ExoS Effector in Pseudomonas aeruginosa Hyperactive Type III Secretion System Mutant Promotes Enhanced Plasma
Arianna D Reuven1, Bethany W Mwaura1, James B Bliska1
1Department of Microbiology and Immunology, Geisel School of Medicine at Dartmouth College, Hanover, NH, USA.
Abstract:
Pseudomonas aeruginosa is an opportunistic bacterial pathogen responsible for a large percentage of airway infections that cause morbidity and mortality in immunocompromised patients, especially those with cystic fibrosis (CF). One important P. aeruginosa virulence factor is a type III secretion system (T3SS) that translocates effectors into host cells. ExoS is a T3SS effector with ADP ribosyltransferase (ADPRT) activity. The ADPRT activity of ExoS promotes P. aeruginosa virulence by inhibiting phagocytosis and limiting the oxidative burst in neutrophils. The P. aeruginosa T3SS also translocates flagellin, which can activate the NLRC4 inflammasome, resulting in: 1) gasdermin-D (GSDMD) pores, release of IL-1β and pyroptosis; and 2) histone 3 citrullination (CitH3) and decondensation and expansion of nuclear DNA into the cytosol. However, recent studies with the P. aeruginosa laboratory strain PAO1 indicate that ExoS ADPRT activity inhibits activation of the NLRC4 inflammasome in neutrophils. Here, an ExoS+ CF clinical isolate of P. aeruginosa with a hyperactive T3SS was identified. Variants of the hyperactive T3SS mutant or PAO1 were used to infect neutrophils from C57BL/6 mice or mice engineered to have a CF genotype or a defect in inflammasome assembly. Responses to NLRC4 inflammasome assembly or ExoS ADPRT activity were assayed, results of which were found to be similar for C57BL/6 or CF neutrophils. The hyperactive T3SS mutant had enhanced resistance to neutrophil killing, like previously identified hypervirulent P. aeruginosa isolates. ExoS ADPRT activity in the hyperactive T3SS mutant regulated inflammasome and nuclear DNA decondensation responses like PAO1 but promoted enhanced CitH3 and plasma membrane rupture (PMR). Glycine supplementation inhibited PMR caused by the hyperactive T3SS mutant, suggesting ninjurin-1 is required for this process. These results identify enhanced neutrophil PMR as a pathogenic activity of ExoS ADPRT in a hypervirulent P. aeruginosa isolate.
Insights
Pseudomonas aeruginosa
Area of Science:
- Microbiology
- Immunology
- Pathogenesis
Background:
- Pseudomonas aeruginosa is a major cause of opportunistic infections, particularly in cystic fibrosis patients.
- The type III secretion system (T3SS) and its effector ExoS are key virulence factors.
- ExoS inhibits host immune responses like phagocytosis and the oxidative burst.
Purpose of the Study:
- To investigate the role of ExoS ADP ribosyltransferase (ADPRT) activity in a hypervirulent P. aeruginosa isolate.
- To determine the impact of ExoS on NLRC4 inflammasome activation and neutrophil responses.
- To explore mechanisms of neutrophil damage caused by hypervirulent P. aeruginosa.
Main Methods:
- Infection of neutrophils with P. aeruginosa strains (PAO1 and a hypervirulent CF isolate).
- Utilized wild-type and genetically modified mice (CF genotype, inflammasome-deficient).
- Assayed NLRC4 inflammasome activation, histone citrullination (CitH3), nuclear DNA decondensation, and plasma membrane rupture (PMR).
Main Results:
- A hypervirulent P. aeruginosa isolate with a hyperactive T3SS exhibited enhanced resistance to neutrophil killing.
- ExoS ADPRT activity in this isolate promoted histone H3 citrullination and plasma membrane rupture (PMR).
- Glycine supplementation inhibited PMR, suggesting ninjurin-1 involvement.
Conclusions:
- Enhanced neutrophil PMR is a novel pathogenic mechanism of ExoS ADPRT in hypervirulent P. aeruginosa.
- ExoS contributes to immune evasion and host cell damage.
- Ninjurin-1 may be a target for therapeutic intervention against P. aeruginosa infections.
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