Literature DB >> 24214053

An investigation of the energetics of peptide ion dissociation by laser desorption chemical ionization fourier transform mass spectrometry.

J P Speir1, I J Amster.   

Abstract

The energy dependence of competing fragmentation pathways of protonated peptide molecules is studied via laser desorption-chemical ionization in a Fourier transform ion cyclotron resonance spectrometer. Neutral peptide molecules are desorbed by the technique of substrate-assisted laser desorption, followed by post-ionization with a proton transfer reagent ion species. The chemical ionization reaction activates the protonated peptide molecules, which then fragment in accordance with the amount of excess energy that is deposited. Chemical ionization forms a protonated molecule with a narrower distribution of activation energy than can be formed by activation methods such as collision activated dissociation. Furthermore, the upper limit of the activation energy is well defined and is approximately given by the enthalpy of the chemical ionization reaction. Control over the fragmentation of peptide ions is demonstrated through reactions between desorbed peptide molecules with different reagent ion species. The fragmentation behavior of peptide ions with different internal energies is established by generation of a breakdown curve for the peptide under investigation. Breakdown curves are reported for the peptides Val-Pro, Val-Pro-Leu, Phe-Phe-Gly-Leu-Met NH2, and Arg-Lys-Asp-Val-Tyr. The derived breakdown curve of Val-Pro has been fitted by using quasi-equilibrium Rice-Ramsperger-Kassel-Marcus theory to model the unimolecular dissociation of the protonated peptide to provide a better understanding of the mechanisms for the formation of fragment ions that originate from protonated peptides.

Entities:  

Year:  1995        PMID: 24214053     DOI: 10.1016/1044-0305(95)00547-1

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


  18 in total

1.  Surface-induced dissociation of protonated peptides: implications of initial kinetic energy spread.

Authors:  R B Cole; S LeMeillour; J C Tabet
Journal:  Anal Chem       Date:  1992-02-15       Impact factor: 6.986

2.  Fragmentation studies of peptides: the formation of y ions.

Authors:  P T Kenny; K Nomoto; R Orlando
Journal:  Rapid Commun Mass Spectrom       Date:  1992-02       Impact factor: 2.419

3.  Substrate-assisted laser desorption of neutral peptide molecules.

Authors:  J P Speir; I J Amster
Journal:  Anal Chem       Date:  1992-05-01       Impact factor: 6.986

4.  Surface-induced dissociation of peptide ions in Fourier-transform mass spectrometry.

Authors:  E R Williams; K D Henry; F W McLafferty; J Shabanowitz; D F Hunt
Journal:  J Am Soc Mass Spectrom       Date:  1990-09       Impact factor: 3.109

5.  Surface-induced dissociation in tandem quadrupole mass spectrometers: A comparison of three designs.

Authors:  V H Wysocki; J M Ding; J L Jones; J H Callahan; F L King
Journal:  J Am Soc Mass Spectrom       Date:  1992-01       Impact factor: 3.109

6.  Photon-induced dissociation with a four-sector tandem mass spectrometer.

Authors:  S A Martin; J A Hill; C Kittrell; K Biemann
Journal:  J Am Soc Mass Spectrom       Date:  1990-02       Impact factor: 3.109

7.  Surface-induced dissociation of multiply protonated peptides.

Authors:  A L McCormack; J L Jones; V H Wysocki
Journal:  J Am Soc Mass Spectrom       Date:  1992-11       Impact factor: 3.109

8.  Chemical ionization of laser-desorbed neutrals in a Fourier transform mass spectrometer.

Authors:  I J Amster; D P Land; J C Hemminger; R T McIver
Journal:  Anal Chem       Date:  1989-01-15       Impact factor: 6.986

9.  Proton transfer mass spectrometry of peptides. A rapid heating technique for underivatized peptides containing arginine.

Authors:  R J Beuhler; E Flanigan; L J Greene; L Friedman
Journal:  J Am Chem Soc       Date:  1974-06-12       Impact factor: 15.419

10.  Characterization by tandem mass spectrometry of structural modifications in proteins.

Authors:  K Biemann; H A Scoble
Journal:  Science       Date:  1987-08-28       Impact factor: 47.728

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  7 in total

1.  Activation of Peptide ions by blackbody radiation: factors that lead to dissociation kinetics in the rapid energy exchange limit.

Authors:  W D Price; E R Williams
Journal:  J Phys Chem A       Date:  1997-11-20       Impact factor: 2.781

2.  Experimental investigations of the internal energy of molecules evaporated via laser-induced acoustic desorption into a Fourier transform ion cyclotron resonance mass spectrometer.

Authors:  Ryan C Shea; Christopher J Petzold; Ji-Ang Liu; Hilkka I Kenttämaa
Journal:  Anal Chem       Date:  2007-01-31       Impact factor: 6.986

3.  Fragmentation of leucine enkephalin as a function of laser fluence in a MALDI TOF-TOF.

Authors:  Jennifer M Campbell; Marvin L Vestal; Paul S Blank; Stephen E Stein; Jonathan A Epstein; Alfred L Yergey
Journal:  J Am Soc Mass Spectrom       Date:  2007-01-03       Impact factor: 3.109

4.  Dissociation energetics and mechanisms of leucine enkephalin (M + H)+ and (2M + X)+ ions (X = H, Li, Na, K, and Rb) measured by blackbody infrared radiative dissociation.

Authors:  P D Schnier; W D Price; E F Strittmatter; E R Williams
Journal:  J Am Soc Mass Spectrom       Date:  1997-08       Impact factor: 3.109

5.  The reactions of ground state Cu(+) and Fe (+) with the 20 common amino acids.

Authors:  Q P Lei; I J Amster
Journal:  J Am Soc Mass Spectrom       Date:  1996-08       Impact factor: 3.109

6.  Effects of charge state on fragmentation pathways, dynamics, and activation energies of ubiquitin ions measured by blackbody infrared radiative dissociation.

Authors:  R A Jockusch; P D Schnier; W D Price; E F Strittmatter; P A Demirev; E R Williams
Journal:  Anal Chem       Date:  1997-03-15       Impact factor: 6.986

7.  Blackbody infrared radiative dissociation of bradykinin and its analogues: energetics, dynamics, and evidence for salt-bridge structures in the gas phase.

Authors:  P D Schnier; W D Price; R A Jockusch; E R Williams
Journal:  J Am Chem Soc       Date:  1996-07-31       Impact factor: 15.419

  7 in total

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