The selective functionalization of sp³ C–H bonds is a versatile tool for the diversification of organic compounds. Combining attractive features of homogeneous and enzymatic catalysts, artificial metalloenzymes offer an ideal means to selectively modify these inert motifs. Herein, we report on a copper(I) heteroscorpionate complex embedded within streptavidin that catalyzes the intramolecular insertion of a carbene into sp³ C–H bonds. Target residues for genetic optimization of the artificial metalloenzyme were identified by quantum mechanics/molecular mechanics simulations. Double-saturation mutagenesis yielded detailed insight on the contribution of individual amino acids on the activity and the selectivity of the artificial metalloenzyme...
The streptavidin scaffold was expanded with well-structured naturally occurring motifs. These chimer...
Artificial metalloenzymes (ArMs) result from the incorportation of a catalyst precursor within a hos...
The catalytic efficiency and high selectivities achieved by natural metalloenzymes are a source of i...
Artificial metalloenzymes (ArMs) have been proven to be a valuable concept for enantioselective cata...
We report computationally-guided protein engineering of monomeric streptavidin Rh(iii) artificial me...
Numerous enzymes are useful catalysts in synthetic organic chemistry, but they cannot catalyze the m...
The biotechnological revolution has made it possible to create enzymes for many reactions by directe...
Enantioselective C–H amidation offers attractive means to assemble C–N bonds to synthesize high-adde...
The design of artificial metalloenzymes is a challenging, yet ultimately highly rewarding objective ...
Artificial metalloenzymes result from anchoring an organometallic catalyst within an evolvable prote...
Artificial metalloenzymes have emerged as a promising approach to merge the attractive properties of...
Data underlying the figures in the publication: Rumo, C. et al. “An Artificial Metalloenzyme Based o...
This thesis capitalizes on the efforts of the Ward lab to develop artificial metalloenzymes based o...
Artificial metalloenzymes (ArMs) have emerged as a promising avenue in the field of biocatalysis, of...
Artificial metalloenzymes enable several non-natural chemical transformations by hosting a metal ca...
The streptavidin scaffold was expanded with well-structured naturally occurring motifs. These chimer...
Artificial metalloenzymes (ArMs) result from the incorportation of a catalyst precursor within a hos...
The catalytic efficiency and high selectivities achieved by natural metalloenzymes are a source of i...
Artificial metalloenzymes (ArMs) have been proven to be a valuable concept for enantioselective cata...
We report computationally-guided protein engineering of monomeric streptavidin Rh(iii) artificial me...
Numerous enzymes are useful catalysts in synthetic organic chemistry, but they cannot catalyze the m...
The biotechnological revolution has made it possible to create enzymes for many reactions by directe...
Enantioselective C–H amidation offers attractive means to assemble C–N bonds to synthesize high-adde...
The design of artificial metalloenzymes is a challenging, yet ultimately highly rewarding objective ...
Artificial metalloenzymes result from anchoring an organometallic catalyst within an evolvable prote...
Artificial metalloenzymes have emerged as a promising approach to merge the attractive properties of...
Data underlying the figures in the publication: Rumo, C. et al. “An Artificial Metalloenzyme Based o...
This thesis capitalizes on the efforts of the Ward lab to develop artificial metalloenzymes based o...
Artificial metalloenzymes (ArMs) have emerged as a promising avenue in the field of biocatalysis, of...
Artificial metalloenzymes enable several non-natural chemical transformations by hosting a metal ca...
The streptavidin scaffold was expanded with well-structured naturally occurring motifs. These chimer...
Artificial metalloenzymes (ArMs) result from the incorportation of a catalyst precursor within a hos...
The catalytic efficiency and high selectivities achieved by natural metalloenzymes are a source of i...