Naphthalene dioxygenase, a key enzyme in the dihydroxylation of naphthalene, is encoded by the plasmid pN3, responsible for naphthalene metabolism in Pseudomonas fluorescens N3. The naphthalene dioxygenase, including all the sequences for its expression and the regulatory region, has been localized on the 4.3-kb HindIII-ClaI fragment and on the 3.5-kb HindIII fragment of the plasmid pN3, by Southern analysis using as probes nahA and nahR genes, the homologous genes of the plasmid NAH7 from Pseudomonas putida G7. We cloned in Escherichia coli JM109 the dioxygenase gene and its regulatory region and developed an efficient bacterial system inducible by salicylic acid, able to produce dihydrodiols. E. coli containing recombinant plasmids carry...
Compared with chemical synthesis, fermentation has the advantage of mass production at low cost, and...
The goal of this study was to engineer bacteria for the biodegradation of chlorinated ethenes by opt...
Since many years, we have been interested in whole cell bioconversions of aromatic hydrocarbons into...
1,2-dihydroxynaphthalenes are produced by bioconversion of the corresponding hydrocarbons using Esch...
The bioconversion of naphthalene to the 1,2- dihydro-1,2-dihydroxy derivative was performed in good ...
Alcohol and carbonyl groups are highly recurrent groups in organic compounds. Their redox equilibriu...
1,2-Dihydroxynaphthalenes are produced by dehydrogenation of the corresponding 1,2-dihydro-1,2-dihyd...
Pseudomonas fluorescens N3 is able to grow on naphthalene as the sole carbon and energy source, The ...
reactions. 1,2-dihydroxynaphthalene and subsequent to study ring cleavage of construction and use of...
An extradiol dioxygenase was cloned from the naphthalenesulfonate-degrading bacterial strain BN6 by ...
There is an increasing interest in enzymes that catalyze the hydroxylation of naphthalene under mild...
A 6.1 kilobase DNA fragment has been cloned from Pseudomonas stutzeri AN11, a naphthalene-degrading ...
A mutant (TTC1) derived from Pseudomonas fluorescens N3 has been obtained for use in the bioconversi...
Pseudomonas sp. strain PPID can metabolize phenanthrene as the sole source of carbon and energy via ...
The Pseudomonas fluorescens N3 was isolated from soil for its ability to utilize naphthalene as a ca...
Compared with chemical synthesis, fermentation has the advantage of mass production at low cost, and...
The goal of this study was to engineer bacteria for the biodegradation of chlorinated ethenes by opt...
Since many years, we have been interested in whole cell bioconversions of aromatic hydrocarbons into...
1,2-dihydroxynaphthalenes are produced by bioconversion of the corresponding hydrocarbons using Esch...
The bioconversion of naphthalene to the 1,2- dihydro-1,2-dihydroxy derivative was performed in good ...
Alcohol and carbonyl groups are highly recurrent groups in organic compounds. Their redox equilibriu...
1,2-Dihydroxynaphthalenes are produced by dehydrogenation of the corresponding 1,2-dihydro-1,2-dihyd...
Pseudomonas fluorescens N3 is able to grow on naphthalene as the sole carbon and energy source, The ...
reactions. 1,2-dihydroxynaphthalene and subsequent to study ring cleavage of construction and use of...
An extradiol dioxygenase was cloned from the naphthalenesulfonate-degrading bacterial strain BN6 by ...
There is an increasing interest in enzymes that catalyze the hydroxylation of naphthalene under mild...
A 6.1 kilobase DNA fragment has been cloned from Pseudomonas stutzeri AN11, a naphthalene-degrading ...
A mutant (TTC1) derived from Pseudomonas fluorescens N3 has been obtained for use in the bioconversi...
Pseudomonas sp. strain PPID can metabolize phenanthrene as the sole source of carbon and energy via ...
The Pseudomonas fluorescens N3 was isolated from soil for its ability to utilize naphthalene as a ca...
Compared with chemical synthesis, fermentation has the advantage of mass production at low cost, and...
The goal of this study was to engineer bacteria for the biodegradation of chlorinated ethenes by opt...
Since many years, we have been interested in whole cell bioconversions of aromatic hydrocarbons into...