The Mla pathway is critical for Pseudomonas aeruginosa resistance to outer membrane permeabilization and host innate
Jason Munguia1,2, Doris L LaRock1, Hannah Tsunemoto3
1Department of Pediatrics, University of California San Diego, La Jolla, CA, USA.
Abstract:
Pseudomonas aeruginosa is an important opportunistic pathogen that has become a serious problem due to increased rates of antibiotic resistance. Due to this along with a dearth in novel antibiotic development, especially against Gram-negative pathogens, new therapeutic strategies are needed to prevent a post-antibiotic era. Here, we describe the importance of the vacJ/Mla pathway in resisting bactericidal actions of the host innate immune response. P. aeruginosa tn5 transposon mutants in genes from the VacJ/Mla pathway showed increased susceptibility to killing by the host cathelicidin antimicrobial peptide, LL-37, when compared to the wild-type parent strain. The P. aeruginosa vacJ - mutant demonstrated increased membrane permeability upon damage as well as sensitivity to killing in the presence of the detergent sodium dodecyl sulfate and the divalent cation chelator EDTA. When exposed to human whole blood and serum complement, the vacJ - mutant was killed more rapidly when compared to the wild-type parent strain and complemented mutant. Finally, in an in vivo mouse lung infection model, infection with the vacJ - mutant resulted in reduced mortality, lower bacterial burden, and reduced lung damage when compared to the wild-type strain. This study highlights the potential in therapeutically targeting the VacJ/Mla pathway in sensitizing P. aeruginosa to killing by the host innate immune response.
Key Messages:
• The Mla pathway regulates outer membrane dynamics in human pathogen Pseudomonas aeruginosa (PA). • Disruption of Mla pathway gene vacJ sensitizes PA to host cathelicidin antimicrobial peptide LL-37. • Loss of vacJ expression renders PA more sensitive to human whole blood and serum killing. • Loss of vacJ expression reduces PA survival and virulence in a murine lung infection model. • The Mla pathway merits exploration as a pharmacologic target to sensitize PA to host innate immunity.
Insights
Targeting the VacJ/Mla pathway in Pseudomonas aeruginosa increases susceptibility to host defenses. Disrupting this pathway sensitizes the pathogen to antimicrobial peptides and immune responses, reducing infection severity in mice.
Area of Science:
- Microbiology
- Immunology
- Pathogen Biology
Background:
- Pseudomonas aeruginosa is a significant opportunistic pathogen with rising antibiotic resistance.
- Novel therapeutic strategies are crucial to combat Gram-negative bacterial infections and prevent a post-antibiotic era.
- The VacJ/Mla pathway's role in P. aeruginosa's resistance to host innate immunity requires further investigation.
Purpose of the Study:
- To investigate the function of the VacJ/Mla pathway in P. aeruginosa's resistance to host immune mechanisms.
- To assess the impact of VacJ/Mla pathway disruption on bacterial susceptibility to antimicrobial peptides and serum.
- To evaluate the therapeutic potential of targeting the VacJ/Mla pathway in a P. aeruginosa infection model.
Main Methods:
- Generated P. aeruginosa transposon mutants in VacJ/Mla pathway genes.
- Assessed mutant susceptibility to cathelicidin antimicrobial peptide LL-37.
- Measured membrane permeability using detergent and chelator sensitivity assays.
- Evaluated bacterial survival in human whole blood and serum.
- Infected mice with wild-type and mutant strains to assess virulence in a lung infection model.
Main Results:
- VacJ/Mla pathway mutants exhibited increased susceptibility to LL-37 killing.
- The vacJ mutant showed enhanced membrane permeability and sensitivity to sodium dodecyl sulfate and EDTA.
- The vacJ mutant was rapidly killed by human whole blood and serum complement.
- Infection with the vacJ mutant led to reduced mortality, bacterial load, and lung damage in mice.
Conclusions:
- The VacJ/Mla pathway is critical for P. aeruginosa's resistance to host innate immune responses.
- Disruption of the VacJ/Mla pathway sensitizes P. aeruginosa to antimicrobial peptides, serum, and complement.
- Targeting the VacJ/Mla pathway represents a promising therapeutic strategy to enhance P. aeruginosa killing by the host immune system.
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