| Literature DB >> 27488317 |
Philippe Massonnet1, Jean R N Haler1, Gregory Upert2, Michel Degueldre1, Denis Morsa1, Nicolas Smargiasso1, Gilles Mourier2, Nicolas Gilles2, Loïc Quinton1, Edwin De Pauw3.
Abstract
Disulfide bonds are post-translationnal modifications that can be crucial for the stability and the biological activities of natural peptides. Considering the importance of these disulfide bond-containing peptides, the development of new techniques in order to characterize these modifications is of great interest. For this purpose, collision cross cections (CCS) of a large data set of 118 peptides (displaying various sequences) bearing zero, one, two, or three disulfide bond(s) have been measured in this study at different charge states using ion mobility-mass spectrometry. From an experimental point of view, CCS differences (ΔCCS) between peptides bearing various numbers of disulfide bonds and peptides having no disulfide bonds have been calculated. The ΔCCS calculations have also been applied to peptides bearing two disulfide bonds but different cysteine connectivities (Cys1-Cys2/Cys3-Cys4; Cys1-Cys3/Cys2-Cys4; Cys1-Cys4/Cys2-Cys3). The effect of the replacement of a proton by a potassium adduct on a peptidic structure has also been investigated. Graphical Abstract ᅟ.Entities:
Keywords: Disulfide bond; Ion-mobility mass spectrometry; Peptides
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Year: 2016 PMID: 27488317 DOI: 10.1007/s13361-016-1443-8
Source DB: PubMed Journal: J Am Soc Mass Spectrom ISSN: 1044-0305 Impact factor: 3.109