Literature DB >> 16144411

Electron transfer versus proton transfer in gas-phase ion/ion reactions of polyprotonated peptides.

Harsha P Gunawardena1, Min He, Paul A Chrisman, Sharon J Pitteri, Jason M Hogan, Brittany D M Hodges, Scott A McLuckey.   

Abstract

The ion/ion reactions of several dozen reagent anions with triply protonated cations of the model peptide KGAILKGAILR have been examined to evaluate predictions of a Landau-Zener-based model for the likelihood for electron transfer. Evidence for electron transfer was provided by the appearance of fragment ions unique to electron transfer or electron capture dissociation. Proton transfer and electron transfer are competitive processes for any combination of anionic and cationic reactants. For reagent anions in reactions with protonated peptides, proton transfer is usually significantly more exothermic than electron transfer. If charge transfer occurs at relatively long distances, electron transfer should, therefore, be favored on kinetic grounds because the reactant and product channels cross at greater distances, provided conditions are favorable for electron transfer at the crossing point. The results are consistent with a model based on Landau-Zener theory that indicates both thermodynamic and geometric criteria apply for electron transfer involving polyatomic anions. Both the model and the data suggest that electron affinities associated with the anionic reagents greater than about 60-70 kcal/mol minimize the likelihood that electron transfer will be observed. Provided the electron affinity is not too high, the Franck-Condon factors associated with the anion and its corresponding neutral must not be too low. When one or the other of these criteria is not met, proton transfer tends to occur essentially exclusively. Experiments involving ion/ion attachment products also suggest that a significant barrier exists to the isomerization between chemical complexes that, if formed, lead to either proton transfer or electron transfer.

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Year:  2005        PMID: 16144411      PMCID: PMC1570753          DOI: 10.1021/ja0526057

Source DB:  PubMed          Journal:  J Am Chem Soc        ISSN: 0002-7863            Impact factor:   15.419


  39 in total

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4.  Affecting proton mobility in activated peptide and whole protein ions via lysine guanidination.

Authors:  Sharon J Pitteri; Gavin E Reid; Scott A McLuckey
Journal:  J Proteome Res       Date:  2004 Jan-Feb       Impact factor: 4.466

5.  High resolution photodetachment spectroscopy of negative ions via slow photoelectron imaging.

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Authors:  E Mirgorodskaya; P Roepstorff; R A Zubarev
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  52 in total

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2.  Electron transfer dissociation of milk oligosaccharides.

Authors:  Liang Han; Catherine E Costello
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Authors:  Yu Xia; Paul A Chrisman; David E Erickson; Jian Liu; Xiaorong Liang; Frank A Londry; Min J Yang; Scott A McLuckey
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4.  Ion trajectory simulation for electrode configurations with arbitrary geometries.

Authors:  Guangxiang Wu; R Graham Cooks; Zheng Ouyang; Meng Yu; William J Chappell; Wolfgang R Plass
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5.  Alternately pulsed nanoelectrospray ionization/atmospheric pressure chemical ionization for ion/ion reactions in an electrodynamic ion trap.

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6.  Phosphopeptide anion characterization via sequential charge inversion and electron-transfer dissociation.

Authors:  Harsha P Gunawardena; Joshua F Emory; Scott A McLuckey
Journal:  Anal Chem       Date:  2006-06-01       Impact factor: 6.986

7.  A pulsed triple ionization source for sequential ion/ion reactions in an electrodynamic ion trap.

Authors:  Xiaorong Liang; Hongling Han; Yu Xia; Scott A McLuckey
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8.  Electron transfer dissociation of doubly sodiated glycerophosphocholine lipids.

Authors:  Xiaorong Liang; Jian Liu; Yves LeBlanc; Tom Covey; A Celeste Ptak; J Thomas Brenna; Scott A McLuckey
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9.  Electron-transfer reagent anion formation via electrospray ionization and collision-induced dissociation.

Authors:  Teng-Yi Huang; Joshua F Emory; Richard A J O'Hair; Scott A McLuckey
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10.  Gas-phase ion/ion reactions of peptides and proteins: acid/base, redox, and covalent chemistries.

Authors:  Boone M Prentice; Scott A McLuckey
Journal:  Chem Commun (Camb)       Date:  2012-12-20       Impact factor: 6.222

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