Artifical metalloenzymes combine the reactivity of small molecule catalysts with the selectivity of enzymes, and new methods are required to tune the catalytic properties of these systems for an application of interest. Structure-based computational design could help to identify amino acid mutations leading to improved catalytic activity and enantioselectivity. Here we describe the application of Rosetta Design for the genetic optimization of an artificial transfer hydrogenase (ATHase hereafter), [(η<sup>5</sup>-Cp*)Ir(pico)Cl] ⊂ WT hCA II (Cp* = Me<sub>5</sub>C<sub>5</sub><sup>–</sup>), for the asymmetric reduction of a cyclic imine, the precursor of salsolsidine. Based on a crystal structure of the ATHase, computational design afforded...
While there has been emerging interest in designing new enzymes to solve practical challenges, compu...
Artificial metalloenzymes (ArMs), which combine an abiotic metal cofactor with a protein scaffold, c...
We developed an artificial hydrolase based on the symmetrical Pizza6 β-propeller protein for the met...
Artificial metalloenzymes (ArMs) based on the incorporation of a biotinylated metal cofactor within ...
The design of artificial metalloenzymes is a challenging, yet ultimately highly rewarding objective ...
Transfer hydrogenation reactions can yield a diverse range of chiral products to be used as such, or...
Computational enzyme design holds great promise for providing new biocatalysts for synthetic chemist...
Artificial metalloenzymes, resulting from incorporation of a metal cofactor within a host protein, h...
Introduction of innovative biocatalytic processes offers great promise for applications in green che...
A general approach for the computational design of enzymes to catalyze arbitrary reactions is a goal...
Artificial metalloenzymes result from anchoring a metal cofactor within a host protein. Such hybrid ...
We present a computational study that combines protein–ligand docking, quantum mechanical, and quant...
Enzyme design is an important area of ongoing research with a broad range of applications in protein...
The aim of this thesis is to explore computational methodologies for the design and screening of enz...
With advances in protein structure predictions, the number of available high-quality structures has ...
While there has been emerging interest in designing new enzymes to solve practical challenges, compu...
Artificial metalloenzymes (ArMs), which combine an abiotic metal cofactor with a protein scaffold, c...
We developed an artificial hydrolase based on the symmetrical Pizza6 β-propeller protein for the met...
Artificial metalloenzymes (ArMs) based on the incorporation of a biotinylated metal cofactor within ...
The design of artificial metalloenzymes is a challenging, yet ultimately highly rewarding objective ...
Transfer hydrogenation reactions can yield a diverse range of chiral products to be used as such, or...
Computational enzyme design holds great promise for providing new biocatalysts for synthetic chemist...
Artificial metalloenzymes, resulting from incorporation of a metal cofactor within a host protein, h...
Introduction of innovative biocatalytic processes offers great promise for applications in green che...
A general approach for the computational design of enzymes to catalyze arbitrary reactions is a goal...
Artificial metalloenzymes result from anchoring a metal cofactor within a host protein. Such hybrid ...
We present a computational study that combines protein–ligand docking, quantum mechanical, and quant...
Enzyme design is an important area of ongoing research with a broad range of applications in protein...
The aim of this thesis is to explore computational methodologies for the design and screening of enz...
With advances in protein structure predictions, the number of available high-quality structures has ...
While there has been emerging interest in designing new enzymes to solve practical challenges, compu...
Artificial metalloenzymes (ArMs), which combine an abiotic metal cofactor with a protein scaffold, c...
We developed an artificial hydrolase based on the symmetrical Pizza6 β-propeller protein for the met...