Identification of phosphopeptides with unknown cleavage specificity by a de novo sequencing assisted database search strategy

peer-reviewed · PROTEOMICS · 2014

peer-reviewed · PROTEOMICS · 2014. Mingming Dong et al. In theory, proteases with broad cleavage specificity could be applied to digest protein samples to improve…
Date 2014-11-01
Type peer-reviewed
Venue PROTEOMICS
Publisher Wiley
Contribution algorithm
DOI 10.1002/pmic.201400268
Citations (OpenAlex) 9

Abstract

In theory, proteases with broad cleavage specificity could be applied to digest protein samples to improve the phosphoproteomic analysis coverage. However, in practice this approach is seldom employed. This is because the identification of phosphopeptides without enzyme specificity by conventional database search strategy is extremely difficult due to the huge search space. In this study, we investigated the performance of a de novo sequencing assisted database search strategy for the identification of such phosphopeptides. Firstly, we compared the performance of conventional database search strategy and the de novo sequencing assisted database search strategy for the identification of peptides and phosphopeptides without stetting enzyme specificity. It was found that the identification sensitivity dropped significantly for the conventional one while it was only slightly decreased for the new approach. Then, this new search strategy was applied to identify phosphopeptides generated by Proteinase K digestion, which resulted in the identification of 717 phosphopeptides. Finally, this strategy was utilized for the identification of serum endogenous phosphopeptides, which were generated in vivo by different kinds of proteases and kinases, and the identification of 68 unique serum endogenous phosphopepitdes was successfully achieved.

Authors

  1. Mingming Dong · Chinese Academy of Sciences, University of Chinese Academy of Sciences
  2. Mingliang Ye · Chinese Academy of Sciences
  3. Kai Cheng · Chinese Academy of Sciences, University of Chinese Academy of Sciences
  4. Jing Dong · Chinese Academy of Sciences
  5. Jun Zhu · Chinese Academy of Sciences, University of Chinese Academy of Sciences
  6. Hongqiang Qin · Chinese Academy of Sciences, University of Chinese Academy of Sciences
  7. Yangyang Bian · Chinese Academy of Sciences, University of Chinese Academy of Sciences
  8. Hanfa Zou · Chinese Academy of Sciences

Methods and tools

  • De novo assisted search for nonspecific phosphopeptides: Makes broad-specificity proteases usable in phosphoproteomics: a conventional database search cannot identify phosphopeptides without enzyme specificity, so de novo sequencing proposes the sequence and the search confirms it.

Cites (1)

Seen in the charts

Back to the full map

Back to top