Alex Jones

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Name:
Organization: The University of Manchester , England
Department:
Title: Research Fellow(PhD)
Co-reporter:Dr. Alex R. Jones;Julius Rentergent; Nigel S. Scrutton;Dr. Sam Hay
Chemistry - A European Journal 2015 Volume 21( Issue 24) pp:8826-8831
Publication Date(Web):
DOI:10.1002/chem.201500958

Abstract

Coenzyme B12-dependent enzymes such as ethanolamine ammonia lyase have remarkable catalytic power and some unique properties that enable detailed analysis of the reaction chemistry and associated dynamics. By selectively deuterating the substrate (ethanolamine) and/or the β-carbon of the 5′-deoxyadenosyl moiety of the intrinsic coenzyme B12, it was possible to experimentally probe both the forward and reverse hydrogen atom transfers between the 5′-deoxyadenosyl radical and substrate during single-turnover stopped-flow measurements. These data are interpreted within the context of a kinetic model where the 5′-deoxyadenosyl radical intermediate may be quasi-stable and rearrangement of the substrate radical is essentially irreversible. Global fitting of these data allows estimation of the intrinsic rate constants associated with CoC homolysis and initial H-abstraction steps. In contrast to previous stopped-flow studies, the apparent kinetic isotope effects are found to be relatively small.

Co-reporter:Dr. Zhi-Gang Chen;Monika A Zi&x119;tek;Henry J. Russell;Shirley Tait;Dr. Sam Hay;Dr. Alex R. Jones; Nigel S. Scrutton
ChemBioChem 2013 Volume 14( Issue 13) pp:1529-1533
Publication Date(Web):
DOI:10.1002/cbic.201300420
Coenzyme B12
Cobinamide, dihydrogenphosphate (ester), inner salt, 3'-ester with (5,6-dimethyl-1-a-D-ribofuranosyl-1H-benzimidazole-kN3), ion(1+) (9CI)
Corrin
HYDROXOCOBALAMIN