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PMID: 16218869 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Review

Structural and functional comparison of HemN to other radical SAM enzymes.

Biological chemistry ·Vol. 386 ·No. 10 ·2005-10-00 ·Pages 971-80

Layer G, Kervio E, Morlock G, Heinz DW, Jahn D, Retey J, Schubert WD

Abstract

Radical SAM enzymes have only recently been recognized as an ancient family sharing an unusual radical-based reaction mechanism. This late appreciation is due to the extreme oxygen sensitivity of most radical SAM enzymes, making their characterization particularly arduous. Nevertheless, realization that the novel apposition of the established cofactors S-adenosylmethionine and [4Fe-4S] cluster creates an explosive source of catalytic radicals, the appreciation of the sheer size of this previously neglected family, and the rapid succession of three successfully solved crystal structures within a year have ensured that this family has belatedly been noted. In this review, we report the characterization of two enzymes: the established radical SAM enzyme, HemN or oxygen-independent coproporphyrinogen III oxidase from Escherichia coli, and littorine mutase, a presumed radical SAM enzyme, responsible for the conversion of littorine to hyoscyamine in plants. The enzymes are compared to other radical SAM enzymes and in particular the three reported crystal structures from this family, HemN, biotin synthase and MoaA, are discussed.

MeSH Terms
Atropine Derivatives/metabolism Bacterial Proteins/chemistry,metabolism Coproporphyrinogen Oxidase/chemistry,metabolism Crystallography Datura stramonium/enzymology Enzymes/chemistry,metabolism Escherichia coli/enzymology Escherichia coli Proteins/chemistry,metabolism Intramolecular Transferases/chemistry,metabolism Protein Conformation S-Adenosylmethionine/metabolism Sulfurtransferases/chemistry,metabolism
Chemicals
Atropine Derivatives Bacterial Proteins Enzymes Escherichia coli Proteins littorine S-Adenosylmethionine HemN protein, Bacteria Coproporphyrinogen Oxidase Sulfurtransferases biotin synthase, E coli Intramolecular Transferases
Authors & Affiliations
7 authors, click to expand affiliations / ORCID
Layer Gunhild
Institute of Microbiology, Technical University of Braunschweig, Spielmannstrasse 7, D-38106 Braunschweig, Germany.
Kervio Eric
Morlock Gaby
Heinz Dirk W
Jahn Dieter
Retey Janos
Schubert Wolf-Dieter
Article Info
Journal
Biological chemistry
Abbr.
Biol Chem
ISSN
1431-6730
Published
2005-10-00
Pages
971-80
Language
English
Region
Germany
NLM ID
9700112
Subset
IM
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