Wild-type toluene 4-monooxygenase (T4MO) of Pseudomonas mendocina KR1 oxidizes toluene to p-cresol (96%) and oxidizes benzene sequentially to phenol, to catechol, and to 1,2,3-trihydroxybenzene. In this study T4MO was found to oxidize o-cresol to 3-methylcatechol (91%) and methylhydroquinone (9%), to oxidize m-cresol and p-cresol to 4-methylcatechol (100%), and to oxidize o-methoxyphenol to 4-methoxyresorcinol (87%), 3-methoxycatechol (11%), and methoxyhydroquinone (2%). Apparent Vmax values of 6.6 0.9 to 10.7 0.1 nmol/min/ mg of protein were obtained for o-, m-, and p-cresol oxidation by wild-type T4MO, which are comparable to the toluene oxidation rate (15.1 0.8 nmol/min/mg of protein). After these new reactions were discovered, satu-r...
The four-component toluene/o-xylene monooxygenase (ToMO) from Pseudomonas stutzeri OX1 is capable of...
Bacterial multicomponent monooxygenases (BMMs) are a heterogeneous family of di-iron monooxygenases ...
Directed evolution and rational design were used to generate active variants of toluene-4-monooxygen...
Toluene monooxygenases from pseudomonads are powerful enzymes for aromatic hydroxylation. The goal o...
Toluene-o-xylene monooxygenase (ToMO) from Pseudomonas stutzeri OX1 oxidizes toluene to 3- and 4-met...
Toluene-o-xylene monooxygenase (ToMO) from Pseudomonas stutzeri OX1 is a multi-component enzyme tha...
Oxygenases are promising biocatalysts for performing selective hydroxylations not accessible by chem...
The pathways for degradation of aromatic hydrocarbons are constantly modified by a variety of geneti...
Toluene o-xylene monooxygenase (ToMO) and phenol hydroxylase (PH) of Pseudomonas stutzeri OX1 act se...
Biocatalysis is today a standard technology for the industrial production of several chemicals, and ...
Pseudomonas sp. strain JS150 is able to use numerous substituted benzenes as its sole carbon source....
Aromatic hydroxylations are important bacterial metabolic processes but are difficult to perform usi...
Enantiopure sulfoxides are valuable asymmetric starting materials and are important chiral auxiliari...
1 p. (abstract only). YOU CANNOT OPEN THE COMPLETE PAPER. It is not available to the public, in acco...
The four-component toluene/o-xylene monooxygenase (ToMO) from Pseudomonas stutzeri OX1 is capable of...
Bacterial multicomponent monooxygenases (BMMs) are a heterogeneous family of di-iron monooxygenases ...
Directed evolution and rational design were used to generate active variants of toluene-4-monooxygen...
Toluene monooxygenases from pseudomonads are powerful enzymes for aromatic hydroxylation. The goal o...
Toluene-o-xylene monooxygenase (ToMO) from Pseudomonas stutzeri OX1 oxidizes toluene to 3- and 4-met...
Toluene-o-xylene monooxygenase (ToMO) from Pseudomonas stutzeri OX1 is a multi-component enzyme tha...
Oxygenases are promising biocatalysts for performing selective hydroxylations not accessible by chem...
The pathways for degradation of aromatic hydrocarbons are constantly modified by a variety of geneti...
Toluene o-xylene monooxygenase (ToMO) and phenol hydroxylase (PH) of Pseudomonas stutzeri OX1 act se...
Biocatalysis is today a standard technology for the industrial production of several chemicals, and ...
Pseudomonas sp. strain JS150 is able to use numerous substituted benzenes as its sole carbon source....
Aromatic hydroxylations are important bacterial metabolic processes but are difficult to perform usi...
Enantiopure sulfoxides are valuable asymmetric starting materials and are important chiral auxiliari...
1 p. (abstract only). YOU CANNOT OPEN THE COMPLETE PAPER. It is not available to the public, in acco...
The four-component toluene/o-xylene monooxygenase (ToMO) from Pseudomonas stutzeri OX1 is capable of...
Bacterial multicomponent monooxygenases (BMMs) are a heterogeneous family of di-iron monooxygenases ...
Directed evolution and rational design were used to generate active variants of toluene-4-monooxygen...