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首页> 外文期刊>Molecular & cellular proteomics: MCP >Positive Mode LC-MS/MS Analysis of Chondroitin Sulfate Modified Glycopeptides Derived from Light and Heavy Chains of The Human Inter-alpha-Trypsin Inhibitor Complex
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Positive Mode LC-MS/MS Analysis of Chondroitin Sulfate Modified Glycopeptides Derived from Light and Heavy Chains of The Human Inter-alpha-Trypsin Inhibitor Complex

机译:人间α-胰蛋白酶抑制剂复合物轻链和重链衍生的硫酸软骨素修饰糖肽的正模式LC-MS / MS分析

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摘要

The inter-alpha-trypsin inhibitor complex is a macromolecular arrangement of structurally related heavy chain proteins covalently cross-linked to the chondroitin sulfate (CS) chain of the proteoglycan bikunin. The inter-alpha-trypsin inhibitor complex is abundant in plasma and associated with inflammation, kidney diseases, cancer and diabetes. Bikunin is modified at Ser-10 by a single low-sulfated CS chain of 23-55 monosaccharides with 4-9 sulfate groups. The innermost four monosaccharides (GlcA beta 3Gal beta 3Gal beta 4Xyl beta-O-) compose the linkage region, believed to be uniform with a 4-O-sulfation to the outer Gal. The cross-linkage region of the bikunin CS chain is located in the nonsulfated nonreducing end, (GalNAc beta 4GlcA beta 3)(n), to which heavy chains (H1-H3) may be bound in GalNAc to Asp ester linkages. In this study we employed a glycoproteomics protocol to enrich and analyze light and heavy chain linkage and cross-linkage region CS glycopeptides derived from the vertical bar alpha vertical bar complex of human plasma, urine and cerebrospinal fluid samples. The samples were trypsinized, enriched by strong anion exchange chromatography, partially depolymerized with chondroitinase ABC and analyzed by LC-MS/MS using higher-energy collisional dissociation. The analyses demonstrated that the CS linkage region of bikunin is highly heterogeneous. In addition to sulfation of the Gal residue, Xyl phosphorylation was observed although exclusively in urinary samples. We also identified novel Neu5Ac and Fuc modifications of the linkage region as well as the presence of mono- and disialylated core 1 O-linked glycans on Thr-17. Heavy chains H1 and H2 were identified cross-linked to GalNAc residues one or two GlcA residues apart and H1 was found linked to either the terminal or subterminal GalNAc residues. The fragmentation behavior of CS glycopeptides under variable higher-energy collisional dissociation conditions displays an energy dependence that may be used to obtain complementary structural details. Finally, we show that the analysis of sodium adducts provides confirmatory information about the positions of glycan substituents.
机译:α-胰蛋白酶之间的抑制剂复合物是与蛋白多糖比库宁的硫酸软骨素(CS)链共价交联的结构相关重链蛋白的大分子排列。 α-胰蛋白酶间抑制剂复合物在血浆中含量丰富,并与炎症,肾脏疾病,癌症和糖尿病有关。 Bikunin在Ser-10处被具有4-9个硫酸基团的23-55个单糖的单个低硫酸盐CS链修饰。最里面的四个单糖(GlcA beta 3Gal beta 3Gal beta 4Xyl beta-O-)组成了连接区域,据信在外Gal上被4-O-硫酸化是均匀的。 Bikunin CS链的交联区域位于非硫酸化的非还原性末端(GalNAc beta 4GlcA beta 3)(n),重链(H1-H3)可以在GalNAc中结合到Asp酯键上。在这项研究中,我们采用了糖蛋白组学方案来丰富和分析源自人血浆,尿液和脑脊髓液样品的垂直条α垂直条复合物的轻链和重链连接和交联区域CS糖肽。用胰蛋白酶消化样品,通过强阴离子交换色谱法富集,用软骨素酶ABC部分解聚,并使用高能碰撞解离通过LC-MS / MS进行分析。分析表明,比库宁的CS连锁区域是高度异质的。除了Gal残基的硫酸化以外,虽然排尿样品中也观察到了Xyl磷酸化。我们还确定了新的Neu5Ac和Fuc修饰的连接区域,以及在Thr-17上存在单和二烯丙基化的核心1 O-连接的聚糖。鉴定出重链H1和H2与GalNAc残基交联一个或两个GlcA残基,发现H1与末端或亚末端GalNAc残基连接。 CS糖肽在可变的高能碰撞解离条件下的断裂行为表现出能量依赖性,可用于获得互补的结构细节。最后,我们表明钠加合物的分析提供了有关聚糖取代基位置的确证信息。

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