Literature DB >> 11312516

Theoretical study of the main fragmentation pathways for protonated glycylglycine.

B Paizs1, S Suhai.   

Abstract

Quantum chemical and RRKM calculations were carried out on protonated glycylglycine in order to determine the atomic details of the main fragmentation pathways leading to formation of a1 and y1 ions. Two possible mechanisms were considered. The first path results in elimination of aziridinone as a neutral counterpart of the y1 ion formed. Our calculations show that this pathway has a relatively high threshold energy (48.6 kcal/mol) and the corresponding unimolecular rate constants are quite small even at large internal energy. An alternative pathway (a1-y1) proposed in the present paper seems, however, to be favored against the above 'aziridinone' one from the points of view of both energetics and kinetics. The 'a1-y1' pathway leads to simultaneous formation of a1 and y1 ions, the ratio of which depends on the energy distribution of the fragmenting species for a particular dipeptide. However, even if y1 ions are formed via the 'a1-y1' pathway, the corresponding neutrals eliminated do not have a strained cyclic aziridinone structure. Instead, in a two-step process, CO and NHCH2 are formed leading to neutral products energetically more favored than aziridinone. The available experimental data reevaluated in the present paper lend support to the 'a1-y1' pathway. Copyright 2001 John Wiley & Sons, Ltd.

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Year:  2001        PMID: 11312516     DOI: 10.1002/rcm.273

Source DB:  PubMed          Journal:  Rapid Commun Mass Spectrom        ISSN: 0951-4198            Impact factor:   2.419


  16 in total

1.  Direct dynamics study of N-protonated diglycine surface-induced dissociation. Influence of collision energy.

Authors:  Yanfei Wang; William L Hase; Kihyung Song
Journal:  J Am Soc Mass Spectrom       Date:  2003-12       Impact factor: 3.109

2.  Thermodynamics and mechanisms of protonated diglycine decomposition: a computational study.

Authors:  P B Armentrout; Amy L Heaton
Journal:  J Am Soc Mass Spectrom       Date:  2011-08-18       Impact factor: 3.109

3.  Towards understanding the tandem mass spectra of protonated oligopeptides. 2: The proline effect in collision-induced dissociation of protonated Ala-Ala-Xxx-Pro-Ala (Xxx = Ala, Ser, Leu, Val, Phe, and Trp).

Authors:  Christian Bleiholder; Sándor Suhai; Alex G Harrison; Béla Paizs
Journal:  J Am Soc Mass Spectrom       Date:  2011-04-12       Impact factor: 3.109

4.  Backbone cleavages and sequential loss of carbon monoxide and ammonia from protonated AGG: a combined tandem mass spectrometry, isotope labeling, and theoretical study.

Authors:  Benjamin J Bythell; Douglas F Barofsky; Francesco Pingitore; Michael J Polce; Ping Wang; Chrys Wesdemiotis; Béla Paizs
Journal:  J Am Soc Mass Spectrom       Date:  2007-04-10       Impact factor: 3.109

5.  H/D exchange kinetics: experimental evidence for formation of different b fragment ion conformers/isomers during the gas-phase peptide sequencing.

Authors:  Alireza Fattahi; Behrooz Zekavat; Touradj Solouki
Journal:  J Am Soc Mass Spectrom       Date:  2009-10-29       Impact factor: 3.109

6.  Influence of stereochemistry on proton transfer in protonated tripeptide models.

Authors:  Namat Ali Soliman; Petr Kulhánek; Jaroslav Koča
Journal:  J Mol Model       Date:  2011-05-28       Impact factor: 1.810

7.  Detection of Neutral CO Lost During Ionic Dissociation Using Atmospheric Pressure Thermal Dissociation Mass Spectrometry (APTD-MS).

Authors:  Pengyi Zhao; Travis White; R Graham Cooks; Qinghao Chen; Yong Liu; Hao Chen
Journal:  J Am Soc Mass Spectrom       Date:  2018-09-11       Impact factor: 3.109

8.  The power of accurate energetics (or thermochemistry: what is it good for?).

Authors:  P B Armentrout
Journal:  J Am Soc Mass Spectrom       Date:  2013-01-08       Impact factor: 3.109

9.  Thermodynamics and Reaction Mechanisms for Decomposition of a Simple Protonated Tripeptide, H+GAG: a Guided Ion Beam and Computational Study.

Authors:  A Mookherjee; P B Armentrout
Journal:  J Am Soc Mass Spectrom       Date:  2019-03-08       Impact factor: 3.109

10.  Experimental and theoretical investigation of the main fragmentation pathways of protonated H-Gly-Gly-Sar-OH and H-Gly-Sar-Sar-OH.

Authors:  Bèla Paizs; Sàndor Suhai; Alex G Harrison
Journal:  J Am Soc Mass Spectrom       Date:  2003-12       Impact factor: 3.109

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