Serine integrases catalyse site-specific recombination to integrate and excise bacteriophage genomes into and out of their host's genome. These enzymes exhibit remarkable directionality; in the presence of the integrase alone, recombination between attP and attB DNA sites is efficient and irreversible, giving attL and attR products which do not recombine further. However, in the presence of the bacteriophage-encoded recombination directionality factor (RDF), integrase efficiently promotes recombination between attL and attR to re-form attP and attB. The DNA substrates and products of both reactions are approximately isoenergetic, and no cofactors (such as adenosine triphosphate) are required for recombination. The thermodynamic driving forc...
Abstract Background A large subfamily of serine recombinases contains long polypeptide segments appe...
Similarity between the DNA substrates and products of integrase-mediated site-specific recombination...
Due to its long history of industrial applications, extensively studied biology and rapid growth rat...
Serine integrases catalyse site-specific recombination to integrate and excise bacteriophage genomes...
Serine integrases, DNA site-specific recombinases used by bacteriophages for integration and excisio...
Serine integrases, DNA site-specific recombinases used by bacteriophages for integration and excisio...
Bacteriophage serine integrases are extensively used in biotechnology and synthetic biology for asse...
To establish a prophage state, the genomic DNA of temperate bacteriophages normally becomes integrat...
Mycobacteriophage Bxb1 integrates its DNA at the attB site of the Mycobacterium smegmatis genome usi...
Assembling multiple DNA fragments into functional plasmids is an important and often rate-limiting s...
Bacteriophage-encoded serine-integrases are members of the large family of serine-recombinases and c...
Bacteriophage-encoded serine-integrases are members of the large family of serine-recombinases and c...
DNA site-specific recombinases are enzymes (often associated with mobile DNA elements) that catalyse...
Integrases, such as that of the Streptomyces temperate bacteriophage ϕC31, promote site-specific rec...
<div><p><i>Streptomyces</i> phage φBT1 integrates its genome into the <i>attB</i> site of the host c...
Abstract Background A large subfamily of serine recombinases contains long polypeptide segments appe...
Similarity between the DNA substrates and products of integrase-mediated site-specific recombination...
Due to its long history of industrial applications, extensively studied biology and rapid growth rat...
Serine integrases catalyse site-specific recombination to integrate and excise bacteriophage genomes...
Serine integrases, DNA site-specific recombinases used by bacteriophages for integration and excisio...
Serine integrases, DNA site-specific recombinases used by bacteriophages for integration and excisio...
Bacteriophage serine integrases are extensively used in biotechnology and synthetic biology for asse...
To establish a prophage state, the genomic DNA of temperate bacteriophages normally becomes integrat...
Mycobacteriophage Bxb1 integrates its DNA at the attB site of the Mycobacterium smegmatis genome usi...
Assembling multiple DNA fragments into functional plasmids is an important and often rate-limiting s...
Bacteriophage-encoded serine-integrases are members of the large family of serine-recombinases and c...
Bacteriophage-encoded serine-integrases are members of the large family of serine-recombinases and c...
DNA site-specific recombinases are enzymes (often associated with mobile DNA elements) that catalyse...
Integrases, such as that of the Streptomyces temperate bacteriophage ϕC31, promote site-specific rec...
<div><p><i>Streptomyces</i> phage φBT1 integrates its genome into the <i>attB</i> site of the host c...
Abstract Background A large subfamily of serine recombinases contains long polypeptide segments appe...
Similarity between the DNA substrates and products of integrase-mediated site-specific recombination...
Due to its long history of industrial applications, extensively studied biology and rapid growth rat...