Xanthobacter flavus strain UE15 was isolated in wastewater obtained from the Ulsan industrial complex, Korea. This strain functions as a 1,2-dichloroethane (1,2-DCA) degrader, via a mechanism of hydrolytic dechlorination, under aerobic conditions. The UE15 strain was also capable of dechlorinating other chloroaliphatics, such as 2-chloroacetic acid and 2-chloropropionic acid. The dhlA gene encoding 1,2-DCA dechlorinase was cloned from the genomic DNA of the UE15 strain, and its nucleotide sequence was determined to consist of 933 base pairs. The deduced amino acid sequence of the DhlA dechlorinase exhibited 100% homology with the corresponding enzyme from X. autotrophicus GJ10, but only 27 to 29% homology with the corresponding enzymes from Rhodococcus rhodochrous, Pseudomonas pavonaceae, and Mycobacterium sp. strain GP1, which all dechlorinate haloalkane compounds. The UE15 strain has an ORF1 (1,356 bp) downstream from the dhlA gene. The OFR1 shows 99% amino acid sequence homology with the transposase reported from X. autotrophicus GJ10. The transposase gene was not found in the vicinity of the dhlA in the GJ10 strain, but rather beside the dhlB gene coding for haloacid dechlorinase. The dhlA and dhlB genes were confirmed to be located at separate chromosomal loci in the Xanthobacter flavus UE15 strain as well as in X. autotrophicus GJ10. The dhlA and transposase genes of the UE15 strain were found to be parenthesized by a pair of insertion sequences, IS1247, which were also found on both sides of the transposase gene in the GJ10 strain. This unique structure of the dhlA gene organization in X. flavus strain UE15 suggested that the dechlorinase gene, dhlA, is transferred with the help of the transposase gene.
[1]
Shin-Duk Kim,et al.
Isolation and Characterization of α-Glucosidase Inhibitor from the Fungus Ganoderma lucidum
,
2004
.
[2]
J. Newman,et al.
Haloalkane dehalogenases: structure of a Rhodococcus enzyme.
,
1999,
Biochemistry.
[3]
W. D. de Vos,et al.
Purification and Molecular Characterization ofortho-Chlorophenol Reductive Dehalogenase, a Key Enzyme of Halorespiration in Desulfitobacterium dehalogenans *
,
1999,
The Journal of Biological Chemistry.
[4]
D. Janssen,et al.
Characterization of IS2112, a new insertion sequence from Rhodococcus, and its relationship with mobile elements belonging to the IS110 family.
,
1999,
Microbiology.
[5]
W. Doerfler,et al.
A rapid optimized protocol for downward alkaline Southern blotting of DNA.
,
1993,
BioTechniques.
[6]
L. Dijkhuizen,et al.
Degradation of halogenated aliphatic compounds by Xanthobacter autotrophicus GJ10
,
1985,
Applied and environmental microbiology.
[7]
F. Sanger,et al.
DNA sequencing with chain-terminating inhibitors.
,
1977,
Proceedings of the National Academy of Sciences of the United States of America.
[8]
J. G. Bergmann,et al.
Determination of Trace Amounts of Chlorine in Naphtha
,
1957
.