Nitrous oxide production via enzymatic nitroxyl from the nitrifying archaeon <i>Nitrosopumilus maritimus</i>.

Voland, Robert W; Wang, Hongsen; Abruña, Héctor D; Lancaster, Kyle M · Proc Natl Acad Sci U S A · 2025

basic_science · Level V

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Abstract

Ammonia oxidizing archaea (AOA) are among the most abundant microorganisms on earth and are known to be a major source of nitrous oxide (N<sub>2</sub>O) emissions, although biochemical origins of this N<sub>2</sub>O remain unknown. Enzymological details of AOA nitrogen metabolism are broadly unavailable. We report the recombinant expression, purification, and characterization of a multicopper oxidase, Nmar_1354, from the AOA <i>Nitrosopumilus maritimus</i>. We show that Nmar_1354 selectively produces nitroxyl (HNO) by coupling the oxidation of the obligate nitrification intermediate hydroxylamine (NH<sub>2</sub>OH) to dioxygen (O<sub>2</sub>) reduction. This HNO undergoes several downstream reactions, although the major fates are production of N<sub>2</sub> via reaction with NH<sub>2</sub>OH and dimerization with itself to yield N<sub>2</sub>O. These results afford one plausible enzymatic origin for N<sub>2</sub>O release by AOA. Moreover, these results reveal a physiologically relevant enzymatic reaction for producing HNO, an enigmatic nitrogen oxide speculated to be operative in cellular signaling and in energy transduction.

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