Affiliation:
1. UMR Transfrontalière BioEcoAgro-INRAe N° 1158, Univ. Artois, Univ. Lille, INRAe, Univ. Liège, UPJV, JUNIA, Univ. Littoral Côte d’Opale, ICV-Institut Charles Viollette, 62300 Lens, France
Abstract
Bioinformatics software, allowing the identification of peptides by the comparison of peptide fragmentation spectra obtained by mass spectrometry versus targeted databases or directly by de novo sequencing, is now mandatory in peptidomics/proteomics approaches. Programming the identification software requires specifying, among other things, the mass measurement accuracy of the instrument and the digestion enzyme used with the number of missed cleavages allowed. Moreover, these software algorithms are able to identify a large number of post-translational modifications (PTMs). However, peptide and PTM identifications are challenging in the agrofood field due to non-specific cleavage sites of physiological- or food-grade enzymes and the number and location of PTMs. In this study, we show the importance of customized software programming to obtain a better peptide and PTM identification rate in the agrofood field. A gelatine product and one industrial gelatine hydrolysate from three different sources (beef, pork, and fish), each digested by simulated gastrointestinal digestion, MS-grade trypsin, or both, were used to perform the comparisons. Two main points are illustrated: (i) the impact of the set-up of specific enzyme versus no specific enzyme use and (ii) the impact of a maximum of six PTMs allowed per peptide versus the standard of three. Prior knowledge of the composition of the raw proteins is an important asset for better identification of peptide sequences.
Funder
BiHauts Eco de France research program
European Union, France, and the French region Hauts-de-France
French National Research Agency
Subject
Plant Science,Health Professions (miscellaneous),Health (social science),Microbiology,Food Science
Reference30 articles.
1. Quantification of hydroxyprolyl-glycine ({Hyp}-{Gly}) in human blood after ingestion of collagen hydrolysate;Sugihara;J. Biosci. Bioeng.,2012
2. Bioactive peptides from marine processing waste and shellfish: A review;Harnedy;J. Funct. Foods,2012
3. Inhibitory effect of collagen-derived tripeptides on dipeptidylpeptidase-IV activity;Hatanaka;J. Enzyme Inhib. Med. Chem.,2014
4. Shigemura, Y., Iwasaki, Y., Tateno, M., Suzuki, A., Kurokawa, M., Sato, Y., and Sato, K. (2018). A pilot study for the detection of cyclic prolyl-hydroxyproline (Pro-Hyp) in human blood after ingestion of collagen hydrolysate. Nutrients, 10.
5. Plasma Amino Acid Concentrations After the Ingestion of Dairy and Collagen Proteins, in Healthy Active Males;Alcock;Front. Nutr.,2019