ABSTRACT: Small (24-35 amino acid residues) peptides that catalyze carbon-carbon bond transformations including aldol, retro-aldol, and Michael reactions in aqueous buffer via an enamine mechanism have been developed. Peptide phage libraries were created by appending six randomized amino acid residues to the C-terminus or to the N-terminus of an 18-mer R-helix peptide containing lysine residues. Reaction-based selection with 1,3-diketones was performed to trap the amino groups of reactive lysine residues that were necessary for the catalysis via an enamine mechanism by formation of stable enaminones. The selected 24-mer peptides catalyzed the reactions with improved activities. The improved activities were correlated with improved folded st...
The research summarized in this thesis focuses on directed evolution and enzyme mechanism studies of...
Peptides are intriguing catalysts because they occupy a middle ground between enzymes and small-mole...
The substrate profile of peptiligase, a stable enzyme designed for peptide ligation in aqueous envir...
The creation of enzymes capable of catalyzing any desired chemical reaction is a grand challenge for...
The creation of enzymes capable of catalyzing any desired chemical reaction is a grand challenge for...
The creation of enzymes capable of catalyzing any desired chemical reaction is a grand challenge for...
Substrate specificity is one of the hallmarks of enzymes. Substrate specificity allows an enzyme to ...
Enzymes are large biomolecules which catalyze complex reactions with high selectivity and ...
Aldolases are seen as an attractive route to the production of biologically important compounds due ...
While native scaffolds offer a large diversity of shapes and topologies for enzyme engineering, thei...
The article summarizes our research devoted to the development of peptidic catalysts for aldol react...
This paper describes the substrate specificity, synthetic scope, and efficiency of aldolase catalyti...
The preparation of artificial proteins capable of catalyzing (non-)biological reactions with an effi...
Application of aldolases for the asymmetric synthesis of multifunctional chiral products is hampered...
Producing novel catalytic function in proteins has intrinsic practical utility and provides a furthe...
The research summarized in this thesis focuses on directed evolution and enzyme mechanism studies of...
Peptides are intriguing catalysts because they occupy a middle ground between enzymes and small-mole...
The substrate profile of peptiligase, a stable enzyme designed for peptide ligation in aqueous envir...
The creation of enzymes capable of catalyzing any desired chemical reaction is a grand challenge for...
The creation of enzymes capable of catalyzing any desired chemical reaction is a grand challenge for...
The creation of enzymes capable of catalyzing any desired chemical reaction is a grand challenge for...
Substrate specificity is one of the hallmarks of enzymes. Substrate specificity allows an enzyme to ...
Enzymes are large biomolecules which catalyze complex reactions with high selectivity and ...
Aldolases are seen as an attractive route to the production of biologically important compounds due ...
While native scaffolds offer a large diversity of shapes and topologies for enzyme engineering, thei...
The article summarizes our research devoted to the development of peptidic catalysts for aldol react...
This paper describes the substrate specificity, synthetic scope, and efficiency of aldolase catalyti...
The preparation of artificial proteins capable of catalyzing (non-)biological reactions with an effi...
Application of aldolases for the asymmetric synthesis of multifunctional chiral products is hampered...
Producing novel catalytic function in proteins has intrinsic practical utility and provides a furthe...
The research summarized in this thesis focuses on directed evolution and enzyme mechanism studies of...
Peptides are intriguing catalysts because they occupy a middle ground between enzymes and small-mole...
The substrate profile of peptiligase, a stable enzyme designed for peptide ligation in aqueous envir...