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Journal of Bacteriology, February 1999, p. 965-972, Vol. 181, No. 3
Air Force Research Laboratory, Tyndall Air
Force Base, Florida 32403-5323
Received 13 July 1998/Accepted 9 November 1998
2,4,5-Trihydroxytoluene (THT) oxygenase from
Burkholderia sp. strain DNT catalyzes the conversion of THT
to an unstable ring fission product. Biochemical and genetic studies of
THT oxygenase were undertaken to elucidate the mechanism of the ring
fission reaction. The THT oxygenase gene (dntD) was
previously localized to the 1.2-kb DNA insert subcloned in the
recombinant plasmid designated pJS76 (W. C. Suen and J. C. Spain, J. Bacteriol. 175:1831-1837, 1993). Analysis of the deduced
amino acid sequence of DntD revealed the presence of the highly
conserved residues characteristic of the catechol 2,3-dioxygenase gene
family I. The deduced amino acid sequence of DntD corresponded to a
molecular mass of 35 kDa. The native molecular masses for the THT
oxygenase estimated by using gel filtration chromatography and
nondenaturing gel electrophoresis were 67.4 and 77.8 kDa, respectively.
The results suggested that the native protein consists of two identical
subunits. The colorless protein contained 2 mol of iron per mol of
protein. Stimulation of activity in the presence of ferrous iron and
ascorbate suggested a requirement for ferrous iron in the active site.
The properties of the enzyme are similar to those of the catechol
2,3-dioxygenases (meta-cleavage dioxygenases). In addition
to THT, the enzyme exhibited activity towards 1,2,4-benzenetriol,
catechol, 3- and 4-methylcatechol, and 3- and 4-chlorocatechol. The
chemical analysis of the THT ring cleavage product showed that the
product was 2,4-dihydroxy-5-methyl-6-oxo-2,4-hexadienoic acid,
consistent with extradiol ring fission of THT.
0021-9193/99/$04.00+0
Copyright © 1999, American Society for Microbiology. All rights reserved.
Biochemical and Genetic Evidence for
meta-Ring Cleavage of 2,4,5-Trihydroxytoluene in
Burkholderia sp. Strain DNT

and
*
Corresponding author. Mailing address: AFRL/MLQR,
139 Barnes Dr., Tyndall Air Force Base, FL 32403-5323. Phone:
(850) 283-6058. Fax: (850) 283-6090. E-mail
jspain{at}ccmail.aleq.tyndall.af.mil.
Present address: Applied Research Associates Inc., Gulf Coast
Division, Tyndall Air Force Base, FL 32403.
Present address: Schering-Plough Research Institute, Kenilworth,
NJ 07033-0539.
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