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Updated: Aug 2, 2025

Experimental Analysis of Apoptotic Thymocyte Engulfment by Macrophages
Published on: May 24, 2019
Peptidoglycan from Bacillus anthracis Inhibits Human Macrophage Efferocytosis in Part by Reducing Cell Surface
Joshua S Mytych1,2, Zijian Pan1, Charmaine Lopez-Davis1
1Arthritis and Clinical Immunology Program, Oklahoma Medical Research Foundation, 825 NE 13 Street, Oklahoma City, OK 73104, USA.
Abstract:
Bacillus anthracis peptidoglycan (PGN) is a major component of the bacterial cell wall and a key pathogen-associated molecular pattern (PAMP) contributing to anthrax pathology, including organ dysfunction and coagulopathy. Increases in apoptotic lymphocytes are a late-stage feature of anthrax and sepsis, suggesting there is a defect in apoptotic clearance. Here, we tested the hypothesis that B. anthracis PGN inhibits the capacity of human monocyte-derived macrophages (MΦ) to efferocytose apoptotic cells. Exposure of CD163+CD206+ MΦ to PGN for 24h impaired efferocytosis in a manner dependent on human serum opsonins but independent of complement component C3. PGN treatment reduced cell surface expression of the pro-efferocytic signaling receptors MERTK, TYRO3, AXL, integrin αVβ5, CD36 and TIM-3, whereas TIM-1, αVβ3, CD300b, CD300f, STABILIN-1 and STABILIN-2 were unaffected. ADAM17 is a major membrane-bound protease implicated in mediating efferocytotic receptor cleavage. We found multiple ADAM17-mediated substrates increased in PGN-treated supernatant suggesting involvement of membrane-bound proteases. ADAM17 inhibitors TAPI-0 and Marimastat prevented TNF release, indicating effective protease inhibition, and modestly increased cell-surface levels of MerTK and TIM-3 but only partially restored efferocytic capacity by PGN-treated MΦ. We conclude that human serum factors are required for optimal recognition of PGN by human MΦ and that B. anthracis PGN inhibits efferocytosis in part by reducing cell surface expression of MERTK and TIM-3.
Insights
Bacillus anthracis peptidoglycan (PGN) impairs macrophage efferocytosis, the clearance of apoptotic cells. This occurs partly by reducing key cell surface receptors like MERTK and TIM-3, impacting anthrax pathology.
Area of Science:
- Immunology
- Microbiology
- Cell Biology
Background:
- Bacillus anthracis peptidoglycan (PGN) is a key pathogen-associated molecular pattern (PAMP) driving anthrax pathology.
- Defective apoptotic cell clearance contributes to organ dysfunction and coagulopathy in anthrax and sepsis.
Approach:
- Human monocyte-derived macrophages (MΦ) were exposed to B. anthracis PGN.
- Efferocytosis, cell surface receptor expression, and protease activity were analyzed.
- The role of ADAM17 protease and serum opsonins was investigated.
Key Points:
- B. anthracis PGN inhibits MΦ efferocytosis in a human serum-dependent manner.
- PGN reduces cell surface expression of efferocytic receptors MERTK, TYRO3, AXL, integrin αVβ5, CD36, and TIM-3.
- ADAM17 protease activity contributes to PGN-induced efferocytosis impairment.
Conclusions:
- Human serum factors are necessary for optimal MΦ recognition of PGN.
- B. anthracis PGN inhibits efferocytosis by downregulating MERTK and TIM-3 expression.
- Targeting ADAM17 may partially restore efferocytic capacity in PGN-affected macrophages.
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