Serine integrases are bacteriophage proteins responsible for integrating the phage genome into that of the host. Synthetic biologists have co-opted these proteins into useful tools for permanent DNA logic, utilizing their specific DNA recombination abilities to build synthetic cell differentiation and genetic memory systems. Each integrase has a specific pair of DNA sequences (attP/attB sites) that it recombines, but multiple identical sites can result in unpredictable recombination. We have developed a way to control integrase activity on identical attP/attB sites by using catalytically dead Cas9 (dCas9) as a programmable binding protein that can compete with integrase for binding to specific attachment sites. Utilizing a plasmid that cont...
The ability to artificially control transcription is essential both to the study of gene function an...
This project examined whether it was possible to create functional hybrid serine integrases – protei...
CRISPR systems build adaptive immunity against mobile genetic elements by DNA capture and integratio...
Serine integrases are bacteriophage proteins responsible for integrating the phage genome into that ...
DNA is a unique molecule that has evolved to serve as the genetic material for life. It seems straig...
Bacteriophage serine integrases are extensively used in biotechnology and synthetic biology for asse...
Due to its long history of industrial applications, extensively studied biology and rapid growth rat...
DNA site-specific recombinases are enzymes (often associated with mobile DNA elements) that catalyse...
Serine integrases are emerging as core tools in synthetic biology and have applications in biotechno...
Clustered regularly interspaced short palindromic repeats (CRISPR) and CRISPR associated (Cas) prote...
Background: Phage-encoded serine integrases, such as φC31 integrase, are widely used for genome engi...
Assembling multiple DNA fragments into functional plasmids is an important and often rate-limiting s...
AbstractWithin the last 25 years, bacteriophage integrases have rapidly risen to prominence as genet...
Within the last 25 years, bacteriophage integrases have rapidly risen to prominence as genetic tools...
Bacteriophage serine integrases catalyze highly specific recombination reactions between defined DNA...
The ability to artificially control transcription is essential both to the study of gene function an...
This project examined whether it was possible to create functional hybrid serine integrases – protei...
CRISPR systems build adaptive immunity against mobile genetic elements by DNA capture and integratio...
Serine integrases are bacteriophage proteins responsible for integrating the phage genome into that ...
DNA is a unique molecule that has evolved to serve as the genetic material for life. It seems straig...
Bacteriophage serine integrases are extensively used in biotechnology and synthetic biology for asse...
Due to its long history of industrial applications, extensively studied biology and rapid growth rat...
DNA site-specific recombinases are enzymes (often associated with mobile DNA elements) that catalyse...
Serine integrases are emerging as core tools in synthetic biology and have applications in biotechno...
Clustered regularly interspaced short palindromic repeats (CRISPR) and CRISPR associated (Cas) prote...
Background: Phage-encoded serine integrases, such as φC31 integrase, are widely used for genome engi...
Assembling multiple DNA fragments into functional plasmids is an important and often rate-limiting s...
AbstractWithin the last 25 years, bacteriophage integrases have rapidly risen to prominence as genet...
Within the last 25 years, bacteriophage integrases have rapidly risen to prominence as genetic tools...
Bacteriophage serine integrases catalyze highly specific recombination reactions between defined DNA...
The ability to artificially control transcription is essential both to the study of gene function an...
This project examined whether it was possible to create functional hybrid serine integrases – protei...
CRISPR systems build adaptive immunity against mobile genetic elements by DNA capture and integratio...