Three-electron two-centred bonds and the stabilisation of cationic sulfur radicals
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Author(s)
Hendon, CH
Carbery, DR
Walsh, A
Type
Journal Article
Abstract
Electronic communication in biological systems is fundamental to understanding protein signalling and electron hopping pathways. Frequently studied examples are cationic radical methionine and its functional derivatives. These systems are understood to be stabilised by a direct ‘three-electron two-centred’ bond. We demonstrate for methionine and a series of cationic radical methionine analogues that long-range multi-centred indirect stabilisation occurs, which cannot be attributed to three-electron two-centred interactions. A revised description of the radical stabilisation process is presented, which includes contributions from all atoms with accessible p-orbitals, independent of the distance to the sulfur radical.
Date Issued
2014-01-20
Date Acceptance
2014-01-20
Citation
Chemical Science, 2014, 5 (4), pp.1390-1395
ISSN
2041-6539
Publisher
Royal Society of Chemistry
Start Page
1390
End Page
1395
Journal / Book Title
Chemical Science
Volume
5
Issue
4
Copyright Statement
This article is licensed under a Creative Commons Attribution 3.0 Unported Licence.
License URL
Subjects
Science & Technology
Physical Sciences
Chemistry, Multidisciplinary
Chemistry
CHEMISTRY, MULTIDISCIPLINARY
ONE-ELECTRON OXIDATION
METHIONINE-CONTAINING PEPTIDES
PARAMAGNETIC-RESONANCE
AQUEOUS-SOLUTION
AMINO-ACIDS
AB-INITIO
PROTEINS
RESIDUES
OXYGEN
MECHANISMS
Publication Status
Published