FEMS Microbiology Letters · 2004 · 30 citations · 29 references
Aldo-keto ReductaseMolecular BiologyChemical BiologyNovel Indole DioxygenaseRedox BiologyIdoa Gene ProductPhylogenetic AnalysisBiosynthesisNatural Product BiosynthesisGene DisruptionAlcohol DehydrogenasesIndigo ProductionBiotransformationAldehyde DehydrogenaseBiochemistryMolecular MicrobiologyBiologyCellular EnzymologyNatural SciencesSynthetic BiologyMicrobiologyIdoa GeneMedicineFluoranthene MetabolismMicrobial Genetics
A novel indole dioxygenase (idoA) gene has been cloned from Pseudomonas alcaligenes PA-10, based on its ability to convert indole to indigo. The chromosomally encoded idoA gene exhibits no similarity to previously cloned naphthalene dioxygenases or to aromatic oxygenases from other species at the nucleotide level. Phylogenetic analysis indicates that the idoA gene product is most similar to an acyl-CoA dehydrogenase from Novosphingobium aromaticivorans. The enzyme encoded by the idoA gene is essential for the metabolism of fluoranthene, since a mutant in which the idoA gene has been disrupted looses the ability to degrade this compound. The idoA gene appears to be constitutively expressed in PA-10, but its expression is also subject to regulation following prior exposure to salicylate and to fluoranthene degradative intermediates.
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Complete genome sequence of Pseudomonas aeruginosa PAO1, an opportunistic pathogen
C. Kendall Stover, X. Q. Pham, Alice L. Erwin et al. · Nature · 2000 · 4.5K citations · Full text
Biodegradation and bioremediation
Choice Reviews Online · 1994 · 1.7K citations