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Bone Marrow-derived Macrophage Production
Published on: November 22, 2013
Bordetella parapertussis survives inside human macrophages in lipid raft-enriched phagosomes
Juan Gorgojo1, Eric T Harvill2, Maria Eugenia Rodríguez3
1CINDEFI (UNLP CONICET La Plata), Facultad de Ciencias Exactas, Universidad Nacional de La Plata, La Plata, Argentina.
Abstract:
Bordetella parapertussis is a human pathogen that causes whooping cough. The increasing incidence of B. parapertussis has been attributed to the lack of cross protection induced by pertussis vaccines. It was previously shown that B. parapertussis is able to avoid bacterial killing by polymorphonuclear leukocytes (PMN) if specific opsonic antibodies are not present at the site of interaction. Here, we evaluated the outcome of B. parapertussis innate interaction with human macrophages, a less aggressive type of cell and a known reservoir of many persistent pathogens. The results showed that in the absence of opsonins, O antigen allows B. parapertussis to inhibit phagolysosomal fusion and to remain alive inside macrophages. The O antigen targets B. parapertussis to lipid rafts that are retained in the membrane of phagosomes that do not undergo lysosomal maturation. Forty-eight hours after infection, wild-type B. parapertussis bacteria but not the O antigen-deficient mutants were found colocalizing with lipid rafts and alive in nonacidic compartments. Taken together, our data suggest that in the absence of opsonic antibodies, B. parapertussis survives inside macrophages by preventing phagolysosomal maturation in a lipid raft- and O antigen-dependent manner. Two days after infection, about 15% of macrophages were found loaded with live bacteria inside flotillin-enriched phagosomes that had access to nutrients provided by the host cell recycling pathway, suggesting the development of an intracellular infection. IgG opsonization drastically changed this interaction, inducing efficient bacterial killing. These results highlight the need for B. parapertussis opsonic antibodies to induce bacterial clearance and prevent the eventual establishment of cellular reservoirs of this pathogen.
Insights
Bordetella parapertussis evades immune cells by preventing phagolysosomal fusion within macrophages, utilizing its O antigen and lipid rafts. Opsonic antibodies are crucial for clearing this whooping cough pathogen and preventing intracellular reservoirs.
Area of Science:
- Immunology
- Microbiology
- Cell Biology
Background:
- Bordetella parapertussis causes whooping cough, with increasing incidence linked to inadequate vaccine cross-protection.
- This pathogen can evade polymorphonuclear leukocytes (PMNs) without opsonic antibodies.
Purpose of the Study:
- To investigate the interaction between B. parapertussis and human macrophages, focusing on innate immune responses.
- To determine the role of O antigen and lipid rafts in B. parapertussis survival within macrophages.
Main Methods:
- In vitro infection of human macrophages with wild-type and O antigen-deficient B. parapertussis.
- Analysis of phagolysosomal fusion, bacterial survival, and colocalization with lipid rafts.
- Assessment of the impact of IgG opsonization on bacterial clearance.
Main Results:
- In the absence of opsonins, B. parapertussis inhibits phagolysosomal fusion and survives within macrophages.
- The O antigen targets bacteria to lipid rafts, preventing phagosome maturation and acidification.
- Wild-type bacteria, but not O antigen mutants, were found alive in nonacidic, lipid raft-associated compartments 48 hours post-infection.
- Approximately 15% of macrophages harbored live bacteria in flotillin-enriched phagosomes, indicating intracellular infection.
Conclusions:
- B. parapertussis survives intracellularly in macrophages by preventing phagolysosomal maturation via O antigen and lipid raft mechanisms.
- Opsonic antibodies, particularly IgG, are essential for efficient clearance of B. parapertussis and prevention of intracellular reservoirs.

