Flavin-dependent \(\it N\)-hydroxylating enzymes
- Amino groups derived from naturally abundant amino acids or (di)amines can be used as "shuttles" in nature for oxygen transfer to provide intermediates or products comprising N-O functional groups such as \(\it N\)-hydroxy, oxazine, isoxazolidine, nitro, nitrone, oxime, \(\it C\)-, \(\it S\)-, or \(\it N\)-nitroso, and azoxy units. To this end, molecular oxygen is activated by flavin, heme, or metal cofactor-containing enzymes and transferred to initially obtain \(\it N\)-hydroxy compounds, which can be further functionalized. In this review, we focus on flavin-dependent \(\it N\)-hydroxylating enzymes, which play a major role in the production of secondary metabolites, such as siderophores or antimicrobial agents. Flavoprotein monooxygenases of higher organisms (among others, in humans) can interact with nitrogen-bearing secondary metabolites or are relevant with respect to detoxification metabolism and are thus of importance to understand potential medical applications. Many enzymes that catalyze N-hydroxylation reactions have specific substrate scopes and others are rather relaxed. The subsequent conversion towards various N-O or N-N comprising molecules is also described. Overall, flavin-dependent \(\it N\)-hydroxylating enzymes can accept amines, diamines, amino acids, amino sugars, and amino aromatic compounds and thus provide access to versatile families of compounds containing the N-O motif. Natural roles as well as synthetic applications are highlighted.
Author: | Carolin MüggeORCiDGND, Thomas HeineORCiDGND, Álvaro Gómez BaraibarORCiDGND, Willem J. H. van BerkelORCiDGND, Caroline E. PaulORCiDGND, Dirk TischlerORCiDGND |
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URN: | urn:nbn:de:hbz:294-79498 |
DOI: | https://doi.org/10.1007/s00253-020-10705-w |
Parent Title (English): | Applied microbiology and biotechnology |
Subtitle (German): | distribution and application |
Publisher: | Springer Nature |
Place of publication: | Berlin |
Document Type: | Article |
Language: | English |
Date of Publication (online): | 2021/03/11 |
Date of first Publication: | 2020/06/05 |
Publishing Institution: | Ruhr-Universität Bochum, Universitätsbibliothek |
Tag: | Bioactive compounds; Biocatalysis; Biotransformation; Flavoproteins; Monooxygenases; N-Hydroxylases; Phylogenetics; Siderophores |
Volume: | 104 |
First Page: | 6481 |
Last Page: | 6499 |
Note: | Dieser Beitrag ist auf Grund des DEAL-Springer-Vertrages frei zugänglich. |
Institutes/Facilities: | Lehrstuhl für Pflanzenphysiologie, Nachwuchsgruppe Mikrobielle Biotechnologie |
Dewey Decimal Classification: | Naturwissenschaften und Mathematik / Biowissenschaften, Biologie, Biochemie |
open_access (DINI-Set): | open_access |
faculties: | Fakultät für Biologie und Biotechnologie |
Licence (English): | Creative Commons - CC BY 4.0 - Attribution 4.0 International |