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New function of aldoxime dehydratase: Redox catalysis and the formation of an expected product

In general, hemoproteins are capable of catalyzing redox reactions. Aldoxime dehydratase (OxdA), which is a unique heme-containing enzyme, catalyzes the dehydration of aldoximes to the corresponding nitriles. Its reaction is a rare example of heme directly activating an organic substrate, unlike the...

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Autores principales: Yamada, Masatoshi, Hashimoto, Yoshiteru, Kumano, Takuto, Tsujimura, Seiya, Kobayashi, Michihiko
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5391958/
https://www.ncbi.nlm.nih.gov/pubmed/28410434
http://dx.doi.org/10.1371/journal.pone.0175846
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author Yamada, Masatoshi
Hashimoto, Yoshiteru
Kumano, Takuto
Tsujimura, Seiya
Kobayashi, Michihiko
author_facet Yamada, Masatoshi
Hashimoto, Yoshiteru
Kumano, Takuto
Tsujimura, Seiya
Kobayashi, Michihiko
author_sort Yamada, Masatoshi
collection PubMed
description In general, hemoproteins are capable of catalyzing redox reactions. Aldoxime dehydratase (OxdA), which is a unique heme-containing enzyme, catalyzes the dehydration of aldoximes to the corresponding nitriles. Its reaction is a rare example of heme directly activating an organic substrate, unlike the utilization of H(2)O(2) or O(2) as a mediator of catalysis by other heme-containing enzymes. While it is unknown whether OxdA catalyzes redox reactions or not, we here for the first time detected catalase activity (which is one of the redox activities) of wild-type OxdA, OxdA(WT). Furthermore, we constructed a His320 → Asp mutant of OxdA [OxdA(H320D)], and found it exhibits catalase activity. Determination of the kinetic parameters of OxdA(WT) and OxdA(H320D) revealed that their K(m) values for H(2)O(2) were similar to each other, but the k(cat) value of OxdA(H320D) was 30 times higher than that of OxdA(WT). Next, we examined another redox activity and found it was the peroxidase activity of OxdAs. While both OxdA(WT) and OxdA(H320D) showed the activity, the activity of OxdA(H320D) was dozens of times higher than that of OxdA(WT). These findings demonstrated that the H320D mutation enhances the peroxidase activity of OxdA. OxdAs (WT and H320D) were found to catalyze another redox reaction, a peroxygenase reaction. During this reaction of OxdA(H320D) with 1-methoxynaphthalene as a substrate, surprisingly, the reaction mixture changed to a color different from that with OxdA(WT), which was due to the known product, Russig’s blue. We purified and identified the new product as 1-methoxy-2-naphthalenol, which has never been reported as a product of the peroxygenase reaction, to the best of our knowledge. These findings indicated that the H320D mutation not only enhanced redox activities, but also significantly altered the hydroxylation site of the substrate.
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spelling pubmed-53919582017-05-03 New function of aldoxime dehydratase: Redox catalysis and the formation of an expected product Yamada, Masatoshi Hashimoto, Yoshiteru Kumano, Takuto Tsujimura, Seiya Kobayashi, Michihiko PLoS One Research Article In general, hemoproteins are capable of catalyzing redox reactions. Aldoxime dehydratase (OxdA), which is a unique heme-containing enzyme, catalyzes the dehydration of aldoximes to the corresponding nitriles. Its reaction is a rare example of heme directly activating an organic substrate, unlike the utilization of H(2)O(2) or O(2) as a mediator of catalysis by other heme-containing enzymes. While it is unknown whether OxdA catalyzes redox reactions or not, we here for the first time detected catalase activity (which is one of the redox activities) of wild-type OxdA, OxdA(WT). Furthermore, we constructed a His320 → Asp mutant of OxdA [OxdA(H320D)], and found it exhibits catalase activity. Determination of the kinetic parameters of OxdA(WT) and OxdA(H320D) revealed that their K(m) values for H(2)O(2) were similar to each other, but the k(cat) value of OxdA(H320D) was 30 times higher than that of OxdA(WT). Next, we examined another redox activity and found it was the peroxidase activity of OxdAs. While both OxdA(WT) and OxdA(H320D) showed the activity, the activity of OxdA(H320D) was dozens of times higher than that of OxdA(WT). These findings demonstrated that the H320D mutation enhances the peroxidase activity of OxdA. OxdAs (WT and H320D) were found to catalyze another redox reaction, a peroxygenase reaction. During this reaction of OxdA(H320D) with 1-methoxynaphthalene as a substrate, surprisingly, the reaction mixture changed to a color different from that with OxdA(WT), which was due to the known product, Russig’s blue. We purified and identified the new product as 1-methoxy-2-naphthalenol, which has never been reported as a product of the peroxygenase reaction, to the best of our knowledge. These findings indicated that the H320D mutation not only enhanced redox activities, but also significantly altered the hydroxylation site of the substrate. Public Library of Science 2017-04-14 /pmc/articles/PMC5391958/ /pubmed/28410434 http://dx.doi.org/10.1371/journal.pone.0175846 Text en © 2017 Yamada 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 (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Yamada, Masatoshi
Hashimoto, Yoshiteru
Kumano, Takuto
Tsujimura, Seiya
Kobayashi, Michihiko
New function of aldoxime dehydratase: Redox catalysis and the formation of an expected product
title New function of aldoxime dehydratase: Redox catalysis and the formation of an expected product
title_full New function of aldoxime dehydratase: Redox catalysis and the formation of an expected product
title_fullStr New function of aldoxime dehydratase: Redox catalysis and the formation of an expected product
title_full_unstemmed New function of aldoxime dehydratase: Redox catalysis and the formation of an expected product
title_short New function of aldoxime dehydratase: Redox catalysis and the formation of an expected product
title_sort new function of aldoxime dehydratase: redox catalysis and the formation of an expected product
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5391958/
https://www.ncbi.nlm.nih.gov/pubmed/28410434
http://dx.doi.org/10.1371/journal.pone.0175846
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