Abstract
Pseudomonas putida F1 and Pseudomonas sp. strain JS150 initiate toluene degradation by incorporating molecular oxygen into the aromatic nucleus to form cis-1,2-dihydroxy-3-methylcyclohexa-3,5-diene. When toluene-grown cells were incubated with 2- and 3-nitrotoluene, the major products identified were 2- and 3-nitrobenzyl alcohol, respectively. The same cells oxidized 4-nitrotoluene to 2-methyl-5-nitrophenol and 3-methyl-6-nitrocatechol. Escherichia coli JM109(pDTG601), which contains the toluene dioxygenase genes from P. putida F1 under the control of the tac promoter, oxidized the isomeric nitrotoluenes to the same metabolites as those formed by P. putida F1 and Pseudomonas sp. strain JS150. These results extend the range of substrates known to be oxidized by this versatile enzyme and demonstrate for the first time that toluene dioxygenase can oxidize an aromatic methyl substituent.
MeSH Terms
Biodegradation, Environmental
Oxidation-Reduction
Oxygenases/metabolism
Pseudomonas/metabolism
Pseudomonas putida/metabolism
Toluene/analogs & derivatives,metabolism
Chemicals
3-nitrotoluene
Toluene
2-nitrotoluene
4-nitrotoluene
Oxygenases
toluene dioxygenase
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Robertson J B
Air Force Civil Engineering Support Agency, Tyndall Air Force Base, Florida 32403.
Spain J C
Haddock J D
Gibson D T
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