Tang_2011_J.Biol.Chem_286_39179

Reference

Title : A novel NADH-dependent and FAD-containing hydroxylase is crucial for nicotine degradation by Pseudomonas putida - Tang_2011_J.Biol.Chem_286_39179
Author(s) : Tang H , Yao Y , Zhang D , Meng X , Wang L , Yu H , Ma L , Xu P
Ref : Journal of Biological Chemistry , 286 :39179 , 2011
Abstract :

Nicotine, the main alkaloid produced by Nicotiana tabacum and other Solanaceae, is very toxic and may be a leading toxicant causing preventable disease and death, with the rise in global tobacco consumption. Several different microbial pathways of nicotine metabolism have been reported: Arthrobacter uses the pyridine pathway, and Pseudomonas, like mammals, uses the pyrrolidine pathway. We identified and characterized a novel 6-hydroxy-3-succinoyl-pyridine (HSP) hydroxylase (HspB) using enzyme purification, peptide sequencing, and sequencing of the Pseudomonas putida S16 genome. The HSP hydroxylase has no known orthologs and converts HSP to 2,5-dihydroxy-pyridine and succinic semialdehyde, using NADH. (18)O(2) labeling experiments provided direct evidence for the incorporation of oxygen from O(2) into 2,5-dihydroxy-pyridine. The hspB gene deletion showed that this enzyme is essential for nicotine degradation, and site-directed mutagenesis identified an FAD-binding domain. This study demonstrates the importance of the newly discovered enzyme HspB, which is crucial for nicotine degradation by the Pseudomonas strain.

PubMedSearch : Tang_2011_J.Biol.Chem_286_39179
PubMedID: 21949128
Gene_locus related to this paper: psep6-f8g0m2

Related information

Gene_locus psep6-f8g0m2

Citations formats

Tang H, Yao Y, Zhang D, Meng X, Wang L, Yu H, Ma L, Xu P (2011)
A novel NADH-dependent and FAD-containing hydroxylase is crucial for nicotine degradation by Pseudomonas putida
Journal of Biological Chemistry 286 :39179

Tang H, Yao Y, Zhang D, Meng X, Wang L, Yu H, Ma L, Xu P (2011)
Journal of Biological Chemistry 286 :39179