Screening Method for the Discovery of Potential Bioactive Cysteine-Containing Peptides Using 3D Mass Mapping

peer-reviewed · Journal of the American Society for Mass Spectrometry · 2015

peer-reviewed · Journal of the American Society for Mass Spectrometry · 2015. Luuk N. van Oosten et al. Animal venoms and toxins are a valuable source of bioactive peptides with pharmacologic relevance as…
Date 2015-12-01
Type peer-reviewed
Venue Journal of the American Society for Mass Spectrometry
Publisher American Chemical Society (ACS)
Contribution downstream-application
DOI 10.1007/s13361-015-1282-z
Citations (OpenAlex) 3
Venue 2-year citedness 2.84

Abstract

Animal venoms and toxins are a valuable source of bioactive peptides with pharmacologic relevance as potential drug leads. A large subset of biologically active peptides discovered up till now contain disulfide bridges that enhance stability and activity. To discover new members of this class of peptides, we developed a workflow screening specifically for those peptides that contain inter- and intra-molecular disulfide bonds by means of three-dimensional (3D) mass mapping. Two intrinsic properties of the sulfur atom, (1) its relatively large negative mass defect, and (2) its isotopic composition, allow for differentiation between cysteine-containing peptides and peptides lacking sulfur. High sulfur content in a peptide decreases the normalized nominal mass defect (NMD) and increases the normalized isotopic shift (NIS). Hence in a 3D plot of mass, NIS, and NMD, peptides with sulfur appear in this plot with a distinct spatial localization compared with peptides that lack sulfur. In this study we investigated the skin secretion of two frog species; Odorrana schmackeri and Bombina variegata. Peptides from the crude skin secretions were separated by nanoflow LC, and of all eluting peptides high resolution zoom scans were acquired in order to accurately determine both monoisotopic mass and average mass. Both the NMD and the NIS were calculated from the experimental data using an in-house developed MATLAB script. Candidate peptides exhibiting a low NMD and high NIS values were selected for targeted de novo sequencing, and this resulted in the identification of several novel inter- and intra-molecular disulfide bond containing peptides. Graphical Abstract ᅟ.

Authors

  1. Luuk N. van Oosten · Delft University of Technology
  2. Mervin Pieterse · Delft University of Technology
  3. Martijn W. H. Pinkse · Delft University of Technology
  4. Peter D. E. M. Verhaert · Delft University of Technology, Lund University, University of Antwerp

Methods and tools

  • Frog skin cysteine-peptide 3D mass mapping: Screens Odorrana schmackeri and Bombina variegata skin secretions for sulfur-containing peptides via mass defect and isotopic shift, then de novo sequences the candidates to find novel disulfide-bonded peptides.

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