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Identification of a Novel Antisepsis Pathway: Sectm1a Enhances Macrophage Phagocytosis of Bacteria through Activating
Xingjiang Mu1, Peng Wang1,2, Xiaohong Wang1
1Department of Pharmacology and Systems Physiology, University of Cincinnati College of Medicine, Cincinnati, OH 45267.
Abstract:
The inability to effectively control invading bacteria or other pathogens is a major cause of multiple organ dysfunction and death in sepsis. As the first-line defense of the immune system, macrophages play a crucial role in the removal of pathogens during sepsis. In this study, we define secreted and transmembrane 1A (Sectm1a) as a novel ligand of glucocorticoid-induced TNFR (GITR) that greatly boosts macrophage phagocytosis and bactericidal capacity. Using a global Sectm1a knockout (KO) mouse model, we observed that Sectm1a deficiency significantly suppressed phagocytosis and bactericidal activity in both recruited macrophages and tissue-resident macrophages, which consequently aggravated bacterial burden in the blood and multiple organs and further increased systemic inflammation, leading to multiple organ injury and increased mortality during polymicrobial sepsis. By contrast, treatment of septic mice with recombinant Sectm1a protein (rSectm1a) not only promoted macrophage phagocytosis and bactericidal activity but also significantly improved survival outcome. Mechanistically, we identified that Sectm1a could bind to GITR in the surface of macrophages and thereby activate its downstream PI3K-Akt pathway. Accordingly, rSectm1a-mediated phagocytosis and bacterial killing were abolished in macrophages by either KO of GITR or pharmacological inhibition of the PI3K-Akt pathway. In addition, rSectm1a-induced therapeutic effects on sepsis injury were negated in GITR KO mice. Taken together, these results uncover that Sectm1a may represent a novel target for drug development to control bacterial dissemination during sepsis or other infectious diseases.
Insights
Secreted and transmembrane 1A (Sectm1a) enhances macrophage immune response against bacterial infections. This protein boosts pathogen clearance, reduces organ damage, and improves survival in sepsis models, offering a potential therapeutic target.
Area of Science:
- Immunology
- Microbiology
- Pathology
Background:
- Sepsis is a life-threatening condition caused by uncontrolled infections.
- Macrophages are critical immune cells for clearing pathogens during sepsis.
- Effective control of bacterial pathogens is essential to prevent organ dysfunction and mortality.
Purpose of the Study:
- To investigate the role of secreted and transmembrane 1A (Sectm1a) in sepsis.
- To determine if Sectm1a modulates macrophage function and sepsis outcomes.
- To elucidate the molecular mechanism of Sectm1a's action in sepsis.
Main Methods:
- Utilized a global Sectm1a knockout (KO) mouse model.
- Administered recombinant Sectm1a protein (rSectm1a) to septic mice.
- Assessed macrophage phagocytosis and bactericidal capacity.
- Investigated the interaction of Sectm1a with glucocorticoid-induced TNFR (GITR) and the PI3K-Akt pathway.
- Evaluated sepsis severity, organ injury, and survival rates.
Main Results:
- Sectm1a deficiency impaired macrophage phagocytosis and bactericidal activity, worsening sepsis outcomes.
- Treatment with rSectm1a enhanced macrophage function and significantly improved survival in septic mice.
- Sectm1a binds to GITR on macrophages, activating the downstream PI3K-Akt pathway.
- The therapeutic effects of rSectm1a were dependent on GITR and the PI3K-Akt pathway.
Conclusions:
- Sectm1a is a novel GITR ligand that enhances macrophage antimicrobial functions.
- Sectm1a plays a protective role in sepsis by boosting immune cell activity.
- Sectm1a represents a promising therapeutic target for treating sepsis and other infectious diseases.
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