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A Genetic Screen to Isolate Toxoplasma gondii Host-cell Egress Mutants
Published on: February 8, 2012
Large-scale screening of a targeted Enterococcus faecalis mutant library identifies envelope fitness factors
Lionel Rigottier-Gois1, Adriana Alberti, Armel Houel
1INRA, UMR1319 Micalis, Jouy-en-Josas, France.
Abstract:
Spread of antibiotic resistance among bacteria responsible for nosocomial and community-acquired infections urges for novel therapeutic or prophylactic targets and for innovative pathogen-specific antibacterial compounds. Major challenges are posed by opportunistic pathogens belonging to the low GC% gram-positive bacteria. Among those, Enterococcus faecalis is a leading cause of hospital-acquired infections associated with life-threatening issues and increased hospital costs. To better understand the molecular properties of enterococci that may be required for virulence, and that may explain the emergence of these bacteria in nosocomial infections, we performed the first large-scale functional analysis of E. faecalis V583, the first vancomycin-resistant isolate from a human bloodstream infection. E. faecalis V583 is within the high-risk clonal complex 2 group, which comprises mostly isolates derived from hospital infections worldwide. We conducted broad-range screenings of candidate genes likely involved in host adaptation (e.g., colonization and/or virulence). For this purpose, a library was constructed of targeted insertion mutations in 177 genes encoding putative surface or stress-response factors. Individual mutants were subsequently tested for their i) resistance to oxidative stress, ii) antibiotic resistance, iii) resistance to opsonophagocytosis, iv) adherence to the human colon carcinoma Caco-2 epithelial cells and v) virulence in a surrogate insect model. Our results identified a number of factors that are involved in the interaction between enterococci and their host environments. Their predicted functions highlight the importance of cell envelope glycopolymers in E. faecalis host adaptation. This study provides a valuable genetic database for understanding the steps leading E. faecalis to opportunistic virulence.
Insights
This study investigated Enterococcus faecalis virulence by analyzing gene mutations. Key factors involved in host adaptation and opportunistic infections were identified, highlighting cell envelope importance.
Area of Science:
- Microbiology
- Genetics
- Infectious Diseases
Background:
- Antibiotic resistance in nosocomial and community-acquired infections necessitates new therapeutic targets.
- Opportunistic pathogens, particularly low GC% Gram-positive bacteria like Enterococcus faecalis, pose significant challenges.
- Enterococcus faecalis is a major cause of hospital-acquired infections, leading to severe health issues and increased healthcare costs.
Purpose of the Study:
- To understand the molecular basis of Enterococcus faecalis virulence and its emergence in nosocomial infections.
- To perform the first large-scale functional analysis of the vancomycin-resistant E. faecalis V583 strain.
- To identify genes crucial for host adaptation, including colonization and virulence.
Main Methods:
- Construction of a targeted insertion mutation library in 177 genes of E. faecalis V583, encoding putative surface or stress-response factors.
- Screening of mutants for resistance to oxidative stress and antibiotics.
- Assessment of resistance to opsonophagocytosis, adherence to Caco-2 epithelial cells, and virulence in a surrogate insect model.
Main Results:
- Identification of several factors involved in the interaction between Enterococcus faecalis and host environments.
- Highlighting the significant role of cell envelope glycopolymers in E. faecalis host adaptation.
- Discovery of novel insights into the genetic basis of E. faecalis opportunistic virulence.
Conclusions:
- The study provides a valuable genetic resource for understanding Enterococcus faecalis virulence.
- Identified factors are critical for host-pathogen interactions and adaptation.
- Findings pave the way for developing novel therapeutic and prophylactic strategies against E. faecalis infections.

