A three-component monooxygenase from Rhodococcus wratislaviensis may expand industrial applications of bacterial enzymes

Makoto Hibi et al. report a novel three-component monooxygenase system in Rhodococcus wratislaviensis. This enzyme catalyzes the activation of an inert C–H bond and may be potentially important as a biocatalyst for industrial applications.

Guardado en:
Detalles Bibliográficos
Autores principales: Makoto Hibi, Dai Fukuda, Chihiro Kenchu, Masutoshi Nojiri, Ryotaro Hara, Michiki Takeuchi, Shunsuke Aburaya, Wataru Aoki, Kimihiko Mizutani, Yoshihiko Yasohara, Mitsuyoshi Ueda, Bunzo Mikami, Satomi Takahashi, Jun Ogawa
Formato: article
Lenguaje:EN
Publicado: Nature Portfolio 2021
Materias:
Acceso en línea:https://doaj.org/article/9183640daab141cc86de44618661815b
Etiquetas: Agregar Etiqueta
Sin Etiquetas, Sea el primero en etiquetar este registro!
id oai:doaj.org-article:9183640daab141cc86de44618661815b
record_format dspace
spelling oai:doaj.org-article:9183640daab141cc86de44618661815b2021-12-02T11:56:22ZA three-component monooxygenase from Rhodococcus wratislaviensis may expand industrial applications of bacterial enzymes10.1038/s42003-020-01555-32399-3642https://doaj.org/article/9183640daab141cc86de44618661815b2021-01-01T00:00:00Zhttps://doi.org/10.1038/s42003-020-01555-3https://doaj.org/toc/2399-3642Makoto Hibi et al. report a novel three-component monooxygenase system in Rhodococcus wratislaviensis. This enzyme catalyzes the activation of an inert C–H bond and may be potentially important as a biocatalyst for industrial applications.Makoto HibiDai FukudaChihiro KenchuMasutoshi NojiriRyotaro HaraMichiki TakeuchiShunsuke AburayaWataru AokiKimihiko MizutaniYoshihiko YasoharaMitsuyoshi UedaBunzo MikamiSatomi TakahashiJun OgawaNature PortfolioarticleBiology (General)QH301-705.5ENCommunications Biology, Vol 4, Iss 1, Pp 1-10 (2021)
institution DOAJ
collection DOAJ
language EN
topic Biology (General)
QH301-705.5
spellingShingle Biology (General)
QH301-705.5
Makoto Hibi
Dai Fukuda
Chihiro Kenchu
Masutoshi Nojiri
Ryotaro Hara
Michiki Takeuchi
Shunsuke Aburaya
Wataru Aoki
Kimihiko Mizutani
Yoshihiko Yasohara
Mitsuyoshi Ueda
Bunzo Mikami
Satomi Takahashi
Jun Ogawa
A three-component monooxygenase from Rhodococcus wratislaviensis may expand industrial applications of bacterial enzymes
description Makoto Hibi et al. report a novel three-component monooxygenase system in Rhodococcus wratislaviensis. This enzyme catalyzes the activation of an inert C–H bond and may be potentially important as a biocatalyst for industrial applications.
format article
author Makoto Hibi
Dai Fukuda
Chihiro Kenchu
Masutoshi Nojiri
Ryotaro Hara
Michiki Takeuchi
Shunsuke Aburaya
Wataru Aoki
Kimihiko Mizutani
Yoshihiko Yasohara
Mitsuyoshi Ueda
Bunzo Mikami
Satomi Takahashi
Jun Ogawa
author_facet Makoto Hibi
Dai Fukuda
Chihiro Kenchu
Masutoshi Nojiri
Ryotaro Hara
Michiki Takeuchi
Shunsuke Aburaya
Wataru Aoki
Kimihiko Mizutani
Yoshihiko Yasohara
Mitsuyoshi Ueda
Bunzo Mikami
Satomi Takahashi
Jun Ogawa
author_sort Makoto Hibi
title A three-component monooxygenase from Rhodococcus wratislaviensis may expand industrial applications of bacterial enzymes
title_short A three-component monooxygenase from Rhodococcus wratislaviensis may expand industrial applications of bacterial enzymes
title_full A three-component monooxygenase from Rhodococcus wratislaviensis may expand industrial applications of bacterial enzymes
title_fullStr A three-component monooxygenase from Rhodococcus wratislaviensis may expand industrial applications of bacterial enzymes
title_full_unstemmed A three-component monooxygenase from Rhodococcus wratislaviensis may expand industrial applications of bacterial enzymes
