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Genetic and cell-free studies of PCB biodegradation in pseudomonas putida LB400. Book chapter. [PCB (polychlorinated biphenyls)]

Frank J. Mondello, Lawrence H. Bopp

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Abstract

An investigation into the ability of strains defective in biphenyl metabolism to degrade PCBs, strongly suggests that the same enzymes are used for both substrates. The genes encoding these enzymes have been isolated and are being characterized. The ability of cell-free extracts of P. putida LB400 to degrade PCBs has been examined. Results indicate that the enzymes for PCB metabolism are present in the soluble portion of the extract.

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An investigation into the ability of strains defective in biphenyl metabolism to degrade PCBs, strongly suggests that the same enzymes are used for both substrates. The genes encoding these enzymes have been isolated and are being characterized. The ability of cell-free extracts of P. putida LB400 to degrade PCBs has been examined. Results indicate that the enzymes for PCB metabolism are present in the soluble portion of the extract.

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Available abstract

An investigation into the ability of strains defective in biphenyl metabolism to degrade PCBs, strongly suggests that the same enzymes are used for both substrates. The genes encoding these enzymes have been isolated and are being characterized. The ability of cell-free extracts of P. putida LB400 to degrade PCBs has been examined. Results indicate that the enzymes for PCB metabolism are present in the soluble portion of the extract.

Key concepts: Pseudomonas putida, Enzyme, Polychlorinated biphenyl, Biodegradation, Metabolism, Biology, Pseudomonas, Biochemistry

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Genetic and cell-free studies of PCB biodegradation in pseudomonas putida LB400. Book chapter. [PCB (polychlorinated biphenyls)] — Research Paper | ScholarLens