The molecular mechanism and activity of Kuenenia stuttgartiensis hydrazine synthase
Vermeir, F. J.; Haaijer-Vroomen, S. C. M.; van der Velden, P. M. M.; Mesman, R.; Jansen, R. S.; Versantvoort, W.; van Niftrik, L.
Show abstract
Anaerobic ammonium-oxidizing (anammox) bacteria convert ammonium and nitrite into dinitrogen gas via the intermediates nitric oxide and hydrazine. To produce hydrazine, anammox bacteria harbor a biochemically unique enzyme: hydrazine synthase. Based on the hydrazine synthase crystal structure it was hypothesized that hydrazine is produced in a two-step mechanism. In this hypothesis, nitric oxide is first reduced to hydroxylamine (first half-reaction), followed by condensation of hydroxylamine with ammonium to hydrazine (second half-reaction). Here, we experimentally investigated the proposed molecular mechanism of hydrazine synthase and characterized and optimized the in vitro activity. First, we optimized the activity of isolated hydrazine synthase from anammox bacterium Kuenenia stuttgartiensis strain MBR1 via an anaerobic isolation method. We further compared hydrazine synthase activity measured via a coupled assay versus that of a newly established direct LC-MS assay. Next, the hypothesized second half-reaction was investigated via the direct LC-MS assay, quantifying biologically produced hydrazine from hydroxylamine and ammonium. Despite variation in hydrazine synthase activity across assays, we determined ammonium and hydroxylamine affinity and investigated product inhibition. Finally, we found that hydrazine synthesis from ammonium and hydroxylamine by isolated hydrazine synthase is oxygen-tolerant, strongly suggesting that the second half-reaction is initiated on an oxidized heme within hydrazine synthase. Taken together, the results corroborate that condensation of ammonium with hydroxylamine to form hydrazine is the second half-reaction of the proposed two-step mechanism for hydrazine synthesis by hydrazine synthase.
Matching journals
The top 7 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Assessing the activity of different plant-derived molecules and potential biological nitrification inhibitors on a range of soil ammonia- and nitrite- oxidizing strains 95%
- Harnessing Escherichia coli for bio-based production of formate under pressurized H2 and CO2 gases. 93%
- Physiological characterization of nitrate ammonifying bacteria isolated from rice paddy soils via a newly developed high-throughput screening method 93%
Similar papers in this journal
- Comparison of the in vitro activity of novel and established nitrification inhibitorsapplied in agriculture: challenging the effectiveness of the currently availablecompounds 95%
- Molecular Acclimation of Halobacterium salinarum to Halite Brine Inclusions 94%
- Catabolism of alkylphenols in Rhodococcus via a meta-cleavage pathway associated with genomic islands 93%
Similar papers in this journal
- Substrate promiscuity of xenobiotic-transforming hydrolases from stream biofilms impacted by treated wastewater 94%
- Microbial Metabolic Enzymes, Pathways and Microbial Hosts for Co-Metabolic Degradation of Organic Micropollutants in Wastewater 94%
- L-norepinephrine Induces Community Shift, Oxidative Stress Response, Metabolic Reprogramming, and Virulence Potential in Wastewater Microbiomes 93%
Similar papers in this journal
Similar papers in this journal
- Co-Metabolic Growth and Microbial Diversity: Keys for the depletion of the α, δ, β and γ-HCH isomers. 92%
- Engineering multi-degrading bacterial communities to bioremediate soils contaminated with pesticides residues 91%
- Toxicity of 4-(Methylnitrosamino)-1-(3-pyridyl)-1-butanone (NKK) in early development: a wide-scope metabolomics assay in zebrafish embryos 91%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.