The design of artificial metalloenzymes is a challenging, yet ultimately highly rewarding objective because of the potential for accessing new-to-nature reactions. One of the main challenges is identifying catalytically active substrate-metal cofactor-host geometries. The advent of expanded genetic code methods for the in vivo incorporation of non-canonical metal-binding amino acids into proteins allow to address an important aspect of this challenge: the creation of a stable, well-defined metal-binding site. Here, we report a designed artificial metallohydratase, based on the transcriptional repressor lactococcal multidrug resistance regulator (LmrR), in which the non-canonical amino acid (2,2'-bipyridin-5yl) alanine is used to bind the ca...
Despite the increasing efforts in the last few years, the identification of efficient catalysts able...
The design of Artificial Metalloenzymes (ArMs), which result from the incorporation of organometalli...
Artifical metalloenzymes combine the reactivity of small molecule catalysts with the selectivity of ...
Starting from biochemical knowledge followed by computational design, an artificial metallo-hydratas...
The catalytic efficiency and high selectivities achieved by natural metalloenzymes are a source of i...
The biotechnological revolution has made it possible to create enzymes for many reactions by directe...
Artificial metalloenzymes (ArMs) have been proven to be a valuable concept for enantioselective cata...
We have examined the potential of the noncanonical amino acid (8-hydroxyquinolin-3-yl)alanine (HQAla...
Despite the increasing efforts in the last few years, the identification of efficient catalysts able...
Supramolecular anchoring of transition metal complexes to a protein scaffold is an attractive approa...
ABSTRACT: Genetically encoded unnatural amino acids could facilitate the design of proteins and enzy...
The biotechnological revolution has made it possible to create enzymes for many reactions by directe...
The choice of protein scaffolds is an important element in the design of artificial metalloenzymes. ...
Despite the increasing efforts in the last few years, the identification of efficient catalysts able...
The design of Artificial Metalloenzymes (ArMs), which result from the incorporation of organometalli...
Artifical metalloenzymes combine the reactivity of small molecule catalysts with the selectivity of ...
Starting from biochemical knowledge followed by computational design, an artificial metallo-hydratas...
The catalytic efficiency and high selectivities achieved by natural metalloenzymes are a source of i...
The biotechnological revolution has made it possible to create enzymes for many reactions by directe...
Artificial metalloenzymes (ArMs) have been proven to be a valuable concept for enantioselective cata...
We have examined the potential of the noncanonical amino acid (8-hydroxyquinolin-3-yl)alanine (HQAla...
Despite the increasing efforts in the last few years, the identification of efficient catalysts able...
Supramolecular anchoring of transition metal complexes to a protein scaffold is an attractive approa...
ABSTRACT: Genetically encoded unnatural amino acids could facilitate the design of proteins and enzy...
The biotechnological revolution has made it possible to create enzymes for many reactions by directe...
The choice of protein scaffolds is an important element in the design of artificial metalloenzymes. ...
Despite the increasing efforts in the last few years, the identification of efficient catalysts able...
The design of Artificial Metalloenzymes (ArMs), which result from the incorporation of organometalli...
Artifical metalloenzymes combine the reactivity of small molecule catalysts with the selectivity of ...