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Mass + Retention Time velence Structure: A Strategy for the Analysis of N-Glycans by Carbon LC-ESI-MS and Its Application to Fibrin N-Glycans

机译:质量+保留时间velence结构:碳LC-ESI-MS分析N-聚糖的策略及其在纤维蛋白N-聚糖中的应用

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Analysis of the numerous possible, often isobaric structuresof protein-bound oligosaccharides calls for a high-performance two-dimensional method that combines liquid chromatography's ability to separate isomers and mass spectrometry's ability to determine glycan composition. Here we investigate the usefulness of porous graphitic carbon columns coupled to ESI-MS for the separation of N-glycans with two or more sialic acids. Internal standards helped to rectify retention time fluctuations and thus allowed elution times to play an essential role in the structural assignment of peaks. For generation of a retention time library, standards representing the possible isomers of diantennary non-, mono-, and disialylated N-glycans, differing in the linkage of galactose and sialic acids as well as isobaric hybrid-type N-glycans, were produced using recombinant glycosyltransferases. Once the retention times library was established, isomers could be identified by LC-ESI-MS in the positive mode without additional MS/MS experiments. The method was applied for the detailed structural analysis of fibrin(ogen) N-glycans from various species (human, cow, pig, mouse, rat, cat, dog, Chinese hamster, horse, sheep, and chicken). All fibrins contained diantennary N-glycans. They differed in the occurrence of beta1,3-linked galactose, alpha2,3-linked sialic acids, and N-glycolylneuraminic acid, in the mono/diantennary glycan ratio, and in the O-acetylation of neuraminic acids. The separation system's potential for analyzing tri- and tetrasialylated N-glycans was demonstrated.
机译:对蛋白质结合的寡糖的众多可能的,常常是同量异位的结构进行分析,需要一种高性能的二维方法,该方法必须结合液相色谱分离异构体的能力和质谱分析确定聚糖成分的能力。在这里,我们研究了与ESI-MS偶联的多孔石墨碳柱对于用两种或多种唾液酸分离N-聚糖的有用性。内标有助于纠正保留时间的波动,因此洗脱时间在峰的结构分配中起着至关重要的作用。为了生成保留时间库,使用以下方法制备了标准品:双触角非,单和二唾液酸化N-聚糖的可能异构体,其半乳糖和唾液酸以及同量异位杂合型N-聚糖的连接不同。重组糖基转移酶。建立保留时间库后,无需进行额外的MS / MS实验,即可通过LC-ESI-MS以阳性模式鉴定异构体。该方法用于各种物种(人,牛,猪,小鼠,大鼠,猫,狗,中国仓鼠,马,绵羊和鸡)的纤维蛋白(原)N-聚糖的详细结构分析。所有纤维蛋白都含有双触角N-聚糖。它们的不同之处在于,β1,3-连接的半乳​​糖,α2,3-连接的唾液酸和N-甘氨酰神经氨酸的发生率,单/二烯基聚糖比率和神经氨酸的O-乙酰化不同。证明了分离系统分析三唾液酸和四唾液酸化N-聚糖的潜力。

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