Literature DB >> 30311986

Monooxygenation of aromatic compounds by flavin-dependent monooxygenases.

Pirom Chenprakhon1, Thanyaporn Wongnate2, Pimchai Chaiyen2,3.   

Abstract

Many flavoenzymes catalyze hydroxylation of aromatic compounds especially phenolic compounds have been isolated and characterized. These enzymes can be classified as either single-component or two-component flavin-dependent hydroxylases (monooxygenases). The hydroxylation reactions catalyzed by the enzymes in this group are useful for modifying the biological properties of phenolic compounds. This review aims to provide an in-depth discussion of the current mechanistic understanding of representative flavin-dependent monooxygenases including 3-hydroxy-benzoate 4-hydroxylase (PHBH, a single-component hydroxylase), 3-hydroxyphenylacetate 4-hydroxylase (HPAH, a two-component hydroxylase), and other monooxygenases which catalyze reactions in addition to hydroxylation, including 2-methyl-3-hydroxypyridine-5-carboxylate oxygenase (MHPCO, a single-component enzyme that catalyzes aromatic-ring cleavage), and HadA monooxygenase (a two-component enzyme that catalyzes additional group elimination reaction). These enzymes have different unique structural features which dictate their reactivity toward various substrates and influence their ability to stabilize flavin intermediates such as C4a-hydroperoxyflavin. Understanding the key catalytic residues and the active site environments important for governing enzyme reactivity will undoubtedly facilitate future work in enzyme engineering or enzyme redesign for the development of biocatalytic methods for the synthesis of valuable compounds.
© 2018 The Protein Society.

Entities:  

Keywords:  flavin-dependent catalyzed oxidative aromatic ring-cleavage reactions; flavin-dependent dehalogenases; flavin-dependent hydroxylase; flavoenzyme-catalyzed hydroxylation; phenolic compounds

Mesh:

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Year:  2019        PMID: 30311986      PMCID: PMC6295904          DOI: 10.1002/pro.3525

Source DB:  PubMed          Journal:  Protein Sci        ISSN: 0961-8368            Impact factor:   6.725


  134 in total

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3.  Mechanism of Oxygen Activation in a Flavin-Dependent Monooxygenase: A Nearly Barrierless Formation of C4a-Hydroperoxyflavin via Proton-Coupled Electron Transfer.

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6.  Crystal structure of long-chain alkane monooxygenase (LadA) in complex with coenzyme FMN: unveiling the long-chain alkane hydroxylase.

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Authors:  Thanyaporn Wongnate; Panida Surawatanawong; Surawit Visitsatthawong; Jeerus Sucharitakul; Nigel S Scrutton; Pimchai Chaiyen
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9.  Molecular characterization of 4-hydroxyphenylacetate 3-hydroxylase of Escherichia coli. A two-protein component enzyme.

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Review 9.  Microbial degradation of halogenated aromatics: molecular mechanisms and enzymatic reactions.

Authors:  Panu Pimviriyakul; Thanyaporn Wongnate; Ruchanok Tinikul; Pimchai Chaiyen
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Review 10.  From Global to Local-New Insights into Features of Pyrethroid Detoxification in Vector Mosquitoes.

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