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Application of Electron Transfer Dissociation Mass Spectrometry in Analyses of Non-enzymatically Glycated Peptides

机译:电子转移解离质谱在非酶糖化肽分析中的应用

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摘要

Non-enzymatic glycation of peptides and proteins by D-glucose has important implications in the pathogenesis of diabetes mellitus, particularly in the context of development of diabetic complications. The fragmentation behavior of glycated peptides produced from reaction of D-glucose with lysine residues was investigated by electron transfer dissociation (ETD) and collision induced dissociation (CID) tandem mass spectrometry. It was found that high abundance ions corresponding to various degrees of neutral water losses, as well as furylium ion production, dominate the CID spectra, and that the sequence informative b and y ions were rarely observed when Amadori-modified peptides were fragmented. Contrary to what was observed under CID conditions, ions corresponding to neutral losses of water or furylium ion production were not observed in the ETD spectra. Instead, abundant and almost complete series of c and z type ions were observed regardless of whether the modification site was located in the middle of the sequence or close to the N-terminus, greatly facilitating the peptide sequencing. This study strongly suggests that ETD is a better technique for proteomics studies of non-enzymatically glycated peptides and proteins.
机译:D-葡萄糖对肽和蛋白质的非酶糖基化作用对糖尿病的发病机制具有重要意义,特别是在糖尿病并发症发生的背景下。通过电子转移解离(ETD)和碰撞诱导解离(CID)串联质谱研究了D-葡萄糖与赖氨酸残基反应产生的糖基化肽的片段化行为。已发现,与中性水损失的不同程度以及ion离子的产生相对应的高丰度离子在CID光谱中占主导地位,当Amadori修饰的肽片段化后,很少见到具有序列信息的b和y离子。与在CID条件下观察到的相反,在ETD光谱中未观察到与水或fur离子产生的中性损失相对应的离子。取而代之的是,无论修饰位点位于序列的中间还是靠近N末端,都观察到了丰富且几乎完整的c和z型离子序列,极大地促进了肽的测序。这项研究强烈表明,ETD是一种用于非酶糖基化肽段和蛋白质的蛋白质组学研究的更好技术。

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