The styrene oxidation activity of cytochrome P450cam, has been greatly improved by rational protein engineering. Compared to the wild-type enzyme, the active-site mutants Y96A and Y96F bound styrene more tightly, consumed NADH more rapidly, and were more efficient at utilising reducing equivalents for product formation. Styrene oxide formation rates were enhanced 9-fold in the Y96A mutant relative to wild-type, and 25-fold in the Y96F mutant, thus demonstrating the effectiveness of active-site redesign in improving the activity of a haem monooxygenase towards an unnatural substrate
The protein engineering of CYP enzymes for structure-activity studies and the oxidation of unnatural...
Abstract Background Styrene monooxygenase (SMO) catalyzes the first step of aromatic alkene degradat...
Selective hydroxylation/epoxidation of hydrocarbons generates useful chiral intermediates for the pr...
AbstractThe styrene oxidation activity of cytochrome P450cam has been greatly improved by rational p...
Mutations of the active site residues F87 and Y96 greatly enhanced the activity of cytochrome P450(c...
This thesis describes a study of the substrate selectivity of active site mutants of the monooxygena...
We have a continuing interest in applying the current knowledge of cytochrome P450cam substrate reco...
The haem monooxygenase cytochrome P450cam from Pseudomonas putida has been engineered into an alkane...
The Phe-193 residue on the surface of cytochrome P450cam is part of a cluster of residues proposed t...
AbstractMutants of the heme monooxygenase cytochrome P450cam in which Y96 had been replaced with hyd...
Styrene monooxygenase catalyzes the enantioselective epoxidation of styrene but displays significant...
The styAB genes from Pseudomonas putida CA-3, which encode styrene monooxygenase, were subjected to ...
Cytochrome P450 monooxygenases, one of the most important classes of heme-thiolate proteins, have at...
Styrene monooxygenase (SMOA) catalyzes the epoxidation of styrene in the first step of styrene catab...
The mechanisms by which biological macromolecules recognize small molecules are of fundamental relev...
The protein engineering of CYP enzymes for structure-activity studies and the oxidation of unnatural...
Abstract Background Styrene monooxygenase (SMO) catalyzes the first step of aromatic alkene degradat...
Selective hydroxylation/epoxidation of hydrocarbons generates useful chiral intermediates for the pr...
AbstractThe styrene oxidation activity of cytochrome P450cam has been greatly improved by rational p...
Mutations of the active site residues F87 and Y96 greatly enhanced the activity of cytochrome P450(c...
This thesis describes a study of the substrate selectivity of active site mutants of the monooxygena...
We have a continuing interest in applying the current knowledge of cytochrome P450cam substrate reco...
The haem monooxygenase cytochrome P450cam from Pseudomonas putida has been engineered into an alkane...
The Phe-193 residue on the surface of cytochrome P450cam is part of a cluster of residues proposed t...
AbstractMutants of the heme monooxygenase cytochrome P450cam in which Y96 had been replaced with hyd...
Styrene monooxygenase catalyzes the enantioselective epoxidation of styrene but displays significant...
The styAB genes from Pseudomonas putida CA-3, which encode styrene monooxygenase, were subjected to ...
Cytochrome P450 monooxygenases, one of the most important classes of heme-thiolate proteins, have at...
Styrene monooxygenase (SMOA) catalyzes the epoxidation of styrene in the first step of styrene catab...
The mechanisms by which biological macromolecules recognize small molecules are of fundamental relev...
The protein engineering of CYP enzymes for structure-activity studies and the oxidation of unnatural...
Abstract Background Styrene monooxygenase (SMO) catalyzes the first step of aromatic alkene degradat...
Selective hydroxylation/epoxidation of hydrocarbons generates useful chiral intermediates for the pr...