IDENTIFICATION OF THE 4-GLUTAMYL RADICAL AS AN INTERMEDIATE IN THE CARBON SKELETON REARRANGEMENT CATALYZED BY COENZYME B-12-DEPENDENT GLUTAMATE MUTASE FROM CLOSTRIDIUM-COCHLEARIUM

Citation
H. Bothe et al., IDENTIFICATION OF THE 4-GLUTAMYL RADICAL AS AN INTERMEDIATE IN THE CARBON SKELETON REARRANGEMENT CATALYZED BY COENZYME B-12-DEPENDENT GLUTAMATE MUTASE FROM CLOSTRIDIUM-COCHLEARIUM, Biochemistry, 37(12), 1998, pp. 4105-4113
Citations number
55
Categorie Soggetti
Biology
Journal title
ISSN journal
00062960
Volume
37
Issue
12
Year of publication
1998
Pages
4105 - 4113
Database
ISI
SICI code
0006-2960(1998)37:12<4105:IOT4RA>2.0.ZU;2-I
Abstract
A series of H-2- and C-13-labeled glutamates were used as substrates f or coenzyme B-12-dependent glutamate mutase, which equilibrates (S)-gl utamate with (2S,3S)-3-methylaspartate. These compounds contained the isotopes at C-2, C-3, or C-4 of the carbon chain: [2-H-2], [3,3-H-2(2) ], [4,4-H-2(2)], [2,3,3,4,4-H-2(5)], [2-C-13], [3-C-13], and [4-C-13]g lutamate. Each reaction was monitored by electron paramagnetic resonan ce (EPR) spectroscopy and revealed a similar signal characterized by g (xy)' = 2.1, g(z)' = 1.985, and A' = 5.0 mT. The interpretation of the spectral data was aided by simulations which gave close agreement wit h experiment. This approach underpinned the idea of the formation of a radical pair, consisting of cob(IT)alamin interacting with an organic radical at a distance of 6.6 +/- 0.9 Angstrom. Comparison of the hype rfine couplings observed with unlabeled glutamate with those from the labeled glutamates enabled a principal contributor to the radical pair to be identified as the 4-glutamyl radical, These findings support th e currently accepted mechanism for the glutamate mutase reaction, i.e. , the process is initiated through hydrogen atom abstraction from C-4 of glutamate by the 5'-deoxyadenosyl radical, which is derived by homo lysis of the Co-C sigma-bond of coenzyme B-12.