Serine integrases are emerging as core tools in synthetic biology and have applications in biotechnology and genome engineering. We have designed a split-intein serine integrase-based system with potential for regulation of site-specific recombination events at the protein level in vivo. The ϕC31 integrase was split into two extein domains, and intein sequences (Npu DnaEN and Ssp DnaEC) were attached to the two termini to be fused. Expression of these two components followed by post-translational protein trans-splicing in Escherichia coli generated a fully functional ϕC31 integrase. We showed that protein splicing is necessary for recombination activity; deletion of intein domains or mutation of key intein residues inactivated recombination...
Split inteins are powerful tools for seamless ligation of synthetic split proteins. Yet, their use r...
Conditional protein splicing is a powerful biotechnological tool that can be used to rapidly and pos...
Chromosomal integration of biosynthetic pathways for the biotechnological production of high-value c...
Serine integrases are emerging as core tools in synthetic biology and have applications in biotechno...
Bacteriophage serine integrases are extensively used in biotechnology and synthetic biology for asse...
This project examined whether it was possible to create functional hybrid serine integrases – protei...
Serine integrases, DNA site-specific recombinases used by bacteriophages for integration and excisio...
Assembling multiple DNA fragments into functional plasmids is an important and often rate-limiting s...
DNA site-specific recombinases are enzymes (often associated with mobile DNA elements) that catalyse...
Serine integrases, DNA site-specific recombinases used by bacteriophages for integration and excisio...
Serine integrases are bacteriophage proteins responsible for integrating the phage genome into that ...
Due to its long history of industrial applications, extensively studied biology and rapid growth rat...
Background: Phage-encoded serine integrases, such as φC31 integrase, are widely used for genome engi...
Background: Protein trans-splicing by naturally occurring split DnaE inteins is used for protein lig...
Assembling multiple DNA fragments into functional plasmids is an important and often rate-limiting s...
Split inteins are powerful tools for seamless ligation of synthetic split proteins. Yet, their use r...
Conditional protein splicing is a powerful biotechnological tool that can be used to rapidly and pos...
Chromosomal integration of biosynthetic pathways for the biotechnological production of high-value c...
Serine integrases are emerging as core tools in synthetic biology and have applications in biotechno...
Bacteriophage serine integrases are extensively used in biotechnology and synthetic biology for asse...
This project examined whether it was possible to create functional hybrid serine integrases – protei...
Serine integrases, DNA site-specific recombinases used by bacteriophages for integration and excisio...
Assembling multiple DNA fragments into functional plasmids is an important and often rate-limiting s...
DNA site-specific recombinases are enzymes (often associated with mobile DNA elements) that catalyse...
Serine integrases, DNA site-specific recombinases used by bacteriophages for integration and excisio...
Serine integrases are bacteriophage proteins responsible for integrating the phage genome into that ...
Due to its long history of industrial applications, extensively studied biology and rapid growth rat...
Background: Phage-encoded serine integrases, such as φC31 integrase, are widely used for genome engi...
Background: Protein trans-splicing by naturally occurring split DnaE inteins is used for protein lig...
Assembling multiple DNA fragments into functional plasmids is an important and often rate-limiting s...
Split inteins are powerful tools for seamless ligation of synthetic split proteins. Yet, their use r...
Conditional protein splicing is a powerful biotechnological tool that can be used to rapidly and pos...
Chromosomal integration of biosynthetic pathways for the biotechnological production of high-value c...