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首页> 外文期刊>Journal of the American Society for Mass Spectrometry >Effects of electron-transfer coupled with collision-induced dissociation (ET/CID) on doubly charged peptides and phosphopeptides
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Effects of electron-transfer coupled with collision-induced dissociation (ET/CID) on doubly charged peptides and phosphopeptides

机译:电子转移与碰撞诱导解离(ET / CID)对双电荷肽和磷酸肽的影响

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摘要

Electron-transfer dissociation (ETD) is a useful peptide fragmentation technique that can be applied to investigate post-translational modifications (PTMs), the sequencing of highly hydrophilic peptides, and the identification of large peptides and even intact proteins. In contrast to traditional fragmentation methods, such as collision-induced dissociation (CID), ETD produces c- and z.-type product ions by randomly cleaving the N-Cα bonds. The disappointing fragmentation efficiency of ETD for doubly charged peptides and phosphopeptide ions has been improved by ETcaD (supplemental activation). However, the ETD data derived from most database search algorithms yield low confidence scores due to the presence of unreacted precursors and charge-reduced ions within MS/MS spectra. In this work, we demonstrate that eight out of ten standard doubly charged peptides and phosphopeptides can be effortlessly identified by electron-transfer coupled with collision-induced dissociation (ET/CID) using the SEQUEST algorithm without further spectral processing. ET/CID was performed with the further dissociation of the charge-reduced ions isolated from ETD ion/ion reactions. ET/CID had high fragmentation efficiency, which elevated the confidence scores of doubly charged peptide and phosphospeptide sequencing. ET/CID was found to be an effective fragmentation strategy in "bottom-up" proteomic analysis.
机译:电子转移解离(ETD)是一种有用的肽片段化技术,可用于研究翻译后修饰(PTM),高度亲水性肽的测序以及大肽甚至完整蛋白质的鉴定。与传统的碎片化方法(如碰撞诱导解离(CID))相反,ETD通过随机裂解N-Cα键产生c型和z。型产物离子。 ETD对双电荷肽和磷酸肽离子的令人失望的片段化效率已通过ETcaD(补充激活)得到了改善。但是,由于MS / MS光谱中存在未反应的前体和电荷还原的离子,因此从大多数数据库搜索算法得出的ETD数据的置信度得分较低。在这项工作中,我们证明了使用SEQUEST算法通过电子转移与碰撞诱导解离(ET / CID)结合,可以毫不费力地识别十分之八的标准双电荷肽和磷酸肽,而无需进行进一步的光谱处理。 ET / CID与从ETD离子/离子反应中分离的电荷减少的离子进一步解离。 ET / CID具有很高的片段化效率,从而提高了双电荷肽和磷酸肽测序的置信度。在“自下而上”的蛋白质组学分析中,发现ET / CID是一种有效的片段化策略。

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