首页> 美国卫生研究院文献>Molecular Cellular Proteomics : MCP >Simultaneous Glycan-Peptide Characterization Using Hydrophilic Interaction Chromatography and Parallel Fragmentation by CID Higher Energy Collisional Dissociation and Electron Transfer Dissociation MS Applied to the N-Linked Glycoproteome of Campylobacter jejuni
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Simultaneous Glycan-Peptide Characterization Using Hydrophilic Interaction Chromatography and Parallel Fragmentation by CID Higher Energy Collisional Dissociation and Electron Transfer Dissociation MS Applied to the N-Linked Glycoproteome of Campylobacter jejuni

机译:使用亲水相互作用色谱和CID平行裂解高能碰撞解离和电子转移解离MS同时表征空肠弯曲菌N联糖蛋白组的糖基肽

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摘要

Campylobacter jejuni is a gastrointestinal pathogen that is able to modify membrane and periplasmic proteins by the N-linked addition of a 7-residue glycan at the strict attachment motif (D/E)XNX(S/T). Strategies for a comprehensive analysis of the targets of glycosylation, however, are hampered by the resistance of the glycan-peptide bond to enzymatic digestion or β-elimination and have previously concentrated on soluble glycoproteins compatible with lectin affinity and gel-based approaches. We developed strategies for enriching C. jejuni HB93-13 glycopeptides using zwitterionic hydrophilic interaction chromatography and examined novel fragmentation, including collision-induced dissociation (CID) and higher energy collisional (C-trap) dissociation (HCD) as well as CID/electron transfer dissociation (ETD) mass spectrometry. CID/HCD enabled the identification of glycan structure and peptide backbone, allowing glycopeptide identification, whereas CID/ETD enabled the elucidation of glycosylation sites by maintaining the glycan-peptide linkage. A total of 130 glycopeptides, representing 75 glycosylation sites, were identified from LC-MS/MS using zwitterionic hydrophilic interaction chromatography coupled to CID/HCD and CID/ETD. CID/HCD provided the majority of the identifications (73 sites) compared with ETD (26 sites). We also examined soluble glycoproteins by soybean agglutinin affinity and two-dimensional electrophoresis and identified a further six glycosylation sites. This study more than doubles the number of confirmed N-linked glycosylation sites in C. jejuni and is the first to utilize HCD fragmentation for glycopeptide identification with intact glycan. We also show that hydrophobic integral membrane proteins are significant targets of glycosylation in this organism. Our data demonstrate that peptide-centric approaches coupled to novel mass spectrometric fragmentation techniques may be suitable for application to eukaryotic glycoproteins for simultaneous elucidation of glycan structures and peptide sequence.
机译:空肠弯曲菌是一种胃肠道病原体,它能够通过在严格附着基序(D / E)XNX(S / T)上通过N-连接添加7个残基的聚糖来修饰膜和周质蛋白。然而,聚糖-肽键对酶消化或β-消除的抗性阻碍了对糖基化靶标进行全面分析的策略,并且先前集中于与凝集素亲和力和基于凝胶的方法相容的可溶性糖蛋白。我们开发了使用两性离子亲水相互作用色谱富集空肠弯曲杆菌HB93-13糖肽的策略,并研究了新的片段化,包括碰撞诱导解离(CID)和高能碰撞(C-陷阱)解离(HCD)以及CID /电子转移离解(ETD)质谱。 CID / HCD能够识别聚糖结构和肽主链,从而可以鉴定糖肽,而CID / ETD可以通过维持聚糖-肽键来阐明糖基化位点。使用两性离子亲水相互作用色谱(耦合到CID / HCD和CID / ETD),从LC-MS / MS中鉴定出总共130个糖肽,代表75个糖基化位点。与ETD(26个站点)相比,CID / HCD提供了大多数标识(73个站点)。我们还通过大豆凝集素亲和力和二维电泳检查了可溶性糖蛋白,并确定了另外六个糖基化位点。这项研究使空肠弯曲菌中已确认的N-连接糖基化位点的数量增加了一倍以上,并且是第一个利用HCD片段鉴定完整聚糖的糖肽的研究。我们还表明,疏水性完整膜蛋白是这种生物体中糖基化的重要目标。我们的数据表明,以肽为中心的方法与新型质谱碎裂技术相结合,可能适用于真核糖蛋白,以同时阐明聚糖结构和肽序列。

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