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Tpl2 promotes neutrophil trafficking, oxidative burst, and bacterial killing
Nicole V Acuff1, Xin Li1, Jessica Elmore1
1Department of Infectious Diseases, University of Georgia, Athens, Georgia, USA.
Abstract:
Tumor progression locus 2 (Tpl2) is a serine/threonine kinase that promotes inflammatory cytokine production by activating the MEK/ERK pathway. Tpl2 has been shown to be important for eliciting the inflammatory properties of macrophages; however, there is relatively little known about the contribution of Tpl2 to neutrophil effector functions. This is an important consideration, as neutrophils provide the first line of defense against infection in the innate immune system. We found that Tpl2 is expressed in both human and murine neutrophils, suggesting a potential function for Tpl2 in this lineage. Despite significantly higher proportions of bone marrow (BM) neutrophils in Tpl2-deficient (Tpl2 ) mice compared with wild-type (WT) mice, Tpl2 mice have significantly reduced proportions of circulating neutrophils. Tpl2 neutrophils show impaired recruitment to thioglycollate, which was primarily a result of neutrophil-extrinsic factors in the host. In response to infection, neutrophils secrete inflammatory cytokines and produce reactive oxygen species (ROS), which promote bacterial killing. Tpl2 ablation impaired neutrophil TNF secretion in response to LPS stimulation, superoxide generation in response to the chemotactic peptide fMLP, and killing of the extracellular bacterium, Citrobacter rodentium, despite normal bacterial phagocytosis. These results implicate Tpl2 in the regulation of multiple neutrophil antimicrobial pathways, including inflammatory cytokine secretion and oxidative burst. Furthermore, they indicate that Tpl2 functions early during infection to bolster neutrophil-mediated innate immunity against extracellular bacteria.
Insights
Tumor progression locus 2 (Tpl2) kinase is crucial for neutrophil function in innate immunity. Tpl2 deficiency impairs neutrophil antimicrobial responses, including cytokine secretion and bacterial killing.
Area of Science:
- Immunology
- Cell Biology
- Molecular Biology
Background:
- Tumor progression locus 2 (Tpl2) is a kinase known to promote inflammatory cytokine production via the MEK/ERK pathway.
- Tpl2's role in macrophage inflammatory responses is established, but its function in neutrophil effector mechanisms remains largely unexplored.
- Neutrophils are critical first responders in the innate immune system against infection.
Purpose of the Study:
- To investigate the role of Tpl2 in neutrophil function and innate immune defense.
- To determine if Tpl2 is expressed in neutrophils and contributes to their antimicrobial activities.
Main Methods:
- Analysis of Tpl2 expression in human and murine neutrophils.
- Comparison of neutrophil populations in bone marrow and circulation between Tpl2-deficient and wild-type mice.
- Assessment of neutrophil recruitment, cytokine secretion (TNF), superoxide generation, and bacterial killing (Citrobacter rodentium).
Main Results:
- Tpl2 is expressed in neutrophils, with Tpl2-deficient mice showing altered neutrophil distribution (higher in bone marrow, lower in circulation).
- Tpl2-deficient neutrophils exhibited impaired recruitment and reduced TNF secretion upon LPS stimulation.
- Ablation of Tpl2 impaired superoxide generation and bacterial killing of Citrobacter rodentium, despite normal phagocytosis.
Conclusions:
- Tpl2 plays a significant role in regulating multiple neutrophil antimicrobial pathways, including inflammatory cytokine secretion and oxidative burst.
- Tpl2 is essential for effective neutrophil-mediated innate immunity against extracellular bacterial infections, acting early in the response.