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Comparison of CID versus ETD based MS/MS fragmentation for the analysis of protein ubiquitination.

机译:比较基于CID和ETD的MS / MS片段进行蛋白质泛素化分析。

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摘要

Ubiquitination has emerged as one of the major post-translational modifications that decide on protein fate, targeting, and regulation of protein function. Whereas the ubiquitination of proteins can be monitored with classic biochemical methods, the mapping of modified side chains proves to be challenging. More recently, mass spectrometry has been applied to identify ubiquitinated proteins and also their sites of modification. Typically, liquid chromatography tandem mass spectrometry (LC-MS/MS) based approaches, including collision-induced fragmentation (CID), have been successfully used in the past. However, a potential difficulty arises from the unstable nature of this modification, and also that the isopeptide bond linkage between C-terminal glycine and the N(epsilon) lysyl side chain is susceptible to fragmentation under these conditions. Here we investigate the utility of electron-transfer dissociation (ETD)-based fragmentation to detect ubiquitination sites in proteins. Our results indicate that ETD can provide alternative fragmentation patterns that allow detection of gly-gly-modified lysyl side chains, in particular z+1 fragment ions derived from triply charged precursor ions. We subsequently applied ETD fragmentation-based analysis and detected novel ubiquitination sites on DNA polymerase B1 that were not easily observed using CID. We conclude that ETD can provide significant alternative fragmentation information that complements CID-derived data to improve the coverage when mapping ubiquitination sites in proteins.
机译:泛素化已成为决定蛋白质命运,靶向和调控蛋白质功能的主要翻译后修饰之一。蛋白质的泛素化可以用经典的生化方法进行监测,而修饰侧链的作图则具有挑战性。最近,质谱已用于鉴定泛素化的蛋白质及其修饰位点。通常,过去已成功使用基于液相色谱串联质谱(LC-MS / MS)的方法,包括碰撞诱导裂解(CID)。但是,这种修饰的不稳定性质引起潜在的困难,并且在这些条件下,C末端甘氨酸和N(ε)赖氨酰侧链之间的异肽键连接易于断裂。在这里,我们研究了基于电子转移解离(ETD)的碎片检测蛋白质中泛素化位点的效用。我们的结果表明,ETD可以提供其他片段化模式,从而检测糖基-糖基修饰的赖氨酰基侧链,特别是从三重带电前体离子衍生的z + 1片段离子。随后,我们应用了基于ETD片段化的分析,并检测到了DNA聚合酶B1上新的泛素化位点,这些位点使用CID很难观察到。我们得出的结论是,在绘制蛋白质中的泛素化位点时,ETD可以提供重要的替代片段信息,以补充CID衍生的数据,从而提高覆盖率。

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