Biomolecular Mass Spectrometry and Proteomics, Bijvoet Center for Biomolecular Research and Utrecht Institute for Pharmaceutical Sciences, Utrecht University, Padualaan 8, 3584 CH Utrecht, The Netherlands.
J Proteome Res. 2013 Mar 1;12(3):1520-5. doi: 10.1021/pr301130k. Epub 2013 Feb 7.
We recently introduced a novel scheme combining electron-transfer and higher-energy collision dissociation (termed EThcD), for improved peptide ion fragmentation and identification. We reasoned that phosphosite localization, one of the major hurdles in high-throughput phosphoproteomics, could also highly benefit from the generation of such EThcD spectra. Here, we systematically assessed the impact on phosphosite localization utilizing EThcD in comparison to methods employing either ETD or HCD, respectively, using a defined synthetic phosphopeptide mixture and also using a larger data set of Ti(4+)-IMAC enriched phosphopeptides from a tryptic human cell line digest. In combination with a modified version of phosphoRS, we observed that in the majority of cases EThcD generated richer and more confidently identified spectra, resulting in superior phosphosite localization scores. Our data demonstrates the distinctive potential of EThcD for PTM localization, also beyond protein phosphorylation.
我们最近提出了一种结合电子转移和更高能量碰撞解离(称为 EThcD)的新型方案,以改善肽离子的碎片化和鉴定。我们认为,磷酸化位点定位是高通量磷酸蛋白质组学的主要障碍之一,也可以从这种 EThcD 谱的产生中极大地受益。在这里,我们使用定义的合成磷酸肽混合物,以及来自胰蛋白酶消化的人细胞系的 Ti(4+)-IMAC 富集磷酸肽的更大数据集,分别使用 ETD 或 HCD 方法,系统地评估了 EThcD 对磷酸化位点定位的影响。与磷酸化 RS 的修改版本结合使用,我们观察到在大多数情况下,EThcD 产生了更丰富和更有信心鉴定的谱,从而获得了更好的磷酸化位点定位分数。我们的数据表明,EThcD 具有独特的 PTM 定位潜力,甚至超越了蛋白质磷酸化。