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Intracellular hemolysin-producing Listeria monocytogenes strains inhibit macrophage-mediated antigen processing
C W Cluff1, M Garcia, H K Ziegler
1Department of Microbiology and Immunology, Emory University School of Medicine, Atlanta, Georgia 30322.
Abstract:
We found that virulent hemolysin-producing (Hly+) Listeria monocytogenes strains inhibit antigen processing and presentation when added to macrophages in vitro. A virulent Hly- bacteria caused little or no inhibition. Live Hly+ bacteria inhibited presentation of both heat-killed L. monocytogenes and ovalbumin. Several observations indicate that hemolysin produced by intracellular bacteria was responsible for the inhibition. First, inhibition was observed even when extracellular bacteria were removed after a brief 10-min bacterial uptake period. Second, inhibition was not prevented by the addition of cholesterol, a substance which inactivates soluble hemolysin. Third, only very high concentrations of soluble hemolysin were inhibitory. Under conditions which inhibit antigen presentation (10(5) per well), macrophages retained normal levels of Ia, maintained normal morphology, and were not permeable when assayed by chromium release. The uptake and catabolism of 35S-labeled live bacteria by macrophages were similar for both Hyl+ and Hly- bacteria. Only a small decrease in uptake and catabolism of surface-iodinated heat-killed L. monocytogenes by macrophages pretreated with inhibitory numbers of live Hly+ bacteria was observed. Additionally, macrophages pretreated with live Hly+ bacteria and fixed 1.5 h later were able to effectively present an ovalbumin peptide (amino acids 323 to 339) to the T-cell hybridoma DO11.10. Hemolysin-producing bacteria inhibited the presentation of antigens that need processing better than they did of antigens that do not require a processing event. Thus, we have demonstrated inhibition of an intracellular antigen processing pathway by hemolysin-producing L. monocytogenes, which may contribute to the virulence of this pathogen.
Insights
Virulent hemolysin-producing Listeria monocytogenes strains block antigen presentation in macrophages. This hemolysin inhibition of intracellular antigen processing may enhance Listeria monocytogenes virulence.
Area of Science:
- Immunology
- Microbiology
- Cell Biology
Background:
- Listeria monocytogenes is an intracellular pathogen.
- Antigen processing and presentation are crucial for adaptive immunity.
- Hemolysin production is a virulence factor in some bacterial pathogens.
Purpose of the Study:
- To investigate the effect of hemolysin-producing Listeria monocytogenes on antigen processing and presentation in macrophages.
- To determine if bacterial hemolysin is responsible for inhibiting antigen presentation.
- To elucidate the role of this inhibition in bacterial virulence.
Main Methods:
- In vitro co-culture of macrophages with virulent (Hly+) and avirulent (Hly-) Listeria monocytogenes.
- Assay of antigen presentation using heat-killed Listeria monocytogenes and ovalbumin.
- Analysis of macrophage integrity, Ia expression, and bacterial uptake/catabolism.
- Use of cholesterol and soluble hemolysin to differentiate mechanisms.
Main Results:
- Virulent Hly+ Listeria monocytogenes significantly inhibited antigen processing and presentation, unlike Hly- strains.
- Inhibition was mediated by hemolysin produced by intracellular bacteria.
- Macrophage function, including Ia expression and membrane integrity, remained largely intact.
- Antigen presentation requiring processing was more affected than presentation of pre-processed peptides.
Conclusions:
- Hemolysin produced by intracellular Listeria monocytogenes actively inhibits antigen processing and presentation pathways within macrophages.
- This inhibition of host immune mechanisms likely contributes to the virulence of Listeria monocytogenes.
- Targeting intracellular antigen processing is a potential virulence strategy for bacterial pathogens.