Inhibition of catechol 2,3-dioxygenase from Pseudomonas putida by 3-chlorocatechol
- 1 May 1981
- journal article
- research article
- Published by American Society for Microbiology in Applied and Environmental Microbiology
- Vol. 41 (5) , 1159-1165
- https://doi.org/10.1128/aem.41.5.1159-1165.1981
Abstract
Partially purified preparations of catechol 2,3-dioxygenase from toluene-grown cells of Pseudomonas putida catalyzed the stoichiometric oxidation of 3-methylcatechol to 2-hydroxy-6-oxohepta-2,4-dienoate. Other substrates oxidized by the enzyme preparation were catechol, 4-methylcatechol, and 4-fluorocatechol. The apparent Michaelis constants for 3-methylcatechol and catechol were 10.6 and 22.0 muM, respectively. Substitution at the 4-position decreases the affinity and activity of the enzyme for the substrate. Catechol 2,3-dioxygenase preparations did not oxidize 3-chlorocatechol. In addition, incubation of the enzyme with 3-chlorocatechol led to inactivation of the enzyme. Kinetic analyses revealed that both 3-chlorocatechol and 4-chlorocatechol were noncompetitive or mixed-type inhibitors of the enzyme. 3-Chlorocatechol (Ki = 0.14 muM) was a more potent inhibitor than 4-chlorocatechol (Ki = 50 muM). The effect of the ion-chelating agents Tiron and o-phenanthrolene were compared with that of 3-chlorocatechol on the inactivation of the enzyme. Each inhibitor appeared to remove iron from the enzyme, since inactive enzyme preparations could be fully reactivated by treatment with ferrous iron and a reducing agent.This publication has 21 references indexed in Scilit:
- Isolation and characterization of a 3-chlorobenzoate degrading pseudomonadArchiv für Mikrobiologie, 1974
- Chlorophenol and chlorobenzoic acid co-metabolism by different genera of soil bacteriaArchiv für Mikrobiologie, 1974
- Bacterial metabolism of 4-chlorophenoxyacetateBiochemical Journal, 1971
- Cometabolism of the herbicide 2,3,6-trichlorobenzoateJournal of Agricultural and Food Chemistry, 1971
- Metapyrocatechase: III. Substrate specificity and mode of ring fissionBiochimica et Biophysica Acta (BBA) - Enzymology, 1970
- Oxidative degradation of aromatic hydrocarbons by microorganisms. III. Formation of (+)-cis-2,3-dihydroxy-1-methyl-4,6-cyclohexadiene from toluene by Pseudomonas putidaBiochemistry, 1970
- Oxidative degradation of aromatic hydrocarbons by microorganisms. II. Metabolism of halogenated aromatic hydrocarbonsBiochemistry, 1968
- Oxidative degradation of aromatic hydrocarbons by microorganisms. I. Enzymic formation of catechol from benzeneBiochemistry, 1968
- The Aerobic Pseudomonads a Taxonomic StudyJournal of General Microbiology, 1966
- The Decomposition of Toluene by Soil BacteriaJournal of General Microbiology, 1964