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The Substrate Radical of Escherichia coil Oxygen-independent Coproporphyrinogen Ill Oxidase HemN.

Authors :
Layer, Gunhild
Pierik, Antonio J.
Trost, Matthias
Rigby, Steve E.
Leech, Helen K.
Grage, Katrin
Breckau, Daniela
Astner, Isabel
Jänsch, Lothar
Heathcote, Peter
Warren, Martini J.
Heinz, Dirk W.
Jahn, Dieter
Source :
Journal of Biological Chemistry. 6/9/2006, Vol. 281 Issue 23, p15727-15734. 8p. 8 Diagrams.
Publication Year :
2006

Abstract

During porphyrin biosynthesis the oxygen-independent coproporphyrinogen III oxidase (HemN) catalyzes the oxidative decarboxylation of the propionate side chains of rings A and B of coproporphyrinogen III to form protoporphyrinogen IX. The enzyme utilizes a 5′-deoxyadenosyl radical to initiate the decarboxylation reaction, and it has been proposed that this occurs by stereo-specific abstraction of the pro-S-hydrogen atom at the β-position of the propionate side chains leading to a substrate radical. Here we provide EPR-spectroscopic evidence for intermediacy of the latter radical by observation of an organic radical EPR signal in reduced HemN upon addition of S-adenosyl-L-me- thionine and the substrate coproporphyrinogen III. This signal (gav = 2.0029) shows a complex pattern of well resolved hyperfine splittings from at least five different hydrogen atoms. The radical was characterized using regiospecifically labeled (deuterium or 15N) coproporphyrinogen III molecules. They had been generated from a multienzyme mixture and served as efficient substrates. Reaction of HemN with coproporphyrinogen III, perdeuterated except for the methyl groups, led to the complete loss of resolved proton hyperfine splittings. Substrates in which the hydrogens at both α- and β-positions, or only at the β-positions of the propionate side chains, or those of the methylene bridges, were deuterated showed that there is coupling with hydrogens at the α-, β-, and methylene bridge positions. Deuterium or 15N labeling of the pyrrole nitrogens without labeling the side chains only led to a slight sharpening of the radical signal. Together, these observations clearly identified the radical signal as substrate-derived and indicated that, upon abstraction of the pro-S-hydrogen atom at the β-position of the propionate side chain by the 5′-deoxyadenosyl radical, a comparatively stable delocalized substrate radical intermediate is formed in the absence of electron acceptors. The observed hyperfine constants and g values show that this coproporphyrinogenyl radical is allylic and encompasses carbon atoms 3′, 3, and 4. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00219258
Volume :
281
Issue :
23
Database :
Academic Search Index
Journal :
Journal of Biological Chemistry
Publication Type :
Academic Journal
Accession number :
21272231
Full Text :
https://doi.org/10.1074/jbc.M512628200