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Updated: Jun 2, 2026

Site-specific Bacterial Chromosome Engineering: ΦC31 Integrase Mediated Cassette Exchange (IMCE)
Published on: March 16, 2012
Intra- and interspecies genomic transfer of the Enterococcus faecalis pathogenicity island
Jenny A Laverde Gomez1, Antoni P A Hendrickx, Rob J Willems
1Wernigerode Branch, Robert Koch Institute, Wernigerode, Germany.
Abstract:
Enterococci are the third leading cause of hospital associated infections and have gained increased importance due to their fast adaptation to the clinical environment by acquisition of antibiotic resistance and pathogenicity traits. Enterococcus faecalis harbours a pathogenicity island (PAI) of 153 kb containing several virulence factors including the enterococcal surface protein (esp). Until now only internal fragments of the PAI or larger chromosomal regions containing it have been transferred. Here we demonstrate precise excision, circularization and horizontal transfer of the entire PAI element from the chromosome of E. faecalis strain UW3114. This PAI (ca. 200 kb) contained some deletions and insertions as compared to the PAI of the reference strain MMH594, transferred precisely and integrated site-specifically into the chromosome of E. faecalis (intergenic region) and Enterococcus faecium (tRNAlys). The internal PAI structure was maintained after transfer. We assessed phenotypic changes accompanying acquisition of the PAI and expression of some of its determinants. The esp gene is expressed on the surface of donor and both transconjugants. Biofilm formation and cytolytic activity were enhanced in E. faecalis transconjugants after acquisition of the PAI. No differences in pathogenicity of E. faecalis were detected using a mouse bacteraemia and a mouse peritonitis models (tail vein and intraperitoneal injection). A 66 kb conjugative pheromone-responsive plasmid encoding erm(B) (pLG2) that was transferred in parallel with the PAI was sequenced. pLG2 is a pheromone responsive plasmid that probably promotes the PAI horizontal transfer, encodes antibiotic resistance features and contains complete replication and conjugation modules of enterococcal origin in a mosaic-like composition. The E. faecalis PAI can undergo precise intra- and interspecies transfer probably with the help of conjugative elements like conjugative resistance plasmids, supporting the role of horizontal gene transfer and antibiotic selective pressure in the successful establishment of certain enterococci as nosocomial pathogens.
Insights
The entire Enterococcus faecalis pathogenicity island (PAI) can transfer between bacteria, enhancing virulence. This horizontal gene transfer, aided by plasmids, contributes to enterococci becoming major hospital pathogens.
Area of Science:
- Microbiology
- Genetics
- Infectious Diseases
Background:
- Enterococci are significant causes of hospital-associated infections.
- They rapidly acquire antibiotic resistance and virulence traits.
- Pathogenicity islands (PAIs) contribute to enterococcal virulence.
Purpose of the Study:
- To investigate the horizontal transfer of the entire Enterococcus faecalis pathogenicity island (PAI).
- To assess phenotypic changes and pathogenicity following PAI acquisition.
- To characterize the role of conjugative plasmids in PAI transfer.
Main Methods:
- Demonstration of precise excision, circularization, and horizontal transfer of a ~200 kb PAI.
- Site-specific integration into recipient E. faecalis and Enterococcus faecium chromosomes.
- Assessment of phenotypic changes (biofilm, cytolysis) and pathogenicity in mouse models.
- Sequencing of a co-transferred conjugative plasmid (pLG2).
Main Results:
- The entire E. faecalis PAI was transferred precisely and integrated site-specifically.
- PAI acquisition enhanced biofilm formation and cytolytic activity in E. faecalis.
- The enterococcal surface protein (esp) gene was expressed on transconjugant surfaces.
- A 66 kb conjugative plasmid (pLG2) encoding erm(B) was co-transferred and likely facilitated PAI transfer.
Conclusions:
- The E. faecalis PAI can undergo precise intra- and interspecies transfer, likely aided by conjugative plasmids.
- Horizontal gene transfer and antibiotic selective pressure are key to enterococci establishing as nosocomial pathogens.
- Understanding PAI transfer mechanisms is crucial for combating hospital-acquired infections.
Related Concept Videos
Bacterial Gastroenteritis
Conjugation
Transduction
Types of Genetic Transfer Between Organisms
Types of Genetic Transfer Between Organisms
Horizontal Gene Transfer

