Literature DB >> 24549894

Collision-induced dissociation of diazirine-labeled peptide ions. Evidence for Brønsted-acid assisted elimination of nitrogen.

Aleš Marek1, František Tureček.   

Abstract

Gas-phase dissociations were investigated for several peptide ions containing the Gly-Leu* N-terminal motif where Leu* was a modified norleucine residue containing the photolabile diazirine ring. Collisional activation of gas-phase peptide cations resulted in facile N₂ elimination that competed with backbone dissociations. A free lysine ammonium group can act as a Brønsted acid to facilitate N₂ elimination. This dissociation was accompanied by insertion of a lysine proton in the side chain of the photoleucine residue, as established by deuterium labeling and gas-phase sequencing of the products. Electron structure calculations were used to provide structures and energies of reactants, intermediates, and transition states for Gly-Leu*-Gly-Gly-Lys amide ions that were combined with RRKM calculations of unimolecular rate constants. The calculations indicated that Brønsted acid-catalyzed eliminations were kinetically preferred over direct loss of N₂ from the diazirine ring. Mechanisms are proposed to explain the proton-initiated reactions and discuss the reaction products. The non-catalyzed diazirine ring cleavage and N₂ loss is proposed as a thermometer dissociation for peptide ion dissociations.

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Year:  2014        PMID: 24549894     DOI: 10.1007/s13361-014-0832-0

Source DB:  PubMed          Journal:  J Am Soc Mass Spectrom        ISSN: 1044-0305            Impact factor:   3.109


  20 in total

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5.  Dipole-guided electron capture causes abnormal dissociations of phosphorylated pentapeptides.

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7.  On the mechanism of electron-capture-induced dissociation of peptide dications from 15n-labeling and crown-ether complexation.

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8.  3-Trifluoromethyl-3-phenyldiazirine. A new carbene generating group for photolabeling reagents.

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10.  Electron transfer dissociation of photolabeled peptides. Backbone cleavages compete with diazirine ring rearrangements.

Authors:  Aleš Marek; Robert Pepin; Bo Peng; Kenneth J Laszlo; Matthew F Bush; František Tureček
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  6 in total

1.  Photodissociative Cross-Linking of Non-covalent Peptide-Peptide Ion Complexes in the Gas Phase.

Authors:  Huong T H Nguyen; Prokopis C Andrikopoulos; Lubomír Rulíšek; Christopher J Shaffer; František Tureček
Journal:  J Am Soc Mass Spectrom       Date:  2018-05-07       Impact factor: 3.109

2.  Combining Near-UV Photodissociation with Electron Transfer. Reduction of the Diazirine Ring in a Photomethionine-Labeled Peptide Ion.

Authors:  Christopher J Shaffer; Aleš Marek; Huong T H Nguyen; František Tureček
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3.  Photoleucine Survives Backbone Cleavage by Electron Transfer Dissociation. A Near-UV Photodissociation and Infrared Multiphoton Dissociation Action Spectroscopy Study.

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4.  Photodissociative Cross-Linking of Diazirine-Tagged Peptides with DNA Dinucleotides in the Gas Phase.

Authors:  Yang Liu; František Tureček
Journal:  J Am Soc Mass Spectrom       Date:  2019-04-03       Impact factor: 3.109

5.  Electron transfer reduction of the diazirine ring in gas-phase peptide ions. On the peculiar loss of [NH4O] from photoleucine.

Authors:  Aleš Marek; Christopher J Shaffer; Robert Pepin; Kristina Slováková; Kenneth J Laszlo; Matthew F Bush; František Tureček
Journal:  J Am Soc Mass Spectrom       Date:  2014-12-17       Impact factor: 3.109

6.  Efficient Covalent Bond Formation in Gas-Phase Peptide-Peptide Ion Complexes with the Photoleucine Stapler.

Authors:  Christopher J Shaffer; Prokopis C Andrikopoulos; Jan Řezáč; Lubomír Rulíšek; František Tureček
Journal:  J Am Soc Mass Spectrom       Date:  2016-01-27       Impact factor: 3.109

  6 in total

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