Related Experiment Video
Updated: May 26, 2026

Site-specific Bacterial Chromosome Engineering: ΦC31 Integrase Mediated Cassette Exchange (IMCE)
Published on: March 16, 2012
Analysis of the site-specific integration system of the Streptomyces aureofaciens phage μ1/6
Jarmila Farkašovská1, Andrej Godány
1Institute of Molecular Biology, Slovak Academy of Sciences, Bratislava, Slovak Republic. jarmila.farkasovska@savba.sk
Abstract:
The bacteriophage μ1/6 integrates its DNA into the chromosome of tetracycline producing strains of Streptomyces aureofaciens by a site-specific recombination process. A bioinformatic analysis of the μ1/6 genome revealed that orf5 encodes a putative integrase, a basic protein of 416 amino acids. The μ1/6 integrase was found to belong to the integrase family of site-specific tyrosine recombinases. The phage attachment site (attP) was localized downstream of the int gene. The attachment junctions (attL and attR) were determined, allowing identification of the bacterial attachment site (attB). All attachment sites shared a 46-bp common core sequence within which a site-specific recombination occurs. This core sequence comprises the 3' end of a putative tRNA(Thr) gene (anticodon TGT) which is completely restored in attL after integration of the phage into the host genome. An integration vector containing μ1/6 int-attP region was inserted stably into the S. aureofaciens B96, S. lividans TK24, and S. coelicolor A3. The μ1/6 integrase was shown to be functional in vivo in heterologous Escherichia coli without any other factors encoded by Streptomyces. In vitro recombination assay using purified μ1/6 integrase demonstrated its ability to catalyze integrative recombination in the presence of a crude extract of E. coli cells.
Insights
The bacteriophage μ1/6 uses a specific recombination process to integrate its DNA into Streptomyces chromosomes. Its integrase enzyme functions in various bacteria, aiding phage integration studies.
Area of Science:
- Microbiology
- Molecular Biology
- Genetics
Background:
- Bacteriophages are viruses that infect bacteria.
- Site-specific recombination is a mechanism for DNA integration.
- Streptomyces are important antibiotic-producing bacteria.
Purpose of the Study:
- To investigate the DNA integration mechanism of bacteriophage μ1/6 into Streptomyces.
- To characterize the μ1/6 integrase and its attachment sites.
- To assess the functionality of the μ1/6 integrase in different hosts.
Main Methods:
- Bioinformatic analysis of the μ1/6 genome.
- Identification and characterization of phage (attP) and bacterial (attB) attachment sites.
- In vivo and in vitro recombination assays.
Main Results:
- orf5 encodes a putative integrase belonging to the tyrosine recombinase family.
- A 46-bp core sequence common to attP, attL, and attR was identified.
- The core sequence is part of a tRNA(Thr) gene, restored after integration.
- The μ1/6 integrase is functional in heterologous hosts like E. coli.
Conclusions:
- Bacteriophage μ1/6 integrates via site-specific recombination mediated by its integrase.
- The integrase functions across different bacterial species, including heterologous systems.
- This provides a tool for genetic manipulation in Streptomyces.

