The exquisite selectivity and catalytic activity of enzymes have been shaped by the effects of positive and negative selection pressure during the course of evolution. In contrast, enzyme variants engineered by using in vitro screening techniques to accept novel substrates typically display a higher degree of catalytic promiscuity and lower total turnover in comparison with their natural counterparts. Using bacterial display and multiparameter flow cytometry, we have developed a novel methodology for emulating positive and negative selective pressure in vitro for the isolation of enzyme variants with reactivity for desired novel substrates, while simultaneously excluding those with reactivity toward undesired substrates. Screening of a larg...
Proteases, enzymes that catalyze the hydrolysis of amide bonds in peptides and proteins, are ubiquit...
textThe Escherichia coli (E. coli) outer membrane protease OmpT is an endopeptidase of the omptin f...
Versatile selective evolutionary pressure using synthetic defect in universal metabolis
A family of engineered endopeptidases has been created that is capable of cleaving a diverse array o...
textEngineering protease substrate specificity and selectivity has the potential to yield entirely n...
The non-natural needs of industrial applications often require new or improved enzymes. The structur...
The non-natural needs of industrial applications often require new or improved enzymes. The structur...
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...
SummaryWe describe a completely in vitro high-throughput screening system for directed evolution of ...
AbstractRecent molecular techniques have made it feasible to simulate evolutionary processes and app...
In vivo selections are powerful tools for the directed evolution of enzymes. However, the need to li...
In vivo selections are powerful tools for the directed evolution of enzymes. However, the need to li...
In vivo selections are powerful tools for the directed evolution of enzymes. However, the need to li...
textThe Escherichia coli (E. coli) outer membrane protease OmpT is an endopeptidase of the omptin f...
Proteases, enzymes that catalyze the hydrolysis of amide bonds in peptides and proteins, are ubiquit...
textThe Escherichia coli (E. coli) outer membrane protease OmpT is an endopeptidase of the omptin f...
Versatile selective evolutionary pressure using synthetic defect in universal metabolis
A family of engineered endopeptidases has been created that is capable of cleaving a diverse array o...
textEngineering protease substrate specificity and selectivity has the potential to yield entirely n...
The non-natural needs of industrial applications often require new or improved enzymes. The structur...
The non-natural needs of industrial applications often require new or improved enzymes. The structur...
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...
SummaryWe describe a completely in vitro high-throughput screening system for directed evolution of ...
AbstractRecent molecular techniques have made it feasible to simulate evolutionary processes and app...
In vivo selections are powerful tools for the directed evolution of enzymes. However, the need to li...
In vivo selections are powerful tools for the directed evolution of enzymes. However, the need to li...
In vivo selections are powerful tools for the directed evolution of enzymes. However, the need to li...
textThe Escherichia coli (E. coli) outer membrane protease OmpT is an endopeptidase of the omptin f...
Proteases, enzymes that catalyze the hydrolysis of amide bonds in peptides and proteins, are ubiquit...
textThe Escherichia coli (E. coli) outer membrane protease OmpT is an endopeptidase of the omptin f...
Versatile selective evolutionary pressure using synthetic defect in universal metabolis