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Characterization of Glycan Structures of Chondroitin Sulfate-Glycopeptides Facilitated by Sodium Ion-Pairing and Positive Mode LC-MS/MS

机译:钠离子配对和正模式LC-MS / MS促进硫酸软骨素-糖肽的聚糖结构表征

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摘要

Purification and liquid chromatography-tandem mass spectrometry (LC-MS/MS) characterization of glycopeptides, originating from protease digests of glycoproteins, enables site-specific analysis of protein N- and O-glycosylations. We have described a protocol to enrich, hydrolyze by chondroitinase ABC, and characterize chondroitin sulfate-containing glycopeptides (CS-glycopeptides) using positive mode LC-MS/MS. The CS-glycopeptides, originating from the Bikunin proteoglycan of human urine samples, had ΔHexAGalNAcGlcAGalGalXyl-O-Ser hexasaccharide structure and were further substituted with 0-3 sulfate and 0-1 phosphate groups. However, it was not possible to exactly pinpoint sulfate attachment residues, for protonated precursors, due to extensive fragmentation of sulfate groups using high-energy collision induced dissociation (HCD). To circumvent the well-recognized sulfate instability, we now introduced Na+ ions to form sodiated precursors, which protected sulfate groups from decomposition and facilitated the assignment of sulfate modifications. Sulfate groups were pinpointed to both Gal residues and to the GalNAc of the hexasaccharide structure. The intensities of protonated and sodiated saccharide oxonium ions were very prominent in the HCD-MS2 spectra, which provided complementary structural analysis of sulfate substituents of CS-glycopeptides. We have demonstrated a considerable heterogeneity of the bikunin CS linkage region. The realization of these structural variants should be beneficial in studies aimed at investigating the importance of the CS linkage region with regards to the biosynthesis of CS and potential interactions to CS binding proteins. Also, the combined use of protonated and sodiated precursors for positive mode HCD fragmentation analysis will likely become useful for additional classes of sulfated glycopeptides. >Graphical Abstract
机译:来自糖蛋白蛋白酶消化物的糖肽的纯化和液相色谱-串联质谱(LC-MS / MS)表征,可进行蛋白质N和O糖基化的位点特异性分析。我们已经描述了使用正模式LC-MS / MS富集,水解软骨素酶ABC并表征含硫酸软骨素的糖肽(CS-糖肽)的协议。源自人尿样品的比库宁蛋白聚糖的CS-糖肽具有ΔHexAGalNAcGlcAGalGalXyl-O-Ser六糖结构,并进一步被0-3硫酸盐和0-1磷酸基团取代。但是,由于使用高能碰撞诱导解离(HCD)的硫酸盐基团广泛断裂,因此无法精确指出质子化前体的硫酸盐附着残基。为了避免众所周知的硫酸盐不稳定性,我们现在引入Na + 离子形成钠化的前体,从而保护了硫酸盐基团免于分解并促进了硫酸盐修饰的赋值。硫酸盐基团被精确定位到Gal残基和六糖结构的GalNAc上。在HCD-MS2光谱中,质子化和糖化的糖氧离子的强度非常突出,这为CS-糖肽的硫酸盐取代基提供了互补的结构分析。我们已经证明了比库宁CS链接区域的相当大的异质性。这些结构变体的实现在旨在研究CS连锁区域关于CS的生物合成以及与CS结合蛋白的潜在相互作用方面的重要性的研究中应该是有益的。同样,将质子化的和磺化的前体联合用于正模式HCD片段分析将可能对其他类别的硫酸化糖肽有用。 <!-fig ft0-> <!-fig @ position =“ anchor” mode =文章f4-> <!-fig mode =“ anchred” f5-> >图形摘要<!- fig / graphic | fig / alternatives / graphic mode =“ anchored” m1-> <!-标题a7->ᅟ

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