Here, we combine the use of host screening, protein crystallography and QM/MM molecular dynamics simulations to investigate how the protein structure affects iminium catalysis by biotinylated secondary amines in a model 1,4 conjugate addition reaction. Monomeric streptavidin (M-Sav) lacks a quaternary structure and the solvent-exposed reaction site resulted in poor product conversion in the model reaction with low enantio- and regioselectivities. These parameters were much improved when the tetrameric host T-Sav was used; indeed, residues at the symmetrical subunit interface were proven to be critical for catalysis through a mutagenesis study. The use of QM/MM simulations and the asymmetric dimeric variant D-Sav revealed that both Lys121 re...
Artificial metalloenzymes result from anchoring an organometallic catalyst within an evolvable prote...
Artificial metalloenzymes (ArMs) result from anchoring a metal-containing moiety within a macro mole...
In 2010, the identification of 17 novel (R)-ATAs represented a breakthrough for the biocatalytic asy...
Here, we combine the use of host screening, protein crystallography and QM/MM molecular dynamics sim...
There has been growing interest in performing organocatalysis within a supramolecular system as a me...
There has been growing interest in operating organocatalysis within a supramolecular system as means...
Artificial metalloenzymes, resulting from incorporation of a metal cofactor within a host protein, h...
The biotin-streptavidin technology has been extensively exploited to engineer artificial metalloenzy...
The streptavidin scaffold was expanded with well-structured naturally occurring motifs. These chimer...
The creation of organocatalysts which function efficiently in aqueous or biocompatible environments ...
In this report, the streptavidin-biotin technology was applied to enable organocatalytic aldol addit...
We report on the optimization of an artificial imine reductase based on the biotin-streptavidin tech...
The biotin–streptavidin technology offers an attractive means to engineer artificial metalloenzymes ...
Here, the streptavidin-biotin technology was applied to enable organocatalytic transfer hydrogenatio...
Diamine ligands I-IV coordinated to an iridium metal complex with the biotin moiety anchored to the ...
Artificial metalloenzymes result from anchoring an organometallic catalyst within an evolvable prote...
Artificial metalloenzymes (ArMs) result from anchoring a metal-containing moiety within a macro mole...
In 2010, the identification of 17 novel (R)-ATAs represented a breakthrough for the biocatalytic asy...
Here, we combine the use of host screening, protein crystallography and QM/MM molecular dynamics sim...
There has been growing interest in performing organocatalysis within a supramolecular system as a me...
There has been growing interest in operating organocatalysis within a supramolecular system as means...
Artificial metalloenzymes, resulting from incorporation of a metal cofactor within a host protein, h...
The biotin-streptavidin technology has been extensively exploited to engineer artificial metalloenzy...
The streptavidin scaffold was expanded with well-structured naturally occurring motifs. These chimer...
The creation of organocatalysts which function efficiently in aqueous or biocompatible environments ...
In this report, the streptavidin-biotin technology was applied to enable organocatalytic aldol addit...
We report on the optimization of an artificial imine reductase based on the biotin-streptavidin tech...
The biotin–streptavidin technology offers an attractive means to engineer artificial metalloenzymes ...
Here, the streptavidin-biotin technology was applied to enable organocatalytic transfer hydrogenatio...
Diamine ligands I-IV coordinated to an iridium metal complex with the biotin moiety anchored to the ...
Artificial metalloenzymes result from anchoring an organometallic catalyst within an evolvable prote...
Artificial metalloenzymes (ArMs) result from anchoring a metal-containing moiety within a macro mole...
In 2010, the identification of 17 novel (R)-ATAs represented a breakthrough for the biocatalytic asy...