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Alkali-Metal-Ion-Assisted Hydrogen Atom Transfer in the Homocysteine Radical

Authors :
John T. Lawler
Justin Kai-Chi Lau
Victor Ryzhov
Jos Oomens
Alan C. Hopkinson
Michael Lesslie
K. W. Michael Siu
Giel Berden
Molecular Spectroscopy (HIMS, FNWI)
HIMS Other Research (FNWI)
Faculty of Science
Source :
Chemistry : a European Journal, 22, 2243-2246, Chemistry : a European Journal, 22, 7, pp. 2243-2246, Chemistry-A European Journal, 22(7), 2243-2246. Wiley-VCH Verlag
Publication Year :
2016

Abstract

Intramolecular hydrogen atom transfer (HAT) was examined in homocysteine (Hcy) thiyl radical/alkali metal ion complexes in the gas phase by combination of experimental techniques (ion‐molecule reactions and infrared multiple photon dissociation spectroscopy) and theoretical calculations. The experimental results unequivocally show that metal ion complexation (as opposed to protonation) of the regiospecifically generated Hcy thiyl radical promotes its rapid isomerisation into an α‐carbon radical via HAT. Theoretical calculations were employed to calculate the most probable HAT pathway and found that in alkali metal ion complexes the activation barrier is significantly lower, in full agreement with the experimental data. This is, to our knowledge, the first example of a gas‐phase thiyl radical thermal rearrangement into an α‐carbon species within the same amino acid residue and is consistent with the solution phase behaviour of Hcy radical.

Details

ISSN :
09476539
Database :
OpenAIRE
Journal :
Chemistry : a European Journal, 22, 2243-2246, Chemistry : a European Journal, 22, 7, pp. 2243-2246, Chemistry-A European Journal, 22(7), 2243-2246. Wiley-VCH Verlag
Accession number :
edsair.doi.dedup.....4192e8f5c187fb3bc94c40ae28a86888