title_sort three-component monooxygenase from rhodococcus wratislaviensis may expand industrial applications of bacterial enzymes
publisher Nature Portfolio
publishDate 2021
url https://doaj.org/article/9183640daab141cc86de44618661815b
work_keys_str_mv AT makotohibi athreecomponentmonooxygenasefromrhodococcuswratislaviensismayexpandindustrialapplicationsofbacterialenzymes
AT daifukuda athreecomponentmonooxygenasefromrhodococcuswratislaviensismayexpandindustrialapplicationsofbacterialenzymes
AT chihirokenchu athreecomponentmonooxygenasefromrhodococcuswratislaviensismayexpandindustrialapplicationsofbacterialenzymes
AT masutoshinojiri athreecomponentmonooxygenasefromrhodococcuswratislaviensismayexpandindustrialapplicationsofbacterialenzymes
AT ryotarohara athreecomponentmonooxygenasefromrhodococcuswratislaviensismayexpandindustrialapplicationsofbacterialenzymes
AT michikitakeuchi athreecomponentmonooxygenasefromrhodococcuswratislaviensismayexpandindustrialapplicationsofbacterialenzymes
AT shunsukeaburaya athreecomponentmonooxygenasefromrhodococcuswratislaviensismayexpandindustrialapplicationsofbacterialenzymes
AT wataruaoki athreecomponentmonooxygenasefromrhodococcuswratislaviensismayexpandindustrialapplicationsofbacterialenzymes
AT kimihikomizutani athreecomponentmonooxygenasefromrhodococcuswratislaviensismayexpandindustrialapplicationsofbacterialenzymes
AT yoshihikoyasohara athreecomponentmonooxygenasefromrhodococcuswratislaviensismayexpandindustrialapplicationsofbacterialenzymes
AT mitsuyoshiueda athreecomponentmonooxygenasefromrhodococcuswratislaviensismayexpandindustrialapplicationsofbacterialenzymes
AT bunzomikami athreecomponentmonooxygenasefromrhodococcuswratislaviensismayexpandindustrialapplicationsofbacterialenzymes
AT satomitakahashi athreecomponentmonooxygenasefromrhodococcuswratislaviensismayexpandindustrialapplicationsofbacterialenzymes
AT junogawa athreecomponentmonooxygenasefromrhodococcuswratislaviensismayexpandindustrialapplicationsofbacterialenzymes
AT makotohibi threecomponentmonooxygenasefromrhodococcuswratislaviensismayexpandindustrialapplicationsofbacterialenzymes
AT daifukuda threecomponentmonooxygenasefromrhodococcuswratislaviensismayexpandindustrialapplicationsofbacterialenzymes
AT chihirokenchu threecomponentmonooxygenasefromrhodococcuswratislaviensismayexpandindustrialapplicationsofbacterialenzymes
AT masutoshinojiri threecomponentmonooxygenasefromrhodococcuswratislaviensismayexpandindustrialapplicationsofbacterialenzymes
AT ryotarohara threecomponentmonooxygenasefromrhodococcuswratislaviensismayexpandindustrialapplicationsofbacterialenzymes
AT michikitakeuchi threecomponentmonooxygenasefromrhodococcuswratislaviensismayexpandindustrialapplicationsofbacterialenzymes
AT shunsukeaburaya threecomponentmonooxygenasefromrhodococcuswratislaviensismayexpandindustrialapplicationsofbacterialenzymes
AT wataruaoki threecomponentmonooxygenasefromrhodococcuswratislaviensismayexpandindustrialapplicationsofbacterialenzymes
AT kimihikomizutani threecomponentmonooxygenasefromrhodococcuswratislaviensismayexpandindustrialapplicationsofbacterialenzymes
AT yoshihikoyasohara threecomponentmonooxygenasefromrhodococcuswratislaviensismayexpandindustrialapplicationsofbacterialenzymes
AT mitsuyoshiueda threecomponentmonooxygenasefromrhodococcuswratislaviensismayexpandindustrialapplicationsofbacterialenzymes
AT bunzomikami threecomponentmonooxygenasefromrhodococcuswratislaviensismayexpandindustrialapplicationsofbacterialenzymes
AT satomitakahashi threecomponentmonooxygenasefromrhodococcuswratislaviensismayexpandindustrialapplicationsofbacterialenzymes
AT junogawa threecomponentmonooxygenasefromrhodococcuswratislaviensismayexpandindustrialapplicationsofbacterialenzymes
_version_ 1718394822250725376