Literature DB >> 33350810

Biochemical Characterization of the Two-Component Flavin-Dependent Monooxygenase Involved in Valanimycin Biosynthesis.

Hao Li1, Benedicta Forson1, Meital Eckshtain-Levi1, Hannah Valentino1, Julia S Martín Del Campo1, John J Tanner2, Pablo Sobrado1,3.   

Abstract

The flavin reductase (FRED) and isobutylamine N-hydroxylase (IBAH) from Streptomyces viridifaciens constitute a two-component, flavin-dependent monooxygenase system that catalyzes the first step in valanimycin biosynthesis. FRED is an oxidoreductase that provides the reduced flavin to IBAH, which then catalyzes the hydroxylation of isobutylamine (IBA) to isobutylhydroxylamine (IBHA). In this work, we used several complementary methods to investigate FAD binding, steady-state and rapid reaction kinetics, and enzyme-enzyme interactions in the FRED:IBAH system. The affinity of FRED for FADox is higher than its affinity for FADred, consistent with its function as a flavin reductase. Conversely, IBAH binds FADred more tightly than FADox, consistent with its role as a monooxygenase. FRED exhibits a strong preference (28-fold) for NADPH over NADH as the electron source for FAD reduction. Isothermal titration calorimetry was used to study the association of FRED and IBAH. In the presence of FAD, either oxidized or reduced, FRED and IBAH associate with a dissociation constant of 7-8 μM. No interaction was observed in the absence of FAD. These results are consistent with the formation of a protein-protein complex for direct transfer of reduced flavin from the reductase to the monooxygenase in this two-component system.

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Year:  2020        PMID: 33350810     DOI: 10.1021/acs.biochem.0c00679

Source DB:  PubMed          Journal:  Biochemistry        ISSN: 0006-2960            Impact factor:   3.162


  1 in total

1.  New azodyrecins identified by a genome mining-directed reactivity-based screening.

Authors:  Atina Rizkiya Choirunnisa; Kuga Arima; Yo Abe; Noritaka Kagaya; Kei Kudo; Hikaru Suenaga; Junko Hashimoto; Manabu Fujie; Noriyuki Satoh; Kazuo Shin-Ya; Kenichi Matsuda; Toshiyuki Wakimoto
Journal:  Beilstein J Org Chem       Date:  2022-08-10       Impact factor: 2.544

  1 in total

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