Although abundant in organic molecules, carbon–hydrogen (C–H) bonds are typically considered unreactive and unavailable for chemical manipulation. Recent advances in C–H functionalization technology have begun to transform this logic, while emphasizing the importance of and challenges associated with selective alkylation at a sp^3 carbon. Here we describe iron-based catalysts for the enantio-, regio- and chemoselective intermolecular alkylation of sp^3 C–H bonds through carbene C–H insertion. The catalysts, derived from a cytochrome P450 enzyme in which the native cysteine axial ligand has been substituted for serine (cytochrome P411), are fully genetically encoded and produced in bacteria, where they can be tuned by directed evolution for ...
Carbon–carbon bond formation is the key transformation in organic synthesis to set up the carbon bac...
We recently demonstrated that variants of cytochrome P450_(BM3) (CYP102A1) catalyze the insertion of...
We report a biocatalytic platform of engineered cytochrome P450 enzymes to carry out efficient cyclo...
Although abundant in organic molecules, carbon–hydrogen (C–H) bonds are typically considered unreact...
C–H bonds are ubiquitous structural units of organic molecules. Although these bonds are generally c...
Synthetic methods to selectively convert C–H bonds, a prevalent motif in organic molecules, into fun...
The introduction of fluoroalkyl groups into organic compounds can significantly alter pharmacologica...
A cytochrome c heme protein was recently engineered to catalyze the formation of carbon–silicon bond...
Transfers of carbene moieties to heterocycles or cyclic alkenes to obtain C(sp^2)–H alkylation or cy...
We report a biocatalytic platform of engineered cytochrome P450 enzymes to carry out carbene-transfe...
Previous work has demonstrated that variants of a heme protein, Rhodothermus marinus cytochrome c (R...
The development of new catalytic methods to functionalize carbon–hydrogen (C–H) bonds continues to ...
A major challenge in carbon‒hydrogen (C‒H) bond functionalization is to have the catalyst control pr...
A paramount challenge in carbon–hydrogen (C–H) functionalization is to control the site selectivity ...
Heme proteins have recently been demonstrated to catalyze cyclopropanation reactions via a putative ...
Carbon–carbon bond formation is the key transformation in organic synthesis to set up the carbon bac...
We recently demonstrated that variants of cytochrome P450_(BM3) (CYP102A1) catalyze the insertion of...
We report a biocatalytic platform of engineered cytochrome P450 enzymes to carry out efficient cyclo...
Although abundant in organic molecules, carbon–hydrogen (C–H) bonds are typically considered unreact...
C–H bonds are ubiquitous structural units of organic molecules. Although these bonds are generally c...
Synthetic methods to selectively convert C–H bonds, a prevalent motif in organic molecules, into fun...
The introduction of fluoroalkyl groups into organic compounds can significantly alter pharmacologica...
A cytochrome c heme protein was recently engineered to catalyze the formation of carbon–silicon bond...
Transfers of carbene moieties to heterocycles or cyclic alkenes to obtain C(sp^2)–H alkylation or cy...
We report a biocatalytic platform of engineered cytochrome P450 enzymes to carry out carbene-transfe...
Previous work has demonstrated that variants of a heme protein, Rhodothermus marinus cytochrome c (R...
The development of new catalytic methods to functionalize carbon–hydrogen (C–H) bonds continues to ...
A major challenge in carbon‒hydrogen (C‒H) bond functionalization is to have the catalyst control pr...
A paramount challenge in carbon–hydrogen (C–H) functionalization is to control the site selectivity ...
Heme proteins have recently been demonstrated to catalyze cyclopropanation reactions via a putative ...
Carbon–carbon bond formation is the key transformation in organic synthesis to set up the carbon bac...
We recently demonstrated that variants of cytochrome P450_(BM3) (CYP102A1) catalyze the insertion of...
We report a biocatalytic platform of engineered cytochrome P450 enzymes to carry out efficient cyclo...