Topoisomer Differentiation of Molecular Knots by FTICR MS: Lessons from Class II Lasso Peptides
S\'everine Zirah, Carlos Afonso (IPCM), Uwe Linne, Thomas A Knappe,, Mohamed A Marahiel, Sylvie Rebuffat, Jean-Claude Tabet (IPCM)

TL;DR
This study demonstrates that electron capture dissociation (ECD) mass spectrometry can effectively differentiate between knotted lasso peptides and their unthreaded topoisomers, providing insights into their structures and conformations.
Contribution
The paper introduces the use of ECD MS for distinguishing peptide topoisomers, highlighting its advantages over traditional methods like CID and IRMPD.
Findings
ECD spectra differentiate lasso from unthreaded peptides.
CID and IRMPD are less effective for certain topoisomers.
Hydrogen migration patterns vary with peptide conformation.
Abstract
Lasso peptides constitute a class of bioactive peptides sharing a knotted structure where the C-terminal tail of the peptide is threaded through and trapped within an N-terminalmacrolactamring. The structural characterization of lasso structures and differentiation from their unthreaded topoisomers is not trivial and generally requires the use of complementary biochemical and spectroscopic methods. Here we investigated two antimicrobial peptides belonging to the class II lasso peptide family and their corresponding unthreaded topoisomers: microcin J25 (MccJ25), which is known to yield two-peptide product ions specific of the lasso structure under collisioninduced dissociation (CID), and capistruin, for which CID does not permit to unambiguously assign the lasso structure. The two pairs of topoisomers were analyzed by electrospray ionization Fourier transform ion cyclotron resonance mass…
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