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1.
Arch Microbiol ; 189(5): 511-7, 2008 May.
Article in English | MEDLINE | ID: mdl-18071673

ABSTRACT

A virtually identical nicotine catabolic pathway including the heterotrimeric molybdenum enzyme nicotine and 6-hydroxy-pseudo-oxynicotine dehydrogenase, 6-hydroxy-L: -nicotine oxidase, 2,6-dihydroxy-pseudo-oxynicotine hydrolase, and 2,6-dihydroxypyridine hydroxylase have been identified in A. nicotinovorans and Nocardioides sp. JS614. Enzymes catalyzing the same reactions and similar protein antigens were detected in the extracts of the two microorganisms. Nicotine blue and methylamine, two end products of nicotine catabolism were detected in the growth medium of both bacterial species. Nicotine catabolic genes are clustered on pAO1 in A. nicotinovorans, but located chromosomally in Nocardioides sp. JS614.


Subject(s)
Actinomycetales/enzymology , Arthrobacter/enzymology , Mixed Function Oxygenases/metabolism , Nicotine/metabolism , Actinomycetales/genetics , Amino Acid Sequence , Arthrobacter/genetics , Blotting, Western , Chromosome Mapping , Chromosomes, Bacterial , Hydroxylation , Methylamines/metabolism , Multigene Family , Open Reading Frames , Plasmids , Pyridones/metabolism
2.
J Mol Biol ; 367(2): 409-18, 2007 Mar 23.
Article in English | MEDLINE | ID: mdl-17275835

ABSTRACT

The enzyme 2,6-dihydroxy-pseudo-oxynicotine hydrolase from the nicotine-degradation pathway of Arthrobacter nicotinovorans was crystallized and the structure was determined by an X-ray diffraction analysis at 2.1 A resolution. The enzyme belongs to the alpha/beta-hydrolase family as derived from the chain-fold and from the presence of a catalytic triad with its oxyanion hole at the common position. This relationship assigns a pocket lined by the catalytic triad as the active center. The asymmetric unit contains two C(2)-symmetric dimer molecules, each adopting a specific conformation. One dimer forms a more spacious active center pocket and the other a smaller one, suggesting an induced-fit. All of the currently established C-C bond cleaving alpha/beta-hydrolases are from bacterial meta-cleavage pathways for the degradation of aromatic compounds and cover their active center with a 40 residue lid placed between two adjacent strands of the beta-sheet. In contrast, the reported enzyme shields its active center with a 110 residue N-terminal domain, which is absent in the meta-cleavage hydrolases. Since neither the substrate nor an analogue could be bound in the crystals, the substrate was modeled into the active center using the oxyanion hole as a geometric constraint. The model was supported by enzymatic activity data of 11 point mutants and by the two dimer conformations suggesting an induced-fit. Moreover, the model assigned a major role for the large N-terminal domain that is specific to the reported enzyme. The proposal is consistent with the known data for the meta-cleavage hydrolases although it differs in that the reaction does not release alkenes but a hetero-aromatic compound in a retro-Friedel-Crafts acylation. Because the hydrolytic water molecule can be assigned to a geometrically suitable site that can be occupied in the presence of the substrate, the catalytic triad may not form a covalent acyl-enzyme intermediate but merely support a direct hydrolysis.


Subject(s)
Arthrobacter/enzymology , Bacterial Proteins/chemistry , Hydrolases/chemistry , Models, Molecular , Nicotine/metabolism , Amino Acid Sequence , Bacterial Proteins/genetics , Bacterial Proteins/metabolism , Binding Sites , Dimerization , Hydrolases/genetics , Hydrolases/metabolism , Molecular Sequence Data , Mutation , Protein Structure, Secondary , Water/chemistry
3.
Appl Environ Microbiol ; 72(7): 5126-31, 2006 Jul.
Article in English | MEDLINE | ID: mdl-16820521

ABSTRACT

Two Arthrobacter nicotinovorans molybdenum enzymes hydroxylate the pyridine ring of nicotine. Molybdopterin cytosine dinucleotide (MCD) was determined to be a cofactor of these enzymes. A mobA gene responsible for the formation of MCD could be identified and its function shown to be required for assembly of the heterotrimeric molybdenum enzymes.


Subject(s)
Arthrobacter/enzymology , Bacterial Proteins/genetics , Cytosine Nucleotides/biosynthesis , DNA-Binding Proteins/genetics , Gene Expression Regulation, Bacterial , Holoenzymes/metabolism , Oxidoreductases Acting on CH-NH Group Donors/metabolism , Trans-Activators/genetics , Arthrobacter/genetics , Cytosine Nucleotides/genetics , Dimerization , Pterins
4.
J Bacteriol ; 187(24): 8516-9, 2005 Dec.
Article in English | MEDLINE | ID: mdl-16321959

ABSTRACT

The enzyme catalyzing the hydrolytic cleavage of 2,6-dihydroxypseudooxynicotine to 2,6-dihydroxypyridine and gamma-N-methylaminobutyrate was found to be encoded on pAO1 of Arthrobacter nicotinovorans. The new enzyme answers an old question about nicotine catabolism and may be the first C--C bond hydrolase that is involved in the biodegradation of a heterocyclic compound.


Subject(s)
Arthrobacter/enzymology , Hydrolases/chemistry , Hydrolases/metabolism , Nicotine/metabolism , Alkaloids/metabolism , Arthrobacter/metabolism , Biodegradation, Environmental , Chromatography, High Pressure Liquid , Cloning, Molecular , Gene Order , Heterocyclic Compounds/metabolism , Nicotine/analogs & derivatives , Open Reading Frames , Plasmids/genetics , Pyridines/metabolism
5.
Appl Environ Microbiol ; 71(12): 8920-4, 2005 Dec.
Article in English | MEDLINE | ID: mdl-16332890

ABSTRACT

The first inducible Arthrobacter overexpression system, based on the promoter/operator and the repressor of the 6-D-hydroxynicotine oxidase gene of Arthrobacter nicotinovorans, is described here. Nicotine-dependent overproduction and affinity purification of recombinant proteins are presented. The system will allow the production of complex enzymes and genetic complementation studies in Arthrobacter species.


Subject(s)
Arthrobacter/genetics , Gene Expression Regulation, Bacterial/drug effects , Nicotine/pharmacology , Plasmids/genetics , Arthrobacter/classification , Base Sequence , Genes, Reporter , Green Fluorescent Proteins/genetics , Molecular Sequence Data , Plasmids/drug effects , Restriction Mapping
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