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Resolving isomeric glycopeptide glycoforms with hydrophilic interaction chromatography (HILIC)

机译:用亲水相互作用色谱法(HILIC)解析同分异构的糖肽糖型

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The ability to resolve glycans while attached to tryptic peptides would greatly facilitate glycoproteomics, as this would enable site-specific glycan characterization. Peptide/glycopeptide separations are typically performed using reversed-phase liquid chromatography (RPLC), where retention is driven by hydrophobic interaction. As the hydrophilic glycans do not interact significantly with the RPLC stationary phase, it is difficult to resolve glycopeptides that differ only in their glycan structure, even when these differences are large. Alternatively, glycans interact extensively with the stationary phases used in hydrophilic interaction chromatography (HILIC), and consequently, differences in glycan structure have profound chromatographic shifts in this chromatographic mode. Here, we evaluate HILIC for the separation of isomeric glycopeptide mixtures that have the same peptide backbone but isomeric glycans. Hydrophilic functional groups on both the peptide and the glycan interact with the HILIC stationary phase, and thus, changes to either of these moieties can alter the chromatographic behavior of a glycopeptide. The interactive processes permit glycopeptides to be resolved from each other based on differences in their amino acid sequences and/or their attached glycans. The separations of glycans in HILIC are sufficient to permit resolution of isomeric N-glycan structures, such as sialylated N-glycan isomers differing in a2-3 and a2-6 linkages, while these glycans remain attached to peptides.
机译:在连接胰蛋白酶肽时分解聚糖的能力将极大地促进糖蛋白质组学,因为这将实现位点特异性聚糖的表征。肽/糖肽分离通常使用反相液相色谱(RPLC)进行,其中保留是由疏水相互作用驱动的。由于亲水性聚糖与RPLC固定相之间没有显着相互作用,因此即使这些差异很大,也很难分辨仅在其聚糖结构上有所不同的糖肽。或者,聚糖与亲水相互作用色谱法(HILIC)中使用的固定相广泛相互作用,因此,在这种色谱模式下,聚糖结构的差异会产生深远的色谱变化。在这里,我们评估HILIC对具有相同肽主链但异构聚糖的异构糖肽混合物的分离。肽和聚糖上的亲水性官能团均与HILIC固定相相互作用,因此,这些部分中任何一个的改变均可改变糖肽的色谱行为。相互作用过程允许糖肽基于其氨基酸序列和/或其附着的聚糖之间的差异而彼此分离。 HILIC中聚糖的分离足以允许分离出异构的N-聚糖结构,例如a2-3和a2-6键不同的唾液酸化N-聚糖异构体,而这些聚糖仍与肽连接。

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