| Literature DB >> 26634967 |
Estefanía Rossich Molina1,2, Daniel Ortiz3,4, Jean-Yves Salpin1,2, Riccardo Spezia1,2.
Abstract
In this study we have coupled mixed quantum-classical (quantum mechanics/molecular mechanics) direct chemical dynamics simulations with electrospray ionization/tandem mass spectrometry experiments in order to achieve a deeper understanding of the fragmentation mechanisms occurring during the collision induced dissociation of gaseous protonated uracil. Using this approach, we were able to successfully characterize the fragmentation pathways corresponding to ammonia loss (m/z 96), water loss (m/z 95) and cyanic or isocyanic acid loss (m/z 70). Furthermore, we also performed experiments with isotopic labeling completing the fragmentation picture. Remarkably, fragmentation mechanisms obtained from chemical dynamics simulations are consistent with those deduced from isotopic labeling.Entities:
Keywords: chemical dynamics simulations; collision induced dissociation; gas-phase reaction mechanisms; nucleobase fragmentation; retro Diels Alder
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Year: 2015 PMID: 26634967 DOI: 10.1002/jms.3704
Source DB: PubMed Journal: J Mass Spectrom ISSN: 1076-5174 Impact factor: 1.982