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O-Glycosylation of snails

机译:蜗牛的O-糖基化

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The glycosylation abilities of snails deserve attention, because snail species serve as intermediate hosts in the developmental cycles of some human and cattle parasites. In analogy to many other host-pathogen relations, the glycosylation of snail proteins may likewise contribute to these host-parasite interactions. Here we present an overview on the O-glycan structures of 8 different snails (land and water snails, with or without shell): Arion lusitanicus, Achatina fulica, Biomphalaria glabrata, Cepaea hortensis, Clea helena, Helix pomatia, Limax maximus and Planorbarius corneus. The O-glycans were released from the purified snail proteins by β-elimination. Further analysis was carried out by liquid chromatography coupled to electrospray ionization mass spectrometry and - for the main structures - by gas chromatography/mass spectrometry. Snail O-glycans are built from the four monosaccharide constituents: N-acetylgalactosamine, galactose, mannose and fucose. An additional modification is a methylation of the hexoses. The common trisaccharide core structure was determined in Arion lusitanicus to be N-acetylgalactosamine linked to the protein elongated by two 4-O-methylated galactose residues. Further elongations by methylated and unmethylated galactose and mannose residues and/or fucose are present. The typical snail O-glycan structures are different to those so far described. Similar to snail N-glycan structures they display methylated hexose residues.
机译:蜗牛的糖基化能力值得关注,因为蜗牛在某些人和牛寄生虫的发育周期中充当中间宿主。类似于许多其他宿主-病原体关系,蜗牛蛋白的糖基化可能同样促进了这些宿主-寄生虫的相互作用。在这里,我们概述了8种不同蜗牛(有或没有壳的蜗牛)的O-聚糖结构:Arion lusitanicus,Achatina fulica,Biomphalaria glabrata,Cepaea hortensis,Clea helena,Helix pomatia,Limax maximus和Planorbarius corneus 。通过β-消除从纯化的蜗牛蛋白中释放出O-聚糖。通过与电喷雾电离质谱联用的液相色谱法和-对于主要结构-通过气相色谱/质谱法进行进一步分析。蜗牛O-聚糖由四种单糖成分构成:N-乙酰半乳糖胺,半乳糖,甘露糖和岩藻糖。另外的修饰是己糖的甲基化。常见的三糖核心结构是在Arion lusitanicus中确定为N-乙酰半乳糖胺,与被两个4-O-甲基化半乳糖残基延长的蛋白质相连。存在甲基化和未甲基化的半乳糖和甘露糖残基和/或岩藻糖的进一步伸长。典型的蜗牛O-聚糖结构与迄今为止描述的不同。与蜗牛N-聚糖结构相似,它们显示甲基化的己糖残基。

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