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Infrared Multiple-Photon Dissociation Action Spectroscopy of the b2+ Ion from PPG: Evidence of Third Residue Affecting b2+ Fragment Structure

Overview of attention for article published in Journal of the American Society for Mass Spectrometry, April 2017
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Title
Infrared Multiple-Photon Dissociation Action Spectroscopy of the b2+ Ion from PPG: Evidence of Third Residue Affecting b2+ Fragment Structure
Published in
Journal of the American Society for Mass Spectrometry, April 2017
DOI 10.1007/s13361-017-1659-2
Pubmed ID
Authors

John C. Poutsma, Jonathan Martens, Jos Oomens, Phillipe Maitre, Vincent Steinmetz, Matthew Bernier, Mengxuan Jia, Vicki Wysocki

Abstract

Infrared multiple-photon dissociation (IRMPD) action spectroscopy was performed on the b2(+) fragment ion from the protonated PPG tripeptide. Comparison of the experimental infrared spectrum with computed spectra for both oxazolone and diketopiperazine structures indicates that the majority of the fragment ion population has an oxazolone structure with the remainder having a diketopiperazine structure. This result is in contrast with a recent study of the IRMPD action spectrum of the PP b2(+) fragment ion from PPP, which was found to be nearly 100% diketopiperazine (Martens et al. Int. J. Mass Spectrom. 2015, 377, 179). The diketopiperazine b2(+) ion is thermodynamically more stable than the oxazolone but normally requires a trans/cis peptide bond isomerization in the dissociating peptide. Martens et al. showed through IRMPD action spectroscopy that the PPP precursor ion was in a conformation in which the first peptide bond is already in the cis conformation and thus it was energetically favorable to form the thermodynamically-favored diketopiperazine b2(+) ion. In the present case, solution-phase NMR spectroscopy and gas-phase IRMPD action spectroscopy show that the PPG precursor ion has its first amide bond in a trans configuration suggesting that the third residue is playing an important role in both the structure of the peptide and the associated ring-closure barriers for oxazolone and diketopiperazine formation. Graphical Abstract ᅟ.

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Geographical breakdown

Country Count As %
Unknown 9 100%

Demographic breakdown

Readers by professional status Count As %
Student > Master 3 33%
Researcher 2 22%
Student > Postgraduate 1 11%
Professor 1 11%
Unknown 2 22%
Readers by discipline Count As %
Chemistry 7 78%
Unknown 2 22%
Attention Score in Context

Attention Score in Context

This research output has an Altmetric Attention Score of 1. This is our high-level measure of the quality and quantity of online attention that it has received. This Attention Score, as well as the ranking and number of research outputs shown below, was calculated when the research output was last mentioned on 25 June 2017.
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#22,834,739
of 25,461,852 outputs
Outputs from Journal of the American Society for Mass Spectrometry
#3,445
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Outputs of similar age
#284,127
of 323,906 outputs
Outputs of similar age from Journal of the American Society for Mass Spectrometry
#62
of 80 outputs
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