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Published on: February 22, 2019
Contribution of a Novel Pertussis Toxin-Like Factor in Mediating Persistent Otitis Media
Longhuan Ma1, Colleen Sedney1, Yang Su2
1Department of Infectious Diseases, College of Veterinary Medicine, University of Georgia, Athens, GA, United States.
Abstract:
Chronic otitis media (COM) is the long-term infection and inflammation of the middle ears typically caused by upper respiratory tract pathogens that are able to ascend the Eustachian tube. Our understanding of contributing factors is limited because human otopathogens cannot naturally colonize or persist in the middle ears of mice. We recently described a natural COM in mice caused by Bordetella pseudohinzii and proposed this as an experimental system to study bacterial mechanisms of immune evasion that allow persistent infection of the middle ear. Here we describe a novel pertussis toxin (PTx)-like factor unique to B. pseudohinzii, apparently acquired horizontally, that is associated with its particularly efficient persistence and pathogenesis. The catalytic subunit of this toxin, PsxA, has conserved catalytic sites and substantial predicted structural homology to pertussis toxin catalytic subunit PtxA. Deletion of the gene predicted to encode the catalytic subunit, psxA, resulted in a significant decrease in persistence in the middle ears. The defect was not observed in mice lacking T cells, indicating that PsxA is necessary for persistence only when T cells are present. These results demonstrate the role of a novel putative toxin in the persistence of B. pseudohinzii and its generation of COM. This PsxA-mediated immune evasion strategy may similarly be utilized by human otopathogens, via other PTx-like toxins or alternative mechanisms to disrupt critical T cell functions necessary to clear bacteria from the middle ear. This work demonstrates that this experimental system can allow for the detailed study of general strategies and specific mechanisms that otopathogens use to evade host immune responses to persist in the middle ear to cause COM.
Insights
Researchers discovered a novel toxin, PsxA, in Bordetella pseudohinzii that helps it persist in the middle ear. This toxin is crucial for chronic otitis media (COM) development in the presence of T cells.
Area of Science:
- Microbiology
- Immunology
- Otolaryngology
Background:
- Chronic otitis media (COM) is a persistent middle ear infection with limited understanding of contributing factors.
- Existing mouse models do not fully replicate human middle ear infections by otopathogens.
- Bordetella pseudohinzii naturally causes COM in mice, offering a novel experimental system.
Purpose of the Study:
- To identify bacterial factors contributing to persistent middle ear infections.
- To investigate the role of a novel pertussis toxin (PTx)-like factor in Bordetella pseudohinzii pathogenesis.
- To elucidate bacterial immune evasion mechanisms in chronic otitis media.
Main Methods:
- Identification and characterization of a novel PTx-like factor (PsxA) in B. pseudohinzii.
- Genetic deletion of the psxA gene to assess its role in bacterial persistence.
- Comparative studies in immunocompetent and T cell-deficient mice.
Main Results:
- A novel PTx-like factor, PsxA, was identified in B. pseudohinzii.
- Deletion of psxA significantly reduced bacterial persistence in mouse middle ears.
- The persistence defect due to psxA deletion was only observed in the presence of T cells.
Conclusions:
- PsxA plays a critical role in the persistence of B. pseudohinzii and the development of COM.
- PsxA functions as a bacterial immune evasion mechanism, specifically hindering T cell-mediated clearance.
- This study highlights a novel toxin-mediated strategy for pathogen persistence and provides a valuable model for studying COM pathogenesis.
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