ABSTRACT: The direct amination of aliphatic C−H bonds represents a most valuable transformation in organic chemistry. While a number of transition-metal-based catalysts have been developed and investigated for this purpose, the possibility to execute this transformation with biological catalysts has remained largely unexplored. Here, we report that cytochrome P450 enzymes can serve as efficient catalysts for mediating intramolecular benzylic C−H amination reactions in a variety of arylsulfonyl azide compouds. Under optimized conditions, the P450 catalysts were found to support up to 390 total turnovers leading to the formation of the desired sultam products with excellent regioselectivity. In addition, the chiral environment provided by the...
P450 enzymes activate C–H bonds via the insertion of an oxygen atom from atmospheric dioxygen under ...
ABSTRACT: Engineering enzymes with novel reaction modes promises to expand the applications of bioca...
Directed evolution utilizing an unconven- tional approach to saturation mutagenesis has been applied...
Nitrogen activation: Though P450 enzymes are masters of oxygen activation and insertion into C-H bon...
Nitrogen activation: Though P450 enzymes are masters of oxygen activation and insertion into C-H bon...
Nitrogen activation: Though P450 enzymes are masters of oxygen activation and insertion into C-H bon...
Nitrogen activation: Though P450 enzymes are masters of oxygen activation and insertion into C-H bon...
Expanding Nature’s catalytic repertoire to include reactions important in synthetic chemistry opens ...
Expanding Nature’s catalytic repertoire to include reactions important in synthetic chemistry opens ...
ABSTRACT: We recently demonstrated that variants of cytochrome P450BM3 (CYP102A1) catalyze the inser...
We recently demonstrated that variants of cytochrome P450<sub>BM3</sub> (CYP102A1) catalyze the inse...
The selective functionalization of ubiquitous C-H bonds can greatly streamline the construction of c...
The selective functionalization of ubiquitous C-H bonds can greatly streamline the construction of c...
C–H bonds are ubiquitous structural units of organic molecules. Although these bonds are generally c...
Directed evolution utilizing an unconven- tional approach to saturation mutagenesis has been applied...
P450 enzymes activate C–H bonds via the insertion of an oxygen atom from atmospheric dioxygen under ...
ABSTRACT: Engineering enzymes with novel reaction modes promises to expand the applications of bioca...
Directed evolution utilizing an unconven- tional approach to saturation mutagenesis has been applied...
Nitrogen activation: Though P450 enzymes are masters of oxygen activation and insertion into C-H bon...
Nitrogen activation: Though P450 enzymes are masters of oxygen activation and insertion into C-H bon...
Nitrogen activation: Though P450 enzymes are masters of oxygen activation and insertion into C-H bon...
Nitrogen activation: Though P450 enzymes are masters of oxygen activation and insertion into C-H bon...
Expanding Nature’s catalytic repertoire to include reactions important in synthetic chemistry opens ...
Expanding Nature’s catalytic repertoire to include reactions important in synthetic chemistry opens ...
ABSTRACT: We recently demonstrated that variants of cytochrome P450BM3 (CYP102A1) catalyze the inser...
We recently demonstrated that variants of cytochrome P450<sub>BM3</sub> (CYP102A1) catalyze the inse...
The selective functionalization of ubiquitous C-H bonds can greatly streamline the construction of c...
The selective functionalization of ubiquitous C-H bonds can greatly streamline the construction of c...
C–H bonds are ubiquitous structural units of organic molecules. Although these bonds are generally c...
Directed evolution utilizing an unconven- tional approach to saturation mutagenesis has been applied...
P450 enzymes activate C–H bonds via the insertion of an oxygen atom from atmospheric dioxygen under ...
ABSTRACT: Engineering enzymes with novel reaction modes promises to expand the applications of bioca...
Directed evolution utilizing an unconven- tional approach to saturation mutagenesis has been applied...