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An Unprecedented NADPH Domain Conformation in Lysine Monooxygenase NbtG Provides Insights Into Uncoupling of Oxygen Consumption From Substrate Hydroxylation.

J Biol Chem.. 2015-05;  290(20):12676-88
Binda C, Robinson RM, Martin Del Campo JS, Keul ND, Rodriguez PJ, Robinson HH, Mattevi A, Sobrado P. the Department of Biology and Biotechnology, University of Pavia, Pavia 27100, Italy
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摘要

N-hydroxylating monooxygenases (NMOs) are involved in the biosynthesis of iron-chelating hydroxamate-containing siderophores that play a role in microbial virulence. These flavoenzymes catalyze the NADPH- and oxygen-dependent hydroxylation of amines, such as those found on the side chains of lysine and ornithine. In this work we report the biochemical and structural characterization of Nocardia farcinica Lys-monooxygenase (NbtG), which has similar biochemical properties to mycobacterial homologs. NbtG is also active on D-Lys although it binds L-Lys with a higher affinity. Differently from the ornithine monooxygenases PvdA, SidA and KtzI, NbtG can use both NADH and NADPH and is highly uncoupled, producing more s... More

关键词

C4a-hydroperoxyflavin; N-hydroxylating monooxygenases; flavin; flavin-dependent monooxygenase; flavoprotein; iron metabolism; lysine monooxygenase; siderophore; virulence factor