Mutants of P450-BM3 evolved by directed evolution are excellent catalysts in the CH-activating oxidative hydroxylation of 1-tetralone derivatives and of indanone, with unusually high regio- and enantioselectivity being observed. Similar results were achieved in the oxidative hydroxylation of tetralin and indane. The products are useful building blocks in the synthesis of a number of biologically active compounds
Cytochrome P450 monooxygenases play a crucial role in the biosynthesis of many natural products and ...
This thesis describes the adoption of P450BM3 mutants as biocatalysts during target molecule synthes...
The selective partial oxidation of small non-functionalized molecules using biocatalysis based on P4...
Mutants of P450-BM3 evolved by directed evolution are excellent catalysts in the CH-activating oxida...
Chiral alcohols are important building blocks for the production of pharmaceuticals, catalytic acces...
Wild-type P450-BM3 is able to catalyze in a highly regio- and diastereoselective manner the oxidativ...
While the mechanism of the P450-catalyzed oxidative hydroxylation of organic compounds has been stud...
Regio- and stereoselective oxidative hydroxylation of achiral or chiral organic compounds mediated b...
P450-BM3 and mutants of this monooxygenase generated by directed evolution are excellent catalysts f...
A screening with 15 strains of bacteria and fungi targeted at the production of specific hydroxylate...
Directed evolution of the monooxygenase P450-BM3 utilizing iterative saturation mutagenesis at and n...
The synthesis of 5-hydroxy-6-methoxy-1-tetralone and the 7-hydroxy regioisomer along with the corres...
The selective hydroxylation of an unactivated C-H bond is a crucial step in the synthesis of fine ch...
P450pyr monooxygenase from Sphingomonas sp. HXN-200 catalysed the regio- and stereoselective hydroxy...
P450-BM3 and mutants of this monooxygenase generated by directed evolution are excellent catalysts f...
Cytochrome P450 monooxygenases play a crucial role in the biosynthesis of many natural products and ...
This thesis describes the adoption of P450BM3 mutants as biocatalysts during target molecule synthes...
The selective partial oxidation of small non-functionalized molecules using biocatalysis based on P4...
Mutants of P450-BM3 evolved by directed evolution are excellent catalysts in the CH-activating oxida...
Chiral alcohols are important building blocks for the production of pharmaceuticals, catalytic acces...
Wild-type P450-BM3 is able to catalyze in a highly regio- and diastereoselective manner the oxidativ...
While the mechanism of the P450-catalyzed oxidative hydroxylation of organic compounds has been stud...
Regio- and stereoselective oxidative hydroxylation of achiral or chiral organic compounds mediated b...
P450-BM3 and mutants of this monooxygenase generated by directed evolution are excellent catalysts f...
A screening with 15 strains of bacteria and fungi targeted at the production of specific hydroxylate...
Directed evolution of the monooxygenase P450-BM3 utilizing iterative saturation mutagenesis at and n...
The synthesis of 5-hydroxy-6-methoxy-1-tetralone and the 7-hydroxy regioisomer along with the corres...
The selective hydroxylation of an unactivated C-H bond is a crucial step in the synthesis of fine ch...
P450pyr monooxygenase from Sphingomonas sp. HXN-200 catalysed the regio- and stereoselective hydroxy...
P450-BM3 and mutants of this monooxygenase generated by directed evolution are excellent catalysts f...
Cytochrome P450 monooxygenases play a crucial role in the biosynthesis of many natural products and ...
This thesis describes the adoption of P450BM3 mutants as biocatalysts during target molecule synthes...
The selective partial oxidation of small non-functionalized molecules using biocatalysis based on P4...