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首页> 外文期刊>Analytical chemistry >Concurrent Automated Sequencing of the Glycan and Peptide Portions of O-Linked Glycopeptide Anions by Ultraviolet Photodissociation Mass Spectrometry
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Concurrent Automated Sequencing of the Glycan and Peptide Portions of O-Linked Glycopeptide Anions by Ultraviolet Photodissociation Mass Spectrometry

机译:紫外光解离质谱法同时分析O-连接糖肽阴离子的聚糖和肽部分的自动化序列

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O-Glycopeptides are often acidic owing to the frequent occurrence of acidic saccharides in the glycan, rendering traditional proteomic workflows that rely on positive mode tandem mass spectrometry (MS/MS) less effective. In this report, we demonstrate the utility of negative mode ultraviolet photodissociation (UVPD) MS for the characterization of acidic O-linked glycopeptide anions. This method was evaluated for a series of singly and multiply deprotonated glycopeptides from the model glycoprotein kappa casein, resulting in production of both peptide and glycan product ions that afforded 100% sequence coverage of the peptide and glycan moieties from a single MS/MS event. The most abundant and frequent peptide sequence ions were a/x-type products which, importantly, were found to retain the labile glycan modifications. The glycan-specific ions mainly arose from glycosidic bond cleavages (B, Y, C, and Z ions) in addition to some less common cross-ring cleavages. On the basis of the UVPD fragmentation patterns, an automated database searching strategy (based on the MassMatrix algorithm) was designed that is specific for the analysis of glycopeptide anions by UVPD. This algorithm was used to identify glycopeptides from mixtures of glycosylated and nonglycosylated peptides, sequence both glycan and peptide moieties simultaneously, and pinpoint the correct site(s) of glycosylation. This methodology was applied to uncover novel site-specificity of the O-linked glycosylated OmpA/MotB from the "superbug" A. baumannii to help aid in the elucidation of the functional role that protein glycosylation plays in pathogenesis.
机译:由于糖聚糖中频繁出现酸性糖,O-糖肽通常是酸性的,这使得依赖于正模式串联质谱(MS / MS)的传统蛋白质组学工作流程的效力降低。在此报告中,我们证明了负模式紫外光解离(UVPD)MS可以用于表征酸性O-连接糖肽阴离子。从模型糖蛋白kappa酪蛋白中评估了该方法的一系列单个和多个去质子化的糖肽,导致肽和聚糖产物离子的产生,这些离子提供了单个MS / MS事件对肽和聚糖部分的100%序列覆盖。最丰富和频繁的肽序列离子是a / x型产物,重要的是,发现该产物保留了不稳定的聚糖修饰。除了一些不太常见的交叉环裂解外,聚糖特异性离子主要由糖苷键裂解(B,Y,C和Z离子)引起。基于UVPD片段化模式,设计了一种自动数据库搜索策略(基于MassMatrix算法),该策略专门用于通过UVPD分析糖肽阴离子。该算法用于从糖基化和非糖基化肽的混合物中识别糖肽,同时对糖基和肽部分进行测序,并查明糖基化的正确位点。将该方法应用于从“超级细菌”鲍曼不动杆菌中发现O联糖基化OmpA / MotB的新型位点特异性,以帮助阐明蛋白糖基化在发病机理中的功能作用。

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