Department of Proteomics, Center for Genetic Engineering and Biotechnology, Cubanacán, Playa, Ciudad de la Habana, Cuba.
Anal Chem. 2013 Apr 2;85(7):3515-20. doi: 10.1021/ac303239g. Epub 2013 Mar 20.
Peptide sequence matching algorithms used for peptide identification by tandem mass spectrometry (MS/MS) enumerate theoretical peptides from the database, predict their fragment ions, and match them to the experimental MS/MS spectra. Here, we present an approach for scoring MS/MS identifications based on the high mass accuracy matching of precursor ions, the identification of a high intensity b1 fragment ion, and partial sequence tags from phenylthiocarbamoyl-derivatized peptides. This derivatization process boosts the b1 fragment ion signal, which turns it into a powerful feature for peptide identification. We demonstrate the effectiveness of our scoring system by implementing it on a computational tool called "HI-bone" and by identifying mass spectra of an Escherichia coli sample acquired on an Orbitrap Velos instrument using Higher-energy C-trap dissociation. Following this strategy, we identified 1614 peptide spectrum matches with a peptide false discovery rate (FDR) below 1%. These results were significantly higher than those from Mascot and SEQUEST using a similar FDR.
肽序列匹配算法用于串联质谱(MS/MS)的肽鉴定,从数据库中列举理论肽,预测其片段离子,并将其与实验 MS/MS 谱匹配。在这里,我们提出了一种基于前体离子的高精度匹配、高强度 b1 片段离子的鉴定以及苯硫甲酰基衍生肽的部分序列标签对 MS/MS 鉴定进行评分的方法。这种衍生化过程增强了 b1 片段离子的信号,使其成为肽鉴定的强大特征。我们通过在称为“HI-bone”的计算工具上实现我们的评分系统并使用更高能量 C 阱解离在 Orbitrap Velos 仪器上获取大肠杆菌样品的质谱来证明我们评分系统的有效性。使用这种策略,我们鉴定了 1614 个肽谱匹配,肽假阳性率(FDR)低于 1%。这些结果明显高于使用类似 FDR 的 Mascot 和 SEQUEST 的结果。