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Mutational and crystallographic analysis of l-amino acid oxidase/monooxygenase from Pseudomonas sp. AIU 813: Interconversion between oxidase and monooxygenase activities

In this study, it was shown for the first time that l-amino acid oxidase of Pseudomonas sp. AIU813, renamed as l-amino acid oxidase/monooxygenase (l-AAO/MOG), exhibits l-lysine 2-monooxygenase as well as oxidase activity. l-Lysine oxidase activity of l-AAO/MOG was increased in a p-chloromercuribenzo...

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Autores principales: Matsui, Daisuke, Im, Do-Hyun, Sugawara, Asami, Fukuta, Yasuhisa, Fushinobu, Shinya, Isobe, Kimiyasu, Asano, Yasuhisa
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3970082/
https://www.ncbi.nlm.nih.gov/pubmed/24693490
http://dx.doi.org/10.1016/j.fob.2014.02.002
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author Matsui, Daisuke
Im, Do-Hyun
Sugawara, Asami
Fukuta, Yasuhisa
Fushinobu, Shinya
Isobe, Kimiyasu
Asano, Yasuhisa
author_facet Matsui, Daisuke
Im, Do-Hyun
Sugawara, Asami
Fukuta, Yasuhisa
Fushinobu, Shinya
Isobe, Kimiyasu
Asano, Yasuhisa
author_sort Matsui, Daisuke
collection PubMed
description In this study, it was shown for the first time that l-amino acid oxidase of Pseudomonas sp. AIU813, renamed as l-amino acid oxidase/monooxygenase (l-AAO/MOG), exhibits l-lysine 2-monooxygenase as well as oxidase activity. l-Lysine oxidase activity of l-AAO/MOG was increased in a p-chloromercuribenzoate (p-CMB) concentration-dependent manner to a final level that was five fold higher than that of the non-treated enzyme. In order to explain the effects of modification by the sulfhydryl reagent, saturation mutagenesis studies were carried out on five cysteine residues, and we succeeded in identifying l-AAO/MOG C254I mutant enzyme, which showed five-times higher specific activity of oxidase activity than that of wild type. The monooxygenase activity shown by the C254I variant was decreased significantly. Moreover, we also determined a high-resolution three-dimensional structure of l-AAO/MOG to provide a structural basis for its biochemical characteristics. The key residue for the activity conversion of l-AAO/MOG, Cys-254, is located near the aromatic cage (Trp-418, Phe-473, and Trp-516). Although the location of Cys-254 indicates that it is not directly involved in the substrate binding, the chemical modification by p-CMB or C254I mutation would have a significant impact on the substrate binding via the side chain of Trp-516. It is suggested that a slight difference of the binding position of a substrate can dictate the activity of this type of enzyme as oxidase or monooxygenase.
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spelling pubmed-39700822014-04-01 Mutational and crystallographic analysis of l-amino acid oxidase/monooxygenase from Pseudomonas sp. AIU 813: Interconversion between oxidase and monooxygenase activities Matsui, Daisuke Im, Do-Hyun Sugawara, Asami Fukuta, Yasuhisa Fushinobu, Shinya Isobe, Kimiyasu Asano, Yasuhisa FEBS Open Bio Article In this study, it was shown for the first time that l-amino acid oxidase of Pseudomonas sp. AIU813, renamed as l-amino acid oxidase/monooxygenase (l-AAO/MOG), exhibits l-lysine 2-monooxygenase as well as oxidase activity. l-Lysine oxidase activity of l-AAO/MOG was increased in a p-chloromercuribenzoate (p-CMB) concentration-dependent manner to a final level that was five fold higher than that of the non-treated enzyme. In order to explain the effects of modification by the sulfhydryl reagent, saturation mutagenesis studies were carried out on five cysteine residues, and we succeeded in identifying l-AAO/MOG C254I mutant enzyme, which showed five-times higher specific activity of oxidase activity than that of wild type. The monooxygenase activity shown by the C254I variant was decreased significantly. Moreover, we also determined a high-resolution three-dimensional structure of l-AAO/MOG to provide a structural basis for its biochemical characteristics. The key residue for the activity conversion of l-AAO/MOG, Cys-254, is located near the aromatic cage (Trp-418, Phe-473, and Trp-516). Although the location of Cys-254 indicates that it is not directly involved in the substrate binding, the chemical modification by p-CMB or C254I mutation would have a significant impact on the substrate binding via the side chain of Trp-516. It is suggested that a slight difference of the binding position of a substrate can dictate the activity of this type of enzyme as oxidase or monooxygenase. Elsevier 2014-02-07 /pmc/articles/PMC3970082/ /pubmed/24693490 http://dx.doi.org/10.1016/j.fob.2014.02.002 Text en © 2014 Published by Elsevier B.V. on behalf of Federation of European Biochemical Societies.
spellingShingle Article
Matsui, Daisuke
Im, Do-Hyun
Sugawara, Asami
Fukuta, Yasuhisa
Fushinobu, Shinya
Isobe, Kimiyasu
Asano, Yasuhisa
Mutational and crystallographic analysis of l-amino acid oxidase/monooxygenase from Pseudomonas sp. AIU 813: Interconversion between oxidase and monooxygenase activities
title Mutational and crystallographic analysis of l-amino acid oxidase/monooxygenase from Pseudomonas sp. AIU 813: Interconversion between oxidase and monooxygenase activities
title_full Mutational and crystallographic analysis of l-amino acid oxidase/monooxygenase from Pseudomonas sp. AIU 813: Interconversion between oxidase and monooxygenase activities
title_fullStr Mutational and crystallographic analysis of l-amino acid oxidase/monooxygenase from Pseudomonas sp. AIU 813: Interconversion between oxidase and monooxygenase activities
title_full_unstemmed Mutational and crystallographic analysis of l-amino acid oxidase/monooxygenase from Pseudomonas sp. AIU 813: Interconversion between oxidase and monooxygenase activities
title_short Mutational and crystallographic analysis of l-amino acid oxidase/monooxygenase from Pseudomonas sp. AIU 813: Interconversion between oxidase and monooxygenase activities
title_sort mutational and crystallographic analysis of l-amino acid oxidase/monooxygenase from pseudomonas sp. aiu 813: interconversion between oxidase and monooxygenase activities
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3970082/
https://www.ncbi.nlm.nih.gov/pubmed/24693490
http://dx.doi.org/10.1016/j.fob.2014.02.002
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