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Identification and characterization of two families of F(420)H(2)-dependent reductases from Mycobacteria that catalyse aflatoxin degradation

Aflatoxins are polyaromatic mycotoxins that contaminate a range of food crops as a result of fungal growth and contribute to serious health problems in the developing world because of their toxicity and mutagenicity. Although relatively resistant to biotic degradation, aflatoxins can be metabolized...

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Autores principales: Taylor, Matthew C, Jackson, Colin J, Tattersall, David B, French, Nigel, Peat, Thomas S, Newman, Janet, Briggs, Lyndall J, Lapalikar, Gauri V, Campbell, Peter M, Scott, Colin, Russell, Robyn J, Oakeshott, John G
Formato: Texto
Lenguaje:English
Publicado: Blackwell Publishing Ltd 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3034190/
https://www.ncbi.nlm.nih.gov/pubmed/20807200
http://dx.doi.org/10.1111/j.1365-2958.2010.07356.x
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author Taylor, Matthew C
Jackson, Colin J
Tattersall, David B
French, Nigel
Peat, Thomas S
Newman, Janet
Briggs, Lyndall J
Lapalikar, Gauri V
Campbell, Peter M
Scott, Colin
Russell, Robyn J
Oakeshott, John G
author_facet Taylor, Matthew C
Jackson, Colin J
Tattersall, David B
French, Nigel
Peat, Thomas S
Newman, Janet
Briggs, Lyndall J
Lapalikar, Gauri V
Campbell, Peter M
Scott, Colin
Russell, Robyn J
Oakeshott, John G
author_sort Taylor, Matthew C
collection PubMed
description Aflatoxins are polyaromatic mycotoxins that contaminate a range of food crops as a result of fungal growth and contribute to serious health problems in the developing world because of their toxicity and mutagenicity. Although relatively resistant to biotic degradation, aflatoxins can be metabolized by certain species of Actinomycetales. However, the enzymatic basis for their breakdown has not been reported until now. We have identified nine Mycobacterium smegmatis enzymes that utilize the deazaflavin cofactor F(420)H(2) to catalyse the reduction of the α,β-unsaturated ester moiety of aflatoxins, activating the molecules for spontaneous hydrolysis and detoxification. These enzymes belong to two previously uncharacterized F(420)H(2) dependent reductase (FDR-A and -B) families that are distantly related to the flavin mononucleotide (FMN) dependent pyridoxamine 5′-phosphate oxidases (PNPOxs). We have solved crystal structures of an enzyme from each FDR family and show that they, like the PNPOxs, adopt a split barrel protein fold, although the FDRs also possess an extended and highly charged F(420)H(2) binding groove. A general role for these enzymes in xenobiotic metabolism is discussed, including the observation that the nitro-reductase Rv3547 from Mycobacterium tuberculosis that is responsible for the activation of bicyclic nitroimidazole prodrugs belongs to the FDR-A family.
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spelling pubmed-30341902011-02-15 Identification and characterization of two families of F(420)H(2)-dependent reductases from Mycobacteria that catalyse aflatoxin degradation Taylor, Matthew C Jackson, Colin J Tattersall, David B French, Nigel Peat, Thomas S Newman, Janet Briggs, Lyndall J Lapalikar, Gauri V Campbell, Peter M Scott, Colin Russell, Robyn J Oakeshott, John G Mol Microbiol Research Articles Aflatoxins are polyaromatic mycotoxins that contaminate a range of food crops as a result of fungal growth and contribute to serious health problems in the developing world because of their toxicity and mutagenicity. Although relatively resistant to biotic degradation, aflatoxins can be metabolized by certain species of Actinomycetales. However, the enzymatic basis for their breakdown has not been reported until now. We have identified nine Mycobacterium smegmatis enzymes that utilize the deazaflavin cofactor F(420)H(2) to catalyse the reduction of the α,β-unsaturated ester moiety of aflatoxins, activating the molecules for spontaneous hydrolysis and detoxification. These enzymes belong to two previously uncharacterized F(420)H(2) dependent reductase (FDR-A and -B) families that are distantly related to the flavin mononucleotide (FMN) dependent pyridoxamine 5′-phosphate oxidases (PNPOxs). We have solved crystal structures of an enzyme from each FDR family and show that they, like the PNPOxs, adopt a split barrel protein fold, although the FDRs also possess an extended and highly charged F(420)H(2) binding groove. A general role for these enzymes in xenobiotic metabolism is discussed, including the observation that the nitro-reductase Rv3547 from Mycobacterium tuberculosis that is responsible for the activation of bicyclic nitroimidazole prodrugs belongs to the FDR-A family. Blackwell Publishing Ltd 2010-11 /pmc/articles/PMC3034190/ /pubmed/20807200 http://dx.doi.org/10.1111/j.1365-2958.2010.07356.x Text en Copyright © 2010 Blackwell Publishing Ltd http://creativecommons.org/licenses/by/2.5/ Re-use of this article is permitted in accordance with the Creative Commons Deed, Attribution 2.5, which does not permit commercial exploitation.
spellingShingle Research Articles
Taylor, Matthew C
Jackson, Colin J
Tattersall, David B
French, Nigel
Peat, Thomas S
Newman, Janet
Briggs, Lyndall J
Lapalikar, Gauri V
Campbell, Peter M
Scott, Colin
Russell, Robyn J
Oakeshott, John G
Identification and characterization of two families of F(420)H(2)-dependent reductases from Mycobacteria that catalyse aflatoxin degradation
title Identification and characterization of two families of F(420)H(2)-dependent reductases from Mycobacteria that catalyse aflatoxin degradation
title_full Identification and characterization of two families of F(420)H(2)-dependent reductases from Mycobacteria that catalyse aflatoxin degradation
title_fullStr Identification and characterization of two families of F(420)H(2)-dependent reductases from Mycobacteria that catalyse aflatoxin degradation
title_full_unstemmed Identification and characterization of two families of F(420)H(2)-dependent reductases from Mycobacteria that catalyse aflatoxin degradation
title_short Identification and characterization of two families of F(420)H(2)-dependent reductases from Mycobacteria that catalyse aflatoxin degradation
title_sort identification and characterization of two families of f(420)h(2)-dependent reductases from mycobacteria that catalyse aflatoxin degradation
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3034190/
https://www.ncbi.nlm.nih.gov/pubmed/20807200
http://dx.doi.org/10.1111/j.1365-2958.2010.07356.x
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