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Quantifying the Cytotoxicity of Staphylococcus aureus Against Human Polymorphonuclear Leukocytes
Published on: January 3, 2020
Staphylococcus aureus Impairs the Function of and Kills Human Dendritic Cells via the LukAB Toxin
Evelien T M Berends1, Xuhui Zheng1, Erin E Zwack1
1Department of Microbiology, New York University School of Medicine, New York, New York, USA.
Abstract:
Staphylococcus aureus is a human pathogen responsible for high morbidity and mortality worldwide. Recurrent infections with this bacterium are common, suggesting that S. aureus thwarts the development of sterilizing immunity. S. aureus strains that cause disease in humans produce up to five different bicomponent toxins (leukocidins) that target and lyse neutrophils, innate immune cells that represent the first line of defense against S. aureus infections. However, little is known about the role of leukocidins in blunting adaptive immunity. Here, we explored the effects of leukocidins on human dendritic cells (DCs), antigen-presenting cells required for the development of adaptive immunity. Using an ex vivo infection model of primary human monocyte-derived dendritic cells, we found that S. aureus, including strains from different clonal complexes and drug resistance profiles, effectively kills DCs despite efficient phagocytosis. Although all purified leukocidins could kill DCs, infections with live bacteria revealed that S. aureus targets and kills DCs primarily via the activity of leukocidin LukAB. Moreover, using coculture experiments performed with DCs and autologous CD4+ T lymphocytes, we found that LukAB inhibits DC-mediated activation and proliferation of primary human T cells. Taken together, the data determined in the study reveal a novel immunosuppressive strategy of S. aureus whereby the bacterium blunts the development of adaptive immunity via LukAB-mediated injury of DCs.IMPORTANCE Antigen-presenting cells such as dendritic cells (DCs) fulfill an indispensable role in the development of adaptive immunity by producing proinflammatory cytokines and presenting microbial antigens to lymphocytes to trigger a faster, specific, and long-lasting immune response. Here, we studied the effect of Staphylococcus aureus toxins on human DCs. We discovered that the leukocidin LukAB hinders the development of adaptive immunity by targeting human DCs. The ability of S. aureus to blunt the function of DCs could help explain the high frequency of recurrent S. aureus infections. Taken together, the results from this study suggest that therapeutically targeting the S. aureus leukocidins may boost effective innate and adaptive immune responses by protecting innate leukocytes, enabling proper antigen presentation and T cell activation.
Insights
Staphylococcus aureus uses the leukocidin LukAB to kill human dendritic cells, hindering adaptive immunity. This discovery explains recurrent infections and suggests targeting LukAB could improve immune responses.
Area of Science:
- Immunology
- Microbiology
- Infectious Diseases
Background:
- Staphylococcus aureus causes significant global morbidity and mortality.
- Recurrent infections suggest S. aureus evades sterilizing immunity.
- Leukocidins, S. aureus toxins, target neutrophils but their role in adaptive immunity is unclear.
Purpose of the Study:
- To investigate the effects of S. aureus leukocidins on human dendritic cells (DCs).
- To determine the role of leukocidins in the evasion of adaptive immunity by S. aureus.
Main Methods:
- Ex vivo infection model using primary human monocyte-derived dendritic cells.
- Coculture experiments with DCs and autologous CD4+ T lymphocytes.
- Analysis of S. aureus strains with different clonal complexes and drug resistance profiles.
Main Results:
- S. aureus effectively kills human DCs, primarily via leukocidin LukAB.
- Purified leukocidins can kill DCs, but live bacteria utilize LukAB for DC targeting.
- LukAB inhibits DC-mediated activation and proliferation of human T cells.
Conclusions:
- S. aureus employs a novel immunosuppressive strategy using LukAB to injure DCs and blunt adaptive immunity.
- This LukAB-mediated DC damage contributes to the high frequency of recurrent S. aureus infections.
- Targeting S. aureus leukocidins may enhance innate and adaptive immune responses, improving treatment outcomes.
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