Sequence analysis of a gene cluster involved in metabolism of 2,4,5-trichlorophenoxyacetic acid by Burkholderia cepacia AC1100

Author:

Daubaras D L1,Hershberger C D1,Kitano K1,Chakrabarty A M1

Affiliation:

1. Department of Microbiology and Immunology, College of Medicine, University of Illinois at Chicago 60612, USA.

Abstract

Burkholderia cepacia AC1100 utilizes 2,4,5-trichlorophenoxyacetic acid (2,4,5-T) as a sole source of carbon and energy. PT88 is a chromosomal deletion mutant of B. cepacia AC1100 and is unable to grow on 2,4,5-T. The nucleotide sequence of a 5.5-kb chromosomal fragment from B. cepacia AC1100 which complemented PT88 for growth on 2,4,5-T was determined. The sequence revealed the presence of six open reading frames, designated ORF1 to ORF6. Five polypeptides were produced when this DNA region was under control of the T7 promoter in Escherichia coli; however, no polypeptide was produced from the fourth open reading frame, ORF4. Homology searches of protein sequence databases were performed to determine if the proteins involved in 2,4,5-T metabolism were similar to other biodegradative enzymes. In addition, complementation studies were used to determine which genes were essential for the metabolism of 2,4,5-T. The first gene of the cluster, ORF1, encoded a 37-kDa polypeptide which was essential for complementation of PT88 and showed significant homology to putative trans-chlorodienelactone isomerases. The next gene, ORF2, was necessary for complementation and encoded a 47-kDa protein which showed homology to glutathione reductases. ORF3 was not essential for complementation; however, both the 23-kDa protein encoded by ORF3 and the predicted amino acid sequence of ORF4 showed homology to glutathione S-transferases. ORF5, which encoded an 11-kDa polypeptide, was essential for growth on 2,4,5-T, but the amino acid sequence did not show homology to those of any known proteins. The last gene of the cluster, ORF6, was necessary for complementation of PT88, and the 32-kDa protein encoded by this gene showed homology to catechol and chlorocatechol-1,2-dioxygenases.

Publisher

American Society for Microbiology

Subject

Ecology,Applied Microbiology and Biotechnology,Food Science,Biotechnology

Reference66 articles.

1. Aromatic ring cleavage by the white-rot fungus Sporotrichum pulverulentum;Buswell J. A.;FEBS Lett.,1979

2. Transposition of plasmid DNA segments specifying hydrocarbon degradation and their expression in various microorganisms;Chakrabarty A. M.;Proc. Natl. Acad. Sci. USA,1978

3. Metabolism of resorcinylic compounds by bacteria: alternative pathways for resorcinol catabolism in Pseudomonas putida;Chapman P. J.;J. Bacteriol.,1976

4. Chapman P. J. U. M. X. Sangodkar and A. M. Chakrabarty. 1987. 2 4 5-T degradation pathway in Pseudomonas cepacia AC1100 p. 127. In Eighth annual meeting of the Society for Environmental Toxicology and Chemistry. Society for Environmental Toxicology and Chemistry Pensacola Fla.

5. Plasmid specifying total degradation of 3-chlorobenzoate by a modified ortho pathway;Chatterjee D. K.;J. Bacteriol.,1981

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