The styAB genes from Pseudomonas putida CA-3, which encode styrene monooxygenase, were subjected to three rounds of in vitro evolution using error-prone polymerase chain reaction with a view to improving the rate of styrene oxide and indene oxide formation. Improvements in styrene monooxygenase activity were monitored using an indole to indigo conversion assay. Each round of random mutagenesis generated variants improved in indigo formation with third round variants improved nine- to 12-fold over the wild type enzyme. Each round of in vitro evolution resulted in two to three amino acid substitutions in styrene monooxygenase. While the majority of mutations occurred in styA (oxygenase), mutations were also observed in styB (reductase). A mut...
Styrene monooxygenases (SMOs) are highly stereoselective enzymes that catalyze the formation of chir...
Styrene monooxygenases (SMOs) are flavoenzymes catalyzing the epoxidation of styrene into styrene ox...
Enzymes capable of producing epoxides are interesting for organic chemistry because epoxides are ver...
The styAB genes from Pseudomonas putida CA-3, which encode styrene monooxygenase, were subjected to ...
Previously, styrene oxide has been used as starting material in the reaction cascade for obtaining 2...
Abstract Background Styrene monooxygenase (SMO) catalyzes the first step of aromatic alkene degradat...
Oxygenases form an interesting class of biocatalysts, as they typically perform oxygenations with ex...
We developed a biocatalyst by cloning the styrene monooxygenase genes (styA and styB) from Pseudomon...
A styrene-degrading strain, Pseudomonas putida SN1, was engineered to produce enantiopure (S)-styren...
Styrene monooxygenase (SMOA) catalyzes the epoxidation of styrene in the first step of styrene catab...
Oxygenases form an interesting class of biocatalysts, as they typically perform oxygenations with ex...
A highly active recombinant whole-cell biocatalyst, Escherichia coli pETAB2/pG-KJE1, was developed t...
Additional file 6: Figure S5. Biotransformation of 1a-4a to (S)-1d-4d by the whole cell of recombina...
Additional file 3: Figure S6. Time course of biotransformation by the recombinant Pseudomonas putida...
Additional file 5: Figure S1. A section of a multiple-sequence alignment of styA with oxygenases fro...
Styrene monooxygenases (SMOs) are highly stereoselective enzymes that catalyze the formation of chir...
Styrene monooxygenases (SMOs) are flavoenzymes catalyzing the epoxidation of styrene into styrene ox...
Enzymes capable of producing epoxides are interesting for organic chemistry because epoxides are ver...
The styAB genes from Pseudomonas putida CA-3, which encode styrene monooxygenase, were subjected to ...
Previously, styrene oxide has been used as starting material in the reaction cascade for obtaining 2...
Abstract Background Styrene monooxygenase (SMO) catalyzes the first step of aromatic alkene degradat...
Oxygenases form an interesting class of biocatalysts, as they typically perform oxygenations with ex...
We developed a biocatalyst by cloning the styrene monooxygenase genes (styA and styB) from Pseudomon...
A styrene-degrading strain, Pseudomonas putida SN1, was engineered to produce enantiopure (S)-styren...
Styrene monooxygenase (SMOA) catalyzes the epoxidation of styrene in the first step of styrene catab...
Oxygenases form an interesting class of biocatalysts, as they typically perform oxygenations with ex...
A highly active recombinant whole-cell biocatalyst, Escherichia coli pETAB2/pG-KJE1, was developed t...
Additional file 6: Figure S5. Biotransformation of 1a-4a to (S)-1d-4d by the whole cell of recombina...
Additional file 3: Figure S6. Time course of biotransformation by the recombinant Pseudomonas putida...
Additional file 5: Figure S1. A section of a multiple-sequence alignment of styA with oxygenases fro...
Styrene monooxygenases (SMOs) are highly stereoselective enzymes that catalyze the formation of chir...
Styrene monooxygenases (SMOs) are flavoenzymes catalyzing the epoxidation of styrene into styrene ox...
Enzymes capable of producing epoxides are interesting for organic chemistry because epoxides are ver...