SummaryDuring the last 25 years, display techniques such as phage display have become very powerful tools for protein engineering, especially for the selection of monoclonal antibodies. However, while this method is extremely efficient for affinity-based selections, its use for the selection and directed evolution of enzymes is still very restricted. Furthermore, phage display is not suited for the engineering of mammalian proteins that require posttranslational modifications such as glycosylation or membrane anchoring. To circumvent these limitations, we have developed a system in which structurally complex mammalian enzymes are displayed on the surface of retroviruses and encapsulated into droplets of a water-in-oil emulsion. These drople...
Ultrahigh-throughput screening, in which members of enzyme libraries compartmentalized in water-in-o...
The successful creation of custom-made enzymes by directed evolution relies in no small part on scre...
SummarySingle bacterial cells, each expressing a different library variant, were compartmentalized i...
SummaryDuring the last 25 years, display techniques such as phage display have become very powerful ...
The potential for ultrahigh-throughput compartmentalization renders droplet microfluidics an attract...
Le phage display est une méthode généralement utilisée pour l'évolution dirigée de protéines, elle p...
SummaryWe describe a completely in vitro high-throughput screening system for directed evolution of ...
‘Promiscuous’ enzymes possess additional activities in addition to their native ones, challenging th...
The ability to engineer enzymes has wide ranging applications in industry and biotechnology. Recentl...
Ultrahigh-throughput screening, in which members of enzyme libraries compartmentalized in water-in-o...
The development of a method for high-throughput, automated proteomic screening could impact areas ra...
The explosive growth in our knowledge of genomes, proteomes, and metabolomes is driving ever-increas...
SummaryWe demonstrate the utility of a microfluidic platform in which water-in-oil droplet compartme...
A high-throughput method for single cell screening by microfluidic droplet sorting is applied to a w...
The potential for ultrahigh-throughput compartmentalization renders droplet microfluidics an attract...
Ultrahigh-throughput screening, in which members of enzyme libraries compartmentalized in water-in-o...
The successful creation of custom-made enzymes by directed evolution relies in no small part on scre...
SummarySingle bacterial cells, each expressing a different library variant, were compartmentalized i...
SummaryDuring the last 25 years, display techniques such as phage display have become very powerful ...
The potential for ultrahigh-throughput compartmentalization renders droplet microfluidics an attract...
Le phage display est une méthode généralement utilisée pour l'évolution dirigée de protéines, elle p...
SummaryWe describe a completely in vitro high-throughput screening system for directed evolution of ...
‘Promiscuous’ enzymes possess additional activities in addition to their native ones, challenging th...
The ability to engineer enzymes has wide ranging applications in industry and biotechnology. Recentl...
Ultrahigh-throughput screening, in which members of enzyme libraries compartmentalized in water-in-o...
The development of a method for high-throughput, automated proteomic screening could impact areas ra...
The explosive growth in our knowledge of genomes, proteomes, and metabolomes is driving ever-increas...
SummaryWe demonstrate the utility of a microfluidic platform in which water-in-oil droplet compartme...
A high-throughput method for single cell screening by microfluidic droplet sorting is applied to a w...
The potential for ultrahigh-throughput compartmentalization renders droplet microfluidics an attract...
Ultrahigh-throughput screening, in which members of enzyme libraries compartmentalized in water-in-o...
The successful creation of custom-made enzymes by directed evolution relies in no small part on scre...
SummarySingle bacterial cells, each expressing a different library variant, were compartmentalized i...