The screening of large libraries of enzyme variants remains an essential tool in evolving biocatalysts toward improved properties for applications in medicine, chemistry, and a broad variety of other fields. Over the last decades, the technology for conducting systematic screens of arrayed members of a library of enzyme variants has made great strides in terms of increasing throughput and reducing assay volume. Here, we describe in detail an alternative to arrayed analysis, which is a screen based on density shifts in result of changed enzyme function, which allows highly parallelized screening. Specifically, we link changes in protease substrate specificity in vivo to the production of an alternative reporter protein, catalase. Depending o...
High-throughput screening for catalysis is a critical technology in all experiments aimed at modifyi...
Proteases, enzymes that catalyze the hydrolysis of amide bonds in peptides and proteins, are ubiquit...
A high-throughput method for single cell screening by microfluidic droplet sorting is applied to a w...
textEnzyme engineering relies on changes in the amino acid sequence of an enzyme to give rise to imp...
textEnzyme engineering relies on changes in the amino acid sequence of an enzyme to give rise to imp...
Proteases are industrially important enzymes but often have to be improved for their catalytic effic...
Proteases are industrially important enzymes but often have to be improved for their catalytic effic...
High-throughput screening (HTS) of enzymatic activity is important for directed evolution-based enzy...
textEngineering protease substrate specificity and selectivity has the potential to yield entirely n...
Proteases are crucial to many biological processes and have become an important field of biomedical ...
The ability of whole cells to catalyse multistep reactions, often yielding synthetically demanding c...
Proteases are crucial to many biological processes and have become an important field of biomedical ...
Proteases are crucial to many biological processes and have become an important field of biomedical ...
Proteases are crucial to many biological processes and have become an important field of biomedical ...
A high-throughput method for single cell screening by microfluidic droplet sorting is applied to a w...
High-throughput screening for catalysis is a critical technology in all experiments aimed at modifyi...
Proteases, enzymes that catalyze the hydrolysis of amide bonds in peptides and proteins, are ubiquit...
A high-throughput method for single cell screening by microfluidic droplet sorting is applied to a w...
textEnzyme engineering relies on changes in the amino acid sequence of an enzyme to give rise to imp...
textEnzyme engineering relies on changes in the amino acid sequence of an enzyme to give rise to imp...
Proteases are industrially important enzymes but often have to be improved for their catalytic effic...
Proteases are industrially important enzymes but often have to be improved for their catalytic effic...
High-throughput screening (HTS) of enzymatic activity is important for directed evolution-based enzy...
textEngineering protease substrate specificity and selectivity has the potential to yield entirely n...
Proteases are crucial to many biological processes and have become an important field of biomedical ...
The ability of whole cells to catalyse multistep reactions, often yielding synthetically demanding c...
Proteases are crucial to many biological processes and have become an important field of biomedical ...
Proteases are crucial to many biological processes and have become an important field of biomedical ...
Proteases are crucial to many biological processes and have become an important field of biomedical ...
A high-throughput method for single cell screening by microfluidic droplet sorting is applied to a w...
High-throughput screening for catalysis is a critical technology in all experiments aimed at modifyi...
Proteases, enzymes that catalyze the hydrolysis of amide bonds in peptides and proteins, are ubiquit...
A high-throughput method for single cell screening by microfluidic droplet sorting is applied to a w...