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A functional model for the cysteinate-ligated non-heme iron enzyme superoxide reductase (SOR).


ABSTRACT: Superoxide reductases (SORs) are cysteine-ligated, non-heme iron enzymes that reduce toxic superoxide radicals (O2-). The functional role of the trans cysteinate, as well as the mechanism by which SOR reduces O2-, is unknown. Herein is described a rare example of a functional metalloenzyme analogue, which catalytically reduces superoxide in a proton-dependent mechanism, via a trans thiolate-ligated iron-peroxo intermediate, the first example of its type. Acetic-acid-promoted H2O2 release, followed by Cp2Co reduction, regenerates the active Fe(II) catalyst. The thiolate ligand and its trans positioning relative to the substrate are shown to contribute significantly to the catalyst's function, by lowering the redox potential, changing the spin state, and dramatically lowering the nuFe-O stretching frequency well-below that of any other reported iron-peroxo, while leaving nuO-O high, so as to favor superoxide reduction and Fe-O, as opposed to O-O, bond cleavage. Thus we provide critical insight into the relationship between the SOR structure and its function, as well as important benchmark parameters for characterizing highly unstable thiolate-ligated iron-peroxo intermediates.

SUBMITTER: Kitagawa T 

PROVIDER: S-EPMC2532059 | biostudies-literature | 2006 Nov

REPOSITORIES: biostudies-literature

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A functional model for the cysteinate-ligated non-heme iron enzyme superoxide reductase (SOR).

Kitagawa Terutaka T   Dey Abhishek A   Lugo-Mas Priscilla P   Benedict Jason B JB   Kaminsky Werner W   Solomon Edward E   Kovacs Julie A JA  

Journal of the American Chemical Society 20061101 45


Superoxide reductases (SORs) are cysteine-ligated, non-heme iron enzymes that reduce toxic superoxide radicals (O2-). The functional role of the trans cysteinate, as well as the mechanism by which SOR reduces O2-, is unknown. Herein is described a rare example of a functional metalloenzyme analogue, which catalytically reduces superoxide in a proton-dependent mechanism, via a trans thiolate-ligated iron-peroxo intermediate, the first example of its type. Acetic-acid-promoted H2O2 release, follow  ...[more]

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