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Bacillus megaterium Has Both a Functional BluB Protein Required for DMB Synthesis and a Related Flavoprotein That Forms a Stable Radical Species

Despite the extensive study of the biosynthesis of the complex molecule B(12) (cobalamin), the mechanism by which the lower ligand 5,6-dimethylbenzimidazole (DMB) is formed has remained something of a mystery. However, recent work has identified and characterized a DMB-synthase (BluB) responsible fo...

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Autores principales: Collins, Hannah F., Biedendieck, Rebekka, Leech, Helen K., Gray, Michael, Escalante-Semerena, Jorge C., McLean, Kirsty J., Munro, Andrew W., Rigby, Stephen E. J., Warren, Martin J., Lawrence, Andrew D.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3573010/
https://www.ncbi.nlm.nih.gov/pubmed/23457476
http://dx.doi.org/10.1371/journal.pone.0055708
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author Collins, Hannah F.
Biedendieck, Rebekka
Leech, Helen K.
Gray, Michael
Escalante-Semerena, Jorge C.
McLean, Kirsty J.
Munro, Andrew W.
Rigby, Stephen E. J.
Warren, Martin J.
Lawrence, Andrew D.
author_facet Collins, Hannah F.
Biedendieck, Rebekka
Leech, Helen K.
Gray, Michael
Escalante-Semerena, Jorge C.
McLean, Kirsty J.
Munro, Andrew W.
Rigby, Stephen E. J.
Warren, Martin J.
Lawrence, Andrew D.
author_sort Collins, Hannah F.
collection PubMed
description Despite the extensive study of the biosynthesis of the complex molecule B(12) (cobalamin), the mechanism by which the lower ligand 5,6-dimethylbenzimidazole (DMB) is formed has remained something of a mystery. However, recent work has identified and characterized a DMB-synthase (BluB) responsible for the oxygen-dependent, single enzyme conversion of FMN to DMB. In this work, we have identified BluB homologs from the aerobic purple, nonsulfur, photosynthetic bacterium Rhodobacter capsulatus and the aerobic soil bacterium Bacillus megaterium and have demonstrated DMB synthesis by the use of a novel complementation assay in which a B(12) deficient strain, substituted with the precursor cobinamide is recovered either by the addition of DMB or by the recombinant expression of a bluB gene. The DMB-synthetic activity of the purified recombinant BluB enzymes was further confirmed in vitro by providing the enzyme with FMNH(2) and oxygen and observing the formation of DMB by HPLC. The formation of a 4a-peroxyflavin intermediate, the first step in the oxygen dependent mechanism of DMB biosynthesis, is reported here and is the first intermediate in the enzyme catalysed reaction to be demonstrated experimentally to date. The identification and characterization of an FMN-binding protein found on the cobI operon of B. megaterium, CbiY, is also detailed, revealing an FMN-containing enzyme which is able to stabilize a blue flavin semiquinone upon reduction with a 1-electron donor.
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spelling pubmed-35730102013-03-01 Bacillus megaterium Has Both a Functional BluB Protein Required for DMB Synthesis and a Related Flavoprotein That Forms a Stable Radical Species Collins, Hannah F. Biedendieck, Rebekka Leech, Helen K. Gray, Michael Escalante-Semerena, Jorge C. McLean, Kirsty J. Munro, Andrew W. Rigby, Stephen E. J. Warren, Martin J. Lawrence, Andrew D. PLoS One Research Article Despite the extensive study of the biosynthesis of the complex molecule B(12) (cobalamin), the mechanism by which the lower ligand 5,6-dimethylbenzimidazole (DMB) is formed has remained something of a mystery. However, recent work has identified and characterized a DMB-synthase (BluB) responsible for the oxygen-dependent, single enzyme conversion of FMN to DMB. In this work, we have identified BluB homologs from the aerobic purple, nonsulfur, photosynthetic bacterium Rhodobacter capsulatus and the aerobic soil bacterium Bacillus megaterium and have demonstrated DMB synthesis by the use of a novel complementation assay in which a B(12) deficient strain, substituted with the precursor cobinamide is recovered either by the addition of DMB or by the recombinant expression of a bluB gene. The DMB-synthetic activity of the purified recombinant BluB enzymes was further confirmed in vitro by providing the enzyme with FMNH(2) and oxygen and observing the formation of DMB by HPLC. The formation of a 4a-peroxyflavin intermediate, the first step in the oxygen dependent mechanism of DMB biosynthesis, is reported here and is the first intermediate in the enzyme catalysed reaction to be demonstrated experimentally to date. The identification and characterization of an FMN-binding protein found on the cobI operon of B. megaterium, CbiY, is also detailed, revealing an FMN-containing enzyme which is able to stabilize a blue flavin semiquinone upon reduction with a 1-electron donor. Public Library of Science 2013-02-14 /pmc/articles/PMC3573010/ /pubmed/23457476 http://dx.doi.org/10.1371/journal.pone.0055708 Text en © 2013 Collins et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Collins, Hannah F.
Biedendieck, Rebekka
Leech, Helen K.
Gray, Michael
Escalante-Semerena, Jorge C.
McLean, Kirsty J.
Munro, Andrew W.
Rigby, Stephen E. J.
Warren, Martin J.
Lawrence, Andrew D.
Bacillus megaterium Has Both a Functional BluB Protein Required for DMB Synthesis and a Related Flavoprotein That Forms a Stable Radical Species
title Bacillus megaterium Has Both a Functional BluB Protein Required for DMB Synthesis and a Related Flavoprotein That Forms a Stable Radical Species
title_full Bacillus megaterium Has Both a Functional BluB Protein Required for DMB Synthesis and a Related Flavoprotein That Forms a Stable Radical Species
title_fullStr Bacillus megaterium Has Both a Functional BluB Protein Required for DMB Synthesis and a Related Flavoprotein That Forms a Stable Radical Species
title_full_unstemmed Bacillus megaterium Has Both a Functional BluB Protein Required for DMB Synthesis and a Related Flavoprotein That Forms a Stable Radical Species
title_short Bacillus megaterium Has Both a Functional BluB Protein Required for DMB Synthesis and a Related Flavoprotein That Forms a Stable Radical Species
title_sort bacillus megaterium has both a functional blub protein required for dmb synthesis and a related flavoprotein that forms a stable radical species
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3573010/
https://www.ncbi.nlm.nih.gov/pubmed/23457476
http://dx.doi.org/10.1371/journal.pone.0055708
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