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YopH inhibits early pro-inflammatory cytokine responses during plague pneumonia
Angelene M Cantwell1, Sarah S Bubeck, Peter H Dube
1Department of Microbiology and Immunology, The University of Texas Health Science Center at San Antonio, San Antonio, TX 78229, USA.
Background:
Yersinia pestis is the causative agent of pneumonic plague; recently, we and others reported that during the first 24-36 hours after pulmonary infection with Y. pestis pro-inflammatory cytokine expression is undetectable in lung tissues.
Results:
Here, we report that, intranasal infection of mice with CO92 delta yopH mutant results in an early pro-inflammatory response in the lungs characterized by an increase in the pro-inflammatory cytokines Tumor Necrosis Factor-alpha and Interleukin one-beta 24 hours post-infection. CO92 delta yopH colonizes the lung but does not disseminate to the liver or spleen and is cleared from the host within 72 hours post-infection. This is different from what is observed in a wild-type CO92 infection, where pro-inflammatory cytokine expression and immune cell infiltration into the lungs is not detectable until 36-48 h post-infection. CO92 rapidly disseminates to the liver and spleen resulting in high bacterial burdens in these tissues ultimately cumulating in death 72-94 h post-infection. Mice deficient in TNF-alpha are more susceptible to CO92 delta yopH infection with 40% of the mice succumbing to infection.
Conclusions:
Altogether, our results suggest that YopH can inhibit an early pro-inflammatory response in the lungs of mice and that this is an important step in the pathogenesis of infection.
Insights
Yersinia pestis YopH protein prevents early lung inflammation during pneumonic plague. Blocking YopH triggers an early immune response, revealing its role in disease development.
Area of Science:
- Microbiology
- Immunology
- Pathogenesis
Background:
- Yersinia pestis causes pneumonic plague.
- Early stages of infection show no detectable pro-inflammatory cytokines in lung tissue.
Purpose of the Study:
- Investigate the role of YopH in Yersinia pestis pathogenesis.
- Determine YopH's effect on early immune responses in the lungs.
Main Methods:
- Intranasal infection of mice with Y. pestis CO92 delta yopH mutant.
- Monitoring pro-inflammatory cytokine (TNF-alpha, IL-1beta) levels.
- Assessing bacterial dissemination and host survival.
Main Results:
- CO92 delta yopH induced early lung inflammation (TNF-alpha, IL-1beta) within 24 hours.
- The mutant colonized lungs but did not disseminate, and was cleared within 72 hours.
- Mice lacking TNF-alpha were more susceptible to CO92 delta yopH infection.
Conclusions:
- YopH inhibits early pro-inflammatory responses in the lungs during Y. pestis infection.
- This inhibition is a critical factor in the pathogenesis of pneumonic plague.
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Acute pharyngitis is the inflammation of the back of the throat (pharynx), commonly resulting in a sore throat. It is a frequently encountered condition that prompts individuals to seek medical advice.
Classification
Acute pharyngitis can be categorized based on its underlying cause:
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