The generation of high levels of new catalytic activities on natural and artificial protein scaffolds is a major goal of enzyme engineering. Here, we used random mutagenesis and selection in vivo to establish a sugar isomerisation reaction on both a natural (beta alpha)(8)-barrel enzyme and a catalytically inert chimeric (beta alpha)(8)-barrel scaffold, which was generated by the recombination of 2 (beta alpha)(4)-half barrels. The best evolved variants show turnover numbers and substrate affinities that are similar to those of wild-type enzymes catalyzing the same reaction. The determination of the crystal structure of the most proficient variant allowed us to model the substrate sugar in the novel active site and to elucidate the mechanis...
Enzymes are today well recognized in various industrial applications, being an important component i...
New genes can arise by duplication and divergence, but there is a fundamental gap in our understandi...
SummaryWith their high selectivity and specificity especially in chiral reactions, natural enzymes a...
The generation of high levels of new catalytic activities on natural and artificial protein scaffold...
Natural evolution has yielded countless enzymes of the (β/α)8 barrel fold (TIM barrel). This versati...
While native scaffolds offer a large diversity of shapes and topologies for enzyme engineering, thei...
AbstractIt has been postulated that the ubiquitous (βα)8-barrel enzyme fold has evolved by duplicati...
Gene duplication and fusion events that multiply and link functional protein domains are crucial mec...
New genes can arise by duplication and divergence, but there is a fundamental gap in our understandi...
Protein design is a challenging problem. We do not fully understand the rules of protein folding, an...
Ample evidence suggests that the ubiquitous (betaalpha)(8)-barrel enzyme fold has evolved by the dup...
The ability of one enzyme to catalyse multiple, mechanistically distinct transformations likely play...
The combination of computational enzyme design and laboratory evolution provides an attractive platf...
The first part of this review article lists examples of complete, empirical de novo design that made...
Ample evidence suggests that the ubiquitous (betaalpha)(8)-barrel enzyme fold has evolved by the dup...
Enzymes are today well recognized in various industrial applications, being an important component i...
New genes can arise by duplication and divergence, but there is a fundamental gap in our understandi...
SummaryWith their high selectivity and specificity especially in chiral reactions, natural enzymes a...
The generation of high levels of new catalytic activities on natural and artificial protein scaffold...
Natural evolution has yielded countless enzymes of the (β/α)8 barrel fold (TIM barrel). This versati...
While native scaffolds offer a large diversity of shapes and topologies for enzyme engineering, thei...
AbstractIt has been postulated that the ubiquitous (βα)8-barrel enzyme fold has evolved by duplicati...
Gene duplication and fusion events that multiply and link functional protein domains are crucial mec...
New genes can arise by duplication and divergence, but there is a fundamental gap in our understandi...
Protein design is a challenging problem. We do not fully understand the rules of protein folding, an...
Ample evidence suggests that the ubiquitous (betaalpha)(8)-barrel enzyme fold has evolved by the dup...
The ability of one enzyme to catalyse multiple, mechanistically distinct transformations likely play...
The combination of computational enzyme design and laboratory evolution provides an attractive platf...
The first part of this review article lists examples of complete, empirical de novo design that made...
Ample evidence suggests that the ubiquitous (betaalpha)(8)-barrel enzyme fold has evolved by the dup...
Enzymes are today well recognized in various industrial applications, being an important component i...
New genes can arise by duplication and divergence, but there is a fundamental gap in our understandi...
SummaryWith their high selectivity and specificity especially in chiral reactions, natural enzymes a...