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Demonstration That CobG, the Monooxygenase Associated with the Ring Contraction Process of the Aerobic Cobalamin (Vitamin B12) Biosynthetic Pathway, Contains an Fe-S Center and a Mononuclear Non-heme Iron Center

Schroeder, Susanne, Lawrence, Andrew D., Biedendieck, Rebekka, Rose, Ruth-Sarah, Deery, Evelyne, Graham, Ross M., McLean, Kirsty J., Munro, Andrew W., Rigby, Stephen E. J., Warren, Martin J. and others. (2009) Demonstration That CobG, the Monooxygenase Associated with the Ring Contraction Process of the Aerobic Cobalamin (Vitamin B12) Biosynthetic Pathway, Contains an Fe-S Center and a Mononuclear Non-heme Iron Center. Journal of Biological Chemistry, 284 (8). pp. 4796-4805. ISSN 0021-9258. (doi:10.1074/jbc.M807184200) (The full text of this publication is not currently available from this repository. You may be able to access a copy if URLs are provided) (KAR id:31425)

The full text of this publication is not currently available from this repository. You may be able to access a copy if URLs are provided.
Official URL:
http://dx.doi.org/10.1074/jbc.M807184200

Abstract

The ring contraction process that occurs during cobalamin (vitamin B12) biosynthesis is mediated via the action of two enzymes, CobG and CobJ. The first of these generates a tertiary alcohol at the C-20 position of precorrin-3A by functioning as a monooxygenase, a reaction that also forms a gamma lactone with the acetic acid side chain on ring A. The product, precorrin-3B, is then acted upon by CobJ, which methylates at the C-17 position and promotes ring contraction of the macrocycle by catalyzing a masked pinacol rearrangement. Here, we report the characterization of CobG enzymes from Pseudomonas denitrificans and Brucella melitensis. We show that both contain a [4Fe-4S] center as well as a mononuclear non-heme iron. Although both enzymes are active in vivo, the P. denitrificans enzyme was found to be inactive in vitro. Further analysis of this enzyme revealed that the mononuclear non-heme iron was not reducible, and it was concluded that it is rapidly inactivated once it is released from the bacterial cell. In contrast, the B. melitensis enzyme was found to be fully active in vitro and the mononuclear non-heme iron was reducible by dithionite. The reduced mononuclear non-heme was able to react with the oxygen analogue NO, but only in the presence of the substrate precorrin-3A. The cysteine residues responsible for binding the Fe-S center were identified by site-directed mutagenesis. A mechanism for CobG is presented.

Item Type: Article
DOI/Identification number: 10.1074/jbc.M807184200
Subjects: Q Science
Divisions: Divisions > Division of Natural Sciences > Biosciences
Depositing User: Susan Davies
Date Deposited: 09 Oct 2012 10:44 UTC
Last Modified: 16 Nov 2021 10:09 UTC
Resource URI: https://kar.kent.ac.uk/id/eprint/31425 (The current URI for this page, for reference purposes)

University of Kent Author Information

Schroeder, Susanne.

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Lawrence, Andrew D..

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Deery, Evelyne.

Creator's ORCID: https://orcid.org/0000-0002-8189-678X
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Warren, Martin J..

Creator's ORCID: https://orcid.org/0000-0002-6028-6456
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