Characterization of the N-Hydroxylating Monooxygenase TheA from Thermocrispum agreste Reveals a Broad Substrate
Artur Maier1, Daniel Fast1, Dmytro Sakalo1
1Faculty of Biology and Biotechnology, Microbial Biotechnology, Ruhr University Bochum, Universitätsstrasse 150, Bochum, 44780, Germany.
Abstract:
The N-hydroxylating monooxygenase (NMO) TheA from Thermocrispum agreste catalyzes the N-hydroxylation step of l-ornithine, which is the first step in the thermochelin siderophore biosynthesis. Characterization of this enzyme revealed a significant thermostability up to 50 °C and activity with the non-native substrate d-ornithine with kinetic parameters (Km = 4.06 ± 0.31 mM, kcat = 0.057 ± 0.001 s-1, and kcat/Km = 0.007 s-1 mM-1) and a coupling rate of 81%. The enzyme is applied in a one-pot reaction with a formate dehydrogenase variant for NADPH regeneration and catalase for H2O2 detoxification. Optimization of the reaction conditions resulted in activity with various non-native substrates such as d-ornithine, l-lysine, S-(2-aminoethyl)-l-cysteine, and l-arginine. Products are confirmed through LC-MS/MS, and mutagenesis experiments gave insight on the potentially underlying mechanisms. This work identifies a thermotolerant NMO that is suitable for application and as a starting point for enzyme engineering.
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