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1.
Gene ; 187(1): 141-9, 1997 Mar 10.
Article in English | MEDLINE | ID: mdl-9073078

ABSTRACT

The bphACB genes responsible for the initial oxidation of the aromatic ring of biphenyl/polychlorinated biphenyls (PCB) to meta-cleavage product in Rhodococcus sp. RHA1 have been characterized. We cloned the 6.1 kb EcoRI fragment containing another extradiol dioxygenase gene (etbC) which was induced during the growth on ethylbenzene. The bphD, bphE and bphF encoding 2-hydroxy-6-oxo-6-phenylhexa-2,4-dienoate (HOPD) hydrolase, 2-hydroxypenta-2,4-dienoate hydratase and 4-hydroxy-2-oxovalerate aldolase, respectively, were found downstream of etbC. The deduced amino acid (aa) sequence of RHA1 bphD and bphE had 27-33% and 32-38% identity, respectively, with those of the corresponding genes in Pseudomonas. BphE and BphF are closely related to the corresponding homoprotocatechuate meta-cleavage pathway enzymes of Escherichia coli C. The bphD and bphF were expressed in E. coli and the BphD activity was detected. The etbCphDEF genes were transcribed in biphenyl and ethylbenzene growing cells. Pulsed field gel electrophoresis (PFGE) analysis indicated that RHA1 contains three large linear plasmids. Southern blot analysis indicated that the meta-cleavage pathway for biphenyl/PCB catabolism in RHA1 is directed by the 390 kb plasmid borne bphDEF genes located separately from bphACB gene cluster on the 1100 kb plasmid.


Subject(s)
Biphenyl Compounds/metabolism , Dioxygenases , Genes, Bacterial , Plasmids , Polychlorinated Biphenyls/metabolism , Rhodococcus/genetics , Benzene Derivatives/metabolism , Biodegradation, Environmental , Blotting, Southern , Cloning, Molecular , Electrophoresis, Gel, Pulsed-Field , Electrophoresis, Polyacrylamide Gel , Escherichia coli/genetics , Gas Chromatography-Mass Spectrometry , Gene Expression Regulation, Bacterial , Hydro-Lyases/chemistry , Hydro-Lyases/genetics , Hydro-Lyases/metabolism , Hydrolases/chemistry , Hydrolases/genetics , Hydrolases/metabolism , Oxo-Acid-Lyases/chemistry , Oxo-Acid-Lyases/genetics , Oxo-Acid-Lyases/metabolism , Oxygenases/chemistry , Oxygenases/genetics , Oxygenases/metabolism , Rhodococcus/enzymology , Rhodococcus/metabolism , Sequence Alignment
2.
Appl Environ Microbiol ; 62(8): 2940-6, 1996 Aug.
Article in English | MEDLINE | ID: mdl-8702287

ABSTRACT

Gram-positive Rhodococcus sp. strain RHA1 possesses strong polychlorinated biphenyl-degrading capabilities. An RHA1 bphC gene mutant, strain RDC1, had been previously constructed (E. Masai, A. Yamada, J. M. Healy, T. Hatta, K. Kimbara, M. Fukuda, and K. Yano, Appl. Environ. Microbiol. 61:2079-2085, 1995). An alternative 2,3-dihydroxybiphenyl 1,2-dioxygenase (2,3-DHBD), designated EtbC, was identified in RDC1 cells grown on ethylbenzene. EtbC contained the broadest substrate specificity of any meta cleavage dioxygenase identified in a Rhodococcus strain to date, including RHA1 BphC. EtbC was purified to near homogeneity from RDC1 cells grown on ethylbenzene, and a 58-amino-acid NH2-terminal sequence was determined. The NH2-terminal amino acid sequence was used for the identification of the etbC gene from an RDC1 chromosomal DNA 2,3-DHBD expression library. The etbC gene was successfully cloned, and we report here the determination of its nucleotide sequence. The substrate specificity patterns of cell extract and native nondenaturing polyacrylamide gel electrophoresis analysis identified the coexpression of two 2,3-DHBDs (BphC and EtbC) in RHA1 cells grown on either biphenyl or ethylbenzene. The possible implication of coexpressed BphC extradiol dioxygenases in the strong polychlorinated-biphenyl degradation activity of RHA1 was suggested.


Subject(s)
Dioxygenases , Oxygenases/isolation & purification , Rhodococcus/enzymology , Amino Acid Sequence , Base Sequence , Cloning, Molecular , Molecular Sequence Data , Oxygenases/genetics , Oxygenases/metabolism , Substrate Specificity
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