Mechanism and Energetics of Intramolecular Hydrogen Transfer in Amide and Peptide Radicals and Cation-Radicals
Top Cited Papers
- 25 February 2003
- journal article
- research article
- Published by American Chemical Society (ACS) in Journal of the American Chemical Society
- Vol. 125 (11), 3353-3369
- https://doi.org/10.1021/ja021162t
Abstract
Intramolecular hydrogen transfer in five model amide and peptide radicals and cation-radicals was investigated by combined B3LYP-MP2 calculations. Hypervalent ammonium radicals produced by electron capture in protonated peptides undergo competitive elimination of ammonia, H-atom loss, and H-atom migration to neighboring amide carbonyls. The calculated transition state energies for H-atom migration are slightly but uniformly lower than those for H-atom loss. Transition state theory calculations with inclusion of quantum tunneling effects predict k(H migration)/k(H loss) branching ratios that increase with the ring size of the cyclic transition state for the migration. Intramolecular hydrogen-atom migration in amide and peptide radicals can be described by the proton-coupled electron transfer mechanism. The migrating hydrogen atom shows a negligible spin density and substantial positive charge that are typical of a proton migration. Electron transfer occurs through a pi-orbital system and proceeds in the same (clockwise) or opposite (counterclockwise) direction as the proton motion, depending on the electronic properties of the chain connecting the ammonium group and the amide bond.This publication has 49 references indexed in Scilit:
- Electron capture dissociation of polypeptides using a 3 Tesla Fourier transform ion cyclotron resonance mass spectrometerRapid Communications in Mass Spectrometry, 2002
- An efficient implementation of time-dependent density-functional theory for the calculation of excitation energies of large moleculesThe Journal of Chemical Physics, 1998
- Protonation of isomeric methoxyhexenes. Effects of double bond⋯H+⋯OCH3 interactionInternational Journal of Mass Spectrometry and Ion Processes, 1997
- Unimolecular Reaction Kinetics in the High-Pressure Limit without CollisionsJournal of the American Chemical Society, 1996
- Hydrogentrimethylammonium: A Marginally Stable Hypervalent RadicalJournal of the American Chemical Society, 1994
- An electrically neutral .sigma.-sulfuranyl radical from the homolysis of a perester with neighboring sulfenyl sulfur: 9-S-3 speciesJournal of the American Chemical Society, 1980
- Energetics of fragmentation of CH5, H3O, and NH4 from neutralized ion-beam experimentsThe Journal of Chemical Physics, 1980
- Determination of proton affinities from the kinetics of proton transfer reactions. VII. The proton affinities of O2, H2, Kr, O, N2, Xe, CO2, CH4, N2O, and COThe Journal of Chemical Physics, 1980
- A vibrational study of zirconium tetraborohydride supported on aluminum oxide. 1. Interactions with deuterium, deuterium oxide, and water vaporJournal of the American Chemical Society, 1980
- The Kinetics of an Acid Catalyzed Aromatic Cyclodehydration Reaction in Acetic Acid-Water MixturesJournal of the American Chemical Society, 1960