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Reliable Determination of Site-specific in vivo Protein N-Glycosylation based on Collision-Induced MS/MS and Chromatographic Retention Time

机译:基于碰撞诱导的MS / MS和色谱保留时间可靠地确定特定于位点的体内蛋白质N-糖基化

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摘要

Site-specific glycopeptide mapping for simultaneous glycan and peptide characterization by MS is difficult because of the heterogeneity and diversity of glycosylation in proteins and the lack of complete fragmentation information for either peptides or glycans with current fragmentation technologies. Indeed, multiple peptide and glycan combinations can readily match the same mass of glycopeptides even with mass errors less than 5 ppm providing considerably ambiguity and analysis of complex mixtures of glycopeptides becomes quite challenging in the case of large proteins. Here we report a novel strategy to reliably determine site-specific N-glycosylation mapping by combining collision-induced dissociation (CID)-only fragmentation with chromatographic retention times of glycopeptides. This approach leverages an experimental pipeline with parallel analysis of glyco- and deglycopeptides. As the test case we chose ABCA4, a large integral membrane protein with 16 predicted sites for N-glycosylation. Taking advantage of CID features such as high scan speed and high intensity of fragment ions together combined with the retention times of glycopeptides to conclusively identify the non glycolytic peptide from which the glycopeptide was derived, we obtained virtually complete information about glycan compositions and peptide sequences, as well as the N-glycosylation site occupancy and relative abundances of each glycoform at specific sites for ABCA4. The challenges provided by this example provide guidance in analyzing complex relatively pure glycoproteins and potentially even more complex glycoprotein mixtures.
机译:由于蛋白质中糖基化的异质性和多样性以及当前片段化技术缺乏针对肽或聚糖的完整片段化信息,很难通过MS同时对糖基和肽进行表征的位点特异性糖肽图谱很难。实际上,即使质量误差小于5 ppm,多种肽和聚糖的组合也可以很容易地匹配相同质量的糖肽,从而提供了相当多的歧义,对于大蛋白而言,糖肽复杂混合物的分析变得非常具有挑战性。在这里,我们报告了一种新颖的策略,通过将仅碰撞诱导的解离(CID)片段与糖肽的色谱保留时间结合起来,可以可靠地确定位点特异性N-糖基化定位。这种方法利用了对糖肽和去糖肽进行并行分析的实验流程。作为测试案例,我们选择了ABCA4,ABCA4是一种大型的完整膜蛋白,具有16个N-糖基化预测位点。利用CID功能(例如高扫描速度和高碎片离子强度)与糖肽的保留时间相结合,最终确定了糖肽来源的非糖酵解肽,我们获得了有关糖组成和肽序列的几乎完整信息,以及ABCA4特定位点上每种糖型的N-糖基化位点占有率和相对丰度。该示例提供的挑战为分析复杂的相对纯的糖蛋白以及可能甚至更复杂的糖蛋白混合物提供了指导。

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