Isolation of oxygen-dependent nicotine- and pseudooxynicotine-metabolizing enzymes
Navaratna, T. A.; Akram, J.; Pazdernik, T. D.; Ramachandran, A.; Schultz, P.; Dulchavsky, M.; Choussat, X.; Oczon, C.; Singh, A.; Myers, N.; Robida, A.; Tripathi, A.; Stull, F.; Bardwell, J. C.
Show abstract
NicA2 is a flavin-bound amine dehydrogenase from Pseudomonas putida S16 that converts nicotine to the pharmacologically inactive N-methylmyosmine. In animal models of nicotine addiction, injection of NicA2 can decrease nicotine-seeking behavior 10-fold. Accordingly, NicA2-related enzymes have been investigated as smoking-cessation therapeutics. However, efficient catalysis by NicA2 in Pseudomonas putida relies on electron transfer to CycN, a cytochrome c, and not directly to O2. Impractically high amounts of NicA2 are thus necessary to achieve a pharmacological effect in the absence of CycN. Directed evolution has improved the ambient-O2 value of kcat from 0.007 s-1 to 1 s-1 for NicA2, but further improvements have been challenging. Here, we identify a strain of Peribacillus frigoritolerans NIC8 which encodes two flavin amine oxidoreductases, Ncox and Pnox. In the presence of oxygen, Ncox and Pnox act on nicotine and pseudooxynicotine respectively with apparent kcat values of 7.7 s-1 and 3.9 s-1. Transient kinetics establishes bimolecular rate constants of 51100 M-1s-1 and 81000 M-1s-1 for the half-reactions between Ncox and O2 and between Pnox and O2 respectively, consistent with Ncox and Pnox being bona-fide oxidases. Transcriptomics shows enhanced expression of Ncox and Pnox under nicotine-dependent growth as well as supporting the identification of downstream enzymes. Phylogenetic analysis suggests that Ncox and Pnox arose out of repurposing of homologous enzymes found in Bacillus species. The enzymes we describe may be useful for the development of nicotine addiction therapeutics and for bioconversion of nicotine in waste streams.
Matching journals
The top 6 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- A novel and evolutionarily distinct flavoprotein monooxygenase drives skatole degradation in Rhodococcus 95%
- Burkholderia Genes Involved in Extracellular Bioplastic Degradation Revealed by Tn-seq and CRISPR-Cas 93%
- The metabolic response of Pseudomonas taiwanensis to NADH dehydrogenase deficiency 93%
Similar papers in this journal
- Substrate promiscuity of xenobiotic-transforming hydrolases from stream biofilms impacted by treated wastewater 92%
- An integrated meta-omics approach for identifying candidate organic micropollutant degraders in complex microbial communities 91%
- Denitrification kinetics indicates nitrous oxide uptake is unaffected by electron competition in Accumulibacter 90%
Similar papers in this journal
- (R)-1-hydroxy-2-aminoethylphosphonate ammonia-lyase, a new PLP-dependent enzyme involved in bacterial phosphonate degradation 91%
- Determinants of multiheme cytochrome extracellular electron transfer uncovered by systematic peptide insertion 90%
- Dimerization of MilM is essential for catalyzing the pyridoxal-5'-phosphate (PLP)-dependent Cγ-hydroxylation of L-arginine during mildiomycin biosynthesis 89%
Similar papers in this journal
"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.