Mycobacteriophage L5, a temperate phage of the mycobacteria, forms stable lysogens in Mycobacterium smegmatis via site-specific integration of the phage genome. Recombination occurs within specific phage and bacterial attachment sites and is catalyzed by the phage-encoded integrase protein in vivo. We describe here the overexpression and purification of L5 integrase and its ability to mediate integrative recombination in vitro. We find that L5 integrase-mediated recombination is greatly stimulated by extracts of M. smegmatis but not by Escherichia coli extracts, purified E. coli integration host factor, or purified HU, indicating the presence of a novel mycobacterial integration host factor
The well-characterized mycobacteriophage L5 forms stable lysogens in Mycobacterium smegmatis. Establ...
Lysogeny is a defining feature of temperate bacteriophages. Temperate bacteriophages are able to est...
Bacterial integration host factors (IHFs) play central roles in the cellular processes of recombinat...
Mycobacteriophage L5, a temperate phage of the mycobacteria, forms stable lysogens in Mycobacterium ...
Mycobacteriophage L5, a temperate phage of the mycobacteria, forms stable lysogens in Mycobacterium ...
Mycobacteriophage D29 is a lytic phage that infects both fast- and slow- growing species of the myco...
Mycobacteriophage D29 is a lytic phage that infects both fast- and slow-growing species of the mycob...
The temperate mycobacteriophage L5 integrates site specifically into the genomes of Mycobacterium sm...
Mycobacteriophage D29 is a lytic phage that infects both fast- and slow-growing species of the mycob...
Mycobacteriophage L5 is a temperate phage that forms lysogens in Mycobacterium smegmatis. These lyso...
The temperate mycobacteriophage L5 integrates site specifically into the genomes of Mycobacterium sm...
Lysogenization of mycobacteriophage L5 involves integration of the phage genome into the Mycobacteri...
Mycobacteriophage L5 is a temperate phage that forms lysogens in Mycobacterium smegmatis. These lyso...
Site-specific recombination is responsible for a broad range of biological phenomena, including DNA ...
Lysogenization of mycobacteriophage L5 involves integration of the phage genome into the Mycobacteri...
The well-characterized mycobacteriophage L5 forms stable lysogens in Mycobacterium smegmatis. Establ...
Lysogeny is a defining feature of temperate bacteriophages. Temperate bacteriophages are able to est...
Bacterial integration host factors (IHFs) play central roles in the cellular processes of recombinat...
Mycobacteriophage L5, a temperate phage of the mycobacteria, forms stable lysogens in Mycobacterium ...
Mycobacteriophage L5, a temperate phage of the mycobacteria, forms stable lysogens in Mycobacterium ...
Mycobacteriophage D29 is a lytic phage that infects both fast- and slow- growing species of the myco...
Mycobacteriophage D29 is a lytic phage that infects both fast- and slow-growing species of the mycob...
The temperate mycobacteriophage L5 integrates site specifically into the genomes of Mycobacterium sm...
Mycobacteriophage D29 is a lytic phage that infects both fast- and slow-growing species of the mycob...
Mycobacteriophage L5 is a temperate phage that forms lysogens in Mycobacterium smegmatis. These lyso...
The temperate mycobacteriophage L5 integrates site specifically into the genomes of Mycobacterium sm...
Lysogenization of mycobacteriophage L5 involves integration of the phage genome into the Mycobacteri...
Mycobacteriophage L5 is a temperate phage that forms lysogens in Mycobacterium smegmatis. These lyso...
Site-specific recombination is responsible for a broad range of biological phenomena, including DNA ...
Lysogenization of mycobacteriophage L5 involves integration of the phage genome into the Mycobacteri...
The well-characterized mycobacteriophage L5 forms stable lysogens in Mycobacterium smegmatis. Establ...
Lysogeny is a defining feature of temperate bacteriophages. Temperate bacteriophages are able to est...
Bacterial integration host factors (IHFs) play central roles in the cellular processes of recombinat...