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首页> 外文期刊>Journal of mass spectrometry: JMS >Phosphopeptide fragmentation and analysis by mass spectrometry
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Phosphopeptide fragmentation and analysis by mass spectrometry

机译:磷酸肽片段化和质谱分析

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摘要

Reversible phosphorylation is a key event in many biological processes and is therefore a much studied phenomenon. The mass spectrometric (MS) analysis of phosphorylation is challenged by the substoichiometric levels of phosphorylation and the lability of the phosphate group in collision-induced dissociation (CID). Here, we review the fragmentation behaviour of phosphorylated peptides in MS and discuss several MS approaches that have been developed to improve and facilitate the analysis of phosphorylated peptides. CID of phosphopeptides typically results in spectra dominated by a neutral loss of the phosphate group. Several proposed mechanisms for this neutral loss and several factors affecting the extent at which this occurs are discussed. Approaches are described to interpret such neutral loss-dominated spectra to identify the phosphopeptide and localize the phosphorylation site. Methods using additional activation, such as MS3 and multistage activation (MSA), have been designed to generate more sequence-informative fragments from the ion produced by the neutral loss. The characteristics and benefits of these methods are reviewed together with approaches using phosphopeptide derivatization or specific MS scan modes. Additionally, electron-driven dissociation methods by electron capture dissociation (ECD) or electron transfer dissociation (ETD) and their application in phosphopeptide analysis are evaluated. Finally, these techniques are put into perspective for their use in large-scale phosphoproteomics studies.
机译:可逆的磷酸化是许多生物学过程中的关键事件,因此是一个被广泛研究的现象。亚化学计量水平的磷酸化和碰撞诱导解离(CID)中磷酸基团的不稳定性挑战了磷酸化的质谱(MS)分析。在这里,我们审查了磷酸化肽段在质谱中的断裂行为,并讨论了已开发出的几种质谱方法,以改善和促进磷酸化肽段的分析。磷酸肽的CID通常导致光谱以磷酸酯基团的中性丢失为主导。讨论了针对此中性丢失的几种建议机制以及影响其发生程度的几种因素。描述了解释这些中性损失占主导的光谱以鉴定磷酸肽和定位磷酸化位点的方法。已经设计了使用其他活化方法(例如MS3和多级活化(MSA))的方法,以从中性丢失产生的离子中产生更多的序列信息片段。这些方法的特点和好处以及使用磷酸肽衍生化或特定MS扫描模式的方法一起进行了综述。此外,还评估了通过电子捕获解离(ECD)或电子转移解离(ETD)进行的电子驱动解离方法及其在磷酸肽分析中的应用。最后,将这些技术应用于大规模磷酸化蛋白质组学研究中。

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