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Updated: May 23, 2026

Opsono-Adherence Assay to Evaluate Functional Antibodies in Vaccine Development Against Bacillus anthracis and Other Encapsulated Pathogens
Published on: May 19, 2020
Activation of the classical complement pathway by Bacillus anthracis is the primary mechanism for spore phagocytosis
Chunfang Gu1, Sarah A Jenkins, Qiong Xue
1Institute of Biosciences and Technology, Texas A&M Health Science Center, Houston, TX 77030, USA.
Abstract:
Interactions between spores of Bacillus anthracis and macrophages are critical for the development of anthrax infections, as spores are thought to use macrophages as vehicles to disseminate in the host. In this study, we report a novel mechanism for phagocytosis of B. anthracis spores. Murine macrophage-like cell line RAW264.7, bone marrow-derived macrophages, and primary peritoneal macrophages from mice were used. The results indicated that activation of the classical complement pathway (CCP) was a primary mechanism for spore phagocytosis. Phagocytosis was significantly reduced in the absence of C1q or C3. C3 fragments were found deposited on the spore surface, and the deposition was dependent on C1q and Ca(2+). C1q recruitment to the spore surface was mediated by the spore surface protein BclA, as recombinant BclA bound directly and specifically to C1q and inhibited C1q binding to spores in a dose-dependent manner. C1q binding to spores lacking BclA (ΔbclA) was also significantly reduced compared with wild-type spores. In addition, deposition of both C3 and C4 as well as phagocytosis of spores were significantly reduced when BclA was absent, but were not reduced in the absence of IgG, suggesting that BclA, but not IgG, is important in these processes. Taken together, these results support a model in which spores actively engage CCP primarily through BclA interaction with C1q, leading to CCP activation and opsonophagocytosis of spores in an IgG-independent manner. These findings are likely to have significant implications on B. anthracis pathogenesis and microbial manipulation of complement.
Insights
Bacillus anthracis spores use the BclA protein to trigger the classical complement pathway (CCP) for macrophage uptake. This IgG-independent mechanism is key to anthrax pathogenesis and complement evasion.
Area of Science:
- Immunology
- Microbiology
- Pathogenesis
Background:
- Bacillus anthracis spores interact with macrophages, potentially aiding host dissemination.
- Understanding spore-host interactions is crucial for developing anthrax treatments.
Purpose of the Study:
- To elucidate the mechanism of Bacillus anthracis spore phagocytosis by macrophages.
- To investigate the role of the complement system in spore-host cell interactions.
Main Methods:
- Utilized murine macrophage cell lines (RAW264.7) and primary macrophages.
- Assessed phagocytosis in the presence and absence of complement components (C1q, C3, C4) and IgG.
- Investigated the role of the spore surface protein BclA in complement activation and binding using recombinant proteins and mutant spores.
Main Results:
- Classical complement pathway (CCP) activation is essential for B. anthracis spore phagocytosis.
- Spore surface protein BclA directly binds C1q, initiating CCP activation.
- Phagocytosis and complement deposition (C3, C4) on spores are BclA-dependent and IgG-independent.
Conclusions:
- B. anthracis spores actively engage CCP via BclA-C1q interaction for IgG-independent opsonophagocytosis.
- This mechanism highlights microbial manipulation of the host immune system.
- Findings have implications for understanding anthrax pathogenesis and developing countermeasures.
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