBA-140与GPC的相互作用明显取决于GPC N-聚糖结构。

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