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Characterization of the flavin monooxygenase involved in biosynthesis of the antimalarial FR-900098.


ABSTRACT: The latter steps in this biosynthetic pathway for the antimalarial phosphonic acid FR-900098 include the installation of a hydroxamate onto 3-aminopropylphosphonate, which is catalyzed by the consecutive actions of an acetyltransferase and an amine hydroxylase. Here, we present the 1.6 Å resolution co-crystal structure and accompanying biochemical characterization of FrbG, which catalyzes the hydroxylation of aminopropylphosphonate. We show that FrbG is a flavin-dependent N-hydroxylating monooxygenase (NMO), which shares a similar overall structure with flavin-containing monooxygenases (FMOs). Notably, we also show that the cytidine-5'-monophosphate moiety of the substrate is a critical determinant of specificity, distinguishing FrbG from other FMOs in that the nucleotide cofactor-binding domain also serves in conferring substrate recognition. In the FrbG-FAD+-NADPH co-crystal structure, the C4 of the NADPH nicotinamide is situated near the N5 of the FAD isoalloxazine, and is oriented with a distance and stereochemistry to facilitate hydride transfer.

SUBMITTER: Nguyen K 

PROVIDER: S-EPMC6365201 | biostudies-literature | 2019 Feb

REPOSITORIES: biostudies-literature

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Characterization of the flavin monooxygenase involved in biosynthesis of the antimalarial FR-900098.

Nguyen Kim K   DeSieno Matthew A MA   Bae Brian B   Johannes Tyler W TW   Cobb Ryan E RE   Zhao Huimin H   Nair Satish K SK  

Organic & biomolecular chemistry 20190201 6


The latter steps in this biosynthetic pathway for the antimalarial phosphonic acid FR-900098 include the installation of a hydroxamate onto 3-aminopropylphosphonate, which is catalyzed by the consecutive actions of an acetyltransferase and an amine hydroxylase. Here, we present the 1.6 Å resolution co-crystal structure and accompanying biochemical characterization of FrbG, which catalyzes the hydroxylation of aminopropylphosphonate. We show that FrbG is a flavin-dependent N-hydroxylating monooxy  ...[more]

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