I describe how we direct the evolution of non-natural enzyme activities, using chemical intuition and information on structure and mechanism to guide us to the most promising reaction/enzyme systems. With synthetic reagents to generate new reactive intermediates and just a few amino acid substitutions to tune the active site, a cytochrome P450 can catalyze a variety of carbene and nitrene transfer reactions. The cyclopropanation, N–H insertion, C–H amination, sulfimidation, and aziridination reactions now demonstrated are all well known in chemical catalysis but have no counterparts in nature. The new enzymes are fully genetically encoded, assemble and function inside of cells, and can be optimized for different substrates, activities, and ...
Not satisfied with nature’s vast enzyme repertoire, we want to create new ones and expand the space ...
For more than twenty years this laboratory has used directed evolution to modify enzymes. It is now...
SummaryWith their high selectivity and specificity especially in chiral reactions, natural enzymes a...
I describe how we direct the evolution of non-natural enzyme activities, using chemical intuition an...
High selectivity and exquisite control over the outcome of reactions entice chemists to use biocatal...
High selectivity and exquisite control over the outcome of reactions entice chemists to use biocatal...
We create enzymes that catalyze reactions not known in living systems. We direct the evolution of ne...
Advances in protein and metabolic engineering have led to wider use of enzymes to synthesize importa...
Tailor-made: Discussed herein is the ability to adapt biology's mechanisms for innovation and optimi...
Advances in protein and metabolic engineering have led to wider use of enzymes to synthesize importa...
Not satisfied with nature's vast catalyst repertoire, we want to create new protein catalysts and ex...
Despite the astonishing breadth of enzymes in nature, no enzymes are known for many of the valuable ...
Despite the astonishing breadth of enzymes in nature, no enzymes are known for many of the valuable ...
Despite the astonishing breadth of enzymes in nature, no enzymes are known for many of the valuable ...
Present state of research on expanding enzyme catalysis beyond nature For more than twenty years thi...
Not satisfied with nature’s vast enzyme repertoire, we want to create new ones and expand the space ...
For more than twenty years this laboratory has used directed evolution to modify enzymes. It is now...
SummaryWith their high selectivity and specificity especially in chiral reactions, natural enzymes a...
I describe how we direct the evolution of non-natural enzyme activities, using chemical intuition an...
High selectivity and exquisite control over the outcome of reactions entice chemists to use biocatal...
High selectivity and exquisite control over the outcome of reactions entice chemists to use biocatal...
We create enzymes that catalyze reactions not known in living systems. We direct the evolution of ne...
Advances in protein and metabolic engineering have led to wider use of enzymes to synthesize importa...
Tailor-made: Discussed herein is the ability to adapt biology's mechanisms for innovation and optimi...
Advances in protein and metabolic engineering have led to wider use of enzymes to synthesize importa...
Not satisfied with nature's vast catalyst repertoire, we want to create new protein catalysts and ex...
Despite the astonishing breadth of enzymes in nature, no enzymes are known for many of the valuable ...
Despite the astonishing breadth of enzymes in nature, no enzymes are known for many of the valuable ...
Despite the astonishing breadth of enzymes in nature, no enzymes are known for many of the valuable ...
Present state of research on expanding enzyme catalysis beyond nature For more than twenty years thi...
Not satisfied with nature’s vast enzyme repertoire, we want to create new ones and expand the space ...
For more than twenty years this laboratory has used directed evolution to modify enzymes. It is now...
SummaryWith their high selectivity and specificity especially in chiral reactions, natural enzymes a...