Artificial metalloenzymes result from the insertion of a catalytically active metal complex into a biological scaffold, generally a protein devoid of other catalytic functionalities. As such, their design requires efforts to engineer substrate binding, in addition to accommodating the artificial catalyst. Here we constructed and characterised artificial metalloenzymes using alcohol dehydrogenase as starting point, an enzyme which has both a cofactor and a substrate binding pocket. A docking approach was used to determine suitable positions for catalyst anchoring to single cysteine mutants, leading to an artificial metalloenzyme capable to reduce both natural cofactors and the hydrophobic 1-benzylnicotinamide mimic. Kinetic studies revealed ...
Artificial metalloenzymes that contain protein-anchored synthetic catalysts are attracting increasin...
A review. In recent years, significant progress has been made in the computational design of functio...
In recent years, substantial advances have been made in the development of artificial metalloenzymes...
Artificial metalloenzymes result from the insertion of a catalytically active metal complex into a b...
Transfer hydrogenation reactions can yield a diverse range of chiral products to be used as such, or...
© The Royal Society of Chemistry. Chemo-enzymatic cascades of enzymes with transition metal catalyst...
Artificial metalloenzymes (ArMs) confer non-biological reactivities to biomolecules, whilst taking a...
An ongoing objective of the chemical industry is to reduce the use of eco-destructive chemicals in c...
The catalytic efficiency and high selectivities achieved by natural metalloenzymes are a source of i...
The development of artificial enzymes is an emerging field driven by the prospect of highly selectiv...
Artificial metalloenzymes (ArMs) are hybrid catalysts that offer a unique opportunity to combine the...
Artificial metalloenzymes are unique as they combine the good features of homogeneous and enzymatic ...
Artificial metalloenzymes (ArMs) result from the incorportation of a catalyst precursor within a hos...
The design of artificial metalloenzymes is a challenging, yet ultimately highly rewarding objective ...
Artificial metalloenzymes aim to combine the benefits of natural enzymes (selectivity, rate enhancem...
Artificial metalloenzymes that contain protein-anchored synthetic catalysts are attracting increasin...
A review. In recent years, significant progress has been made in the computational design of functio...
In recent years, substantial advances have been made in the development of artificial metalloenzymes...
Artificial metalloenzymes result from the insertion of a catalytically active metal complex into a b...
Transfer hydrogenation reactions can yield a diverse range of chiral products to be used as such, or...
© The Royal Society of Chemistry. Chemo-enzymatic cascades of enzymes with transition metal catalyst...
Artificial metalloenzymes (ArMs) confer non-biological reactivities to biomolecules, whilst taking a...
An ongoing objective of the chemical industry is to reduce the use of eco-destructive chemicals in c...
The catalytic efficiency and high selectivities achieved by natural metalloenzymes are a source of i...
The development of artificial enzymes is an emerging field driven by the prospect of highly selectiv...
Artificial metalloenzymes (ArMs) are hybrid catalysts that offer a unique opportunity to combine the...
Artificial metalloenzymes are unique as they combine the good features of homogeneous and enzymatic ...
Artificial metalloenzymes (ArMs) result from the incorportation of a catalyst precursor within a hos...
The design of artificial metalloenzymes is a challenging, yet ultimately highly rewarding objective ...
Artificial metalloenzymes aim to combine the benefits of natural enzymes (selectivity, rate enhancem...
Artificial metalloenzymes that contain protein-anchored synthetic catalysts are attracting increasin...
A review. In recent years, significant progress has been made in the computational design of functio...
In recent years, substantial advances have been made in the development of artificial metalloenzymes...