| Literature DB >> 28336331 |
Kaijie Xiao1, Fan Yu1, Houqin Fang1, Bingbing Xue1, Yan Liu1, Yunhui Li1, Zhixin Tian2.
Abstract
Neutral loss and internal product ions have been found to be significant in both peptide and protein tandem mass spectra and they have been proposed to be included in database search and for protein identification. In addition to common canonical b/y ions in collision-based dissociation or c/z ions in electron-based dissociation, inclusion of neutral loss and internal product ions would certainly make better use of tandem mass spectra data; however, their ultimate utility for protein identification with false discovery rate control remains unclear. Here we report our proteome-level utility benchmarking of neutral loss and internal product ions with tandem mass spectra of intact E. coli proteome. Utility of internal product ions was further evaluated at the protein level using selected tandem mass spectra of individual E. coli proteins. We found that both neutral loss and internal products ions do not have direct utility for protein identification when they were used for scoring of P Score; but they do have indirect utility for provision of more canonical b/y ions when they are included in the database search and overlapping ions between different ion types are resolved. BIOLOGICAL SIGNIFICANCE: Tandem mass spectrometry has evolved to be a state-of-the-art method for characterization of protein primary structures (including amino acid sequence, post-translational modifications (PTMs) as well as their site location), where full study and utilization tandem mass spectra and product ions are indispensable. This primary structure information is essential for higher order structure and eventual function study of proteins.Entities:
Keywords: Internal product ions; Isotopic envelope fingerprinting; Neutral loss; Overlapping isotopic envelopes; Protein database search; Protein identification
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Year: 2017 PMID: 28336331 DOI: 10.1016/j.jprot.2017.03.011
Source DB: PubMed Journal: J Proteomics ISSN: 1874-3919 Impact factor: 4.044