A cytochrome c heme protein was recently engineered to catalyze the formation of carbon–silicon bonds via carbene insertion into Si–H bonds, a reaction that was not previously known to be catalyzed by a protein. High chemoselectivity toward C–Si bond formation over competing C–N bond formation was achieved, although this trait was not screened for during directed evolution. Using computational and experimental tools, we now establish that activity and chemoselectivity are modulated by conformational dynamics of a protein loop that covers the substrate access to the iron–carbene active species. Mutagenesis of residues computationally predicted to control the loop conformation altered the protein’s chemoselectivity from preferred silylation t...
In the past decade, carbene transfer biocatalysis has evolved from basic scientific research to an a...
Synthetic methods to selectively convert C–H bonds, a prevalent motif in organic molecules, into fun...
Heme proteins, in particular cytochromes P450, have been extensively used in biocatalytic applicatio...
A cytochrome c heme protein was recently engineered to catalyze the formation of carbon-silicon bond...
Organic compounds containing silicon are important for a number of applications, from polymers to se...
Heme proteins have recently been demonstrated to catalyze cyclopropanation reactions via a putative ...
Recently, heme proteins have been discovered and engineered by directed evolution to catalyze chemic...
Although abundant in organic molecules, carbon–hydrogen (C–H) bonds are typically considered unreact...
We create enzymes that catalyze reactions not known in living systems. We direct the evolution of ne...
Despite the astonishing diversity of naturally occurring biocatalytic processes, enzymes do not cata...
We report a biocatalytic platform of engineered cytochrome P450 enzymes to carry out carbene-transfe...
Genetically encoded catalysts for non-natural chemical reactions will open new routes to sustainable...
Genetically encoded catalysts for non-natural chemical reactions will open new routes to sustainable...
Adapting enzymes for chemical synthesis is a longstanding and contemporary challenge; however, enzym...
Previous work has demonstrated that variants of a heme protein, Rhodothermus marinus cytochrome c (R...
In the past decade, carbene transfer biocatalysis has evolved from basic scientific research to an a...
Synthetic methods to selectively convert C–H bonds, a prevalent motif in organic molecules, into fun...
Heme proteins, in particular cytochromes P450, have been extensively used in biocatalytic applicatio...
A cytochrome c heme protein was recently engineered to catalyze the formation of carbon-silicon bond...
Organic compounds containing silicon are important for a number of applications, from polymers to se...
Heme proteins have recently been demonstrated to catalyze cyclopropanation reactions via a putative ...
Recently, heme proteins have been discovered and engineered by directed evolution to catalyze chemic...
Although abundant in organic molecules, carbon–hydrogen (C–H) bonds are typically considered unreact...
We create enzymes that catalyze reactions not known in living systems. We direct the evolution of ne...
Despite the astonishing diversity of naturally occurring biocatalytic processes, enzymes do not cata...
We report a biocatalytic platform of engineered cytochrome P450 enzymes to carry out carbene-transfe...
Genetically encoded catalysts for non-natural chemical reactions will open new routes to sustainable...
Genetically encoded catalysts for non-natural chemical reactions will open new routes to sustainable...
Adapting enzymes for chemical synthesis is a longstanding and contemporary challenge; however, enzym...
Previous work has demonstrated that variants of a heme protein, Rhodothermus marinus cytochrome c (R...
In the past decade, carbene transfer biocatalysis has evolved from basic scientific research to an a...
Synthetic methods to selectively convert C–H bonds, a prevalent motif in organic molecules, into fun...
Heme proteins, in particular cytochromes P450, have been extensively used in biocatalytic applicatio...