SummaryHere, we report a widely and generally applicable strategy to obtain reliable information in high-throughput protein screenings of enzyme mutant libraries. The method is based on the usage of the split-GFP technology for the normalization of the expression level of each individual protein variant combined with activity measurements, thus resolving the important problems associated with the different solubility of each mutant and allowing the detection of previously invisible variants. The small size of the employed protein tag (16 amino acids) required for the reconstitution of the GFP fluorescence reduces possible interferences such as enzyme activity variations or solubility disturbances to a minimum. Specific enzyme activity measu...
Over the last three decades, protein engineering has established itself as an important tool for the...
Directed evolution of transaminases is a widespread technique in the development of highly sought-af...
Efficient and economic methods in directed evolution at the protein, metabolic, and genome level are...
SummaryHere, we report a widely and generally applicable strategy to obtain reliable information in ...
The large-scale industrial production of proteins requires efficient secretion, as provided, for ins...
Directed evolution techniques have revolutionised strategies for enzyme development and improvement....
SummaryWe describe a completely in vitro high-throughput screening system for directed evolution of ...
Many proteins are rapidly deactivated when exposed to high or even ambient temperatures. This cannot...
Directed evolution has emerged as one of the most effective protein engineering methods in basic res...
The Golden Gate strategy entails the use of type IIS restriction enzymes, which cut outside of their...
The potential for ultrahigh-throughput compartmentalization renders droplet microfluidics an attract...
textEnzyme engineering relies on changes in the amino acid sequence of an enzyme to give rise to imp...
Beyond the natural proteome, high-throughput mutagenesis offers the protein engineer an opportunity ...
Glucose oxidase (GOx) is an important industrial enzyme that can be optimized for specific applicati...
Over the last three decades, protein engineering has established itself as an important tool for the...
Directed evolution of transaminases is a widespread technique in the development of highly sought-af...
Efficient and economic methods in directed evolution at the protein, metabolic, and genome level are...
SummaryHere, we report a widely and generally applicable strategy to obtain reliable information in ...
The large-scale industrial production of proteins requires efficient secretion, as provided, for ins...
Directed evolution techniques have revolutionised strategies for enzyme development and improvement....
SummaryWe describe a completely in vitro high-throughput screening system for directed evolution of ...
Many proteins are rapidly deactivated when exposed to high or even ambient temperatures. This cannot...
Directed evolution has emerged as one of the most effective protein engineering methods in basic res...
The Golden Gate strategy entails the use of type IIS restriction enzymes, which cut outside of their...
The potential for ultrahigh-throughput compartmentalization renders droplet microfluidics an attract...
textEnzyme engineering relies on changes in the amino acid sequence of an enzyme to give rise to imp...
Beyond the natural proteome, high-throughput mutagenesis offers the protein engineer an opportunity ...
Glucose oxidase (GOx) is an important industrial enzyme that can be optimized for specific applicati...
Over the last three decades, protein engineering has established itself as an important tool for the...
Directed evolution of transaminases is a widespread technique in the development of highly sought-af...
Efficient and economic methods in directed evolution at the protein, metabolic, and genome level are...