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Time-lapse 3D Imaging of Phagocytosis by Mouse Macrophages
Published on: October 19, 2018
Phagocytosis via complement receptor 3 enables microbes to evade killing by neutrophils
Asya Smirnov1, Kylene P Daily1, Mary C Gray1
1Department of Microbiology, Immunology, and Cancer Biology, University of Virginia School of Medicine, 1340 Jefferson Park Avenue, Box 800734, Charlottesville, VA, 22908-0734, USA.
Insights
Complement receptor 3 (CR3) mediates a silent phagocytosis pathway used by pathogens like Neisseria gonorrhoeae to evade killing. This CR3-dependent entry bypasses typical immune responses, allowing microbes to subvert neutrophil defenses.
Area of Science:
- Immunology
- Microbiology
- Cell Biology
Background:
- Complement receptor 3 (CR3), also known as CD11b/CD18 or αmβ2 integrin, is a key phagocytic receptor.
- CR3 recognizes complement fragment iC3b and various microbial ligands, initiating actin-dependent phagocytosis.
- Conflicting reports exist regarding the intracellular fate of CR3-engulfed targets.
Purpose of the Study:
- To investigate the role of CR3 in the phagocytosis and intracellular fate of microbial pathogens and opsonized particles.
- To determine if CR3-mediated phagocytosis represents a distinct pathway that subverts neutrophil antimicrobial mechanisms.
Main Methods:
- Imaging flow cytometry to analyze CR3-dependent phagocytosis of iC3b-opsonized beads and Opa-deleted *Neisseria gonorrhoeae* (Δopa N. gonorrhoeae) by human neutrophils.
- Inhibition studies using blocking antibodies against CR3 and neutrophil inhibitory factor.
- Assessment of CR3 expression, intracellular signaling (Erk1/2, p38, JNK phosphorylation), and reactive oxygen species (ROS) production.
- Phagocytosis assays using CD11b-deficient mouse neutrophils and HL-60 promyelocytes overexpressing CD11b.
Main Results:
- CR3-dependent uptake of iC3b-opsonized beads and Δopa N. gonorrhoeae by neutrophils was confirmed.
- CR3-mediated phagocytosis did not induce significant reactive oxygen species production and resulted in targets residing in immature phagosomes.
- Phagocytosis of Δopa N. gonorrhoeae was dependent on the CD11b I-domain and CR3 expression.
- Neutrophils exposed to Δopa N. gonorrhoeae showed limited activation of key inflammatory signaling pathways (Erk1/2, p38, JNK).
Conclusions:
- CR3 mediates a 'silent' phagocytosis pathway in neutrophils.
- Pathogens like *N. gonorrhoeae* exploit CR3 to enter neutrophils, evading microbicidal mechanisms such as ROS production and phagolysosome maturation.
- This CR3-dependent entry facilitates pathogen survival and subversion of host defenses.
Abstract:
CR3 (CD11b/CD18; αmβ2 integrin) is a conserved phagocytic receptor. The active conformation of CR3 binds the iC3b fragment of complement C3 as well as many host and microbial ligands, leading to actin-dependent phagocytosis. There are conflicting reports about how CR3 engagement affects the fate of phagocytosed substrates. Using imaging flow cytometry, we confirmed that binding and internalization of iC3b-opsonized polystyrene beads by primary human neutrophils was CR3-dependent. iC3b-opsonized beads did not stimulate neutrophil reactive oxygen species, and most beads were found in primary granule-negative phagosomes. Similarly, Neisseria gonorrhoeae that does not express phase-variable Opa proteins suppresses neutrophil reactive oxygen species and delays phagolysosome formation. Here, binding and internalization of Opa-deleted (Δopa) N. gonorrhoeae by adherent human neutrophils was inhibited using blocking antibodies against CR3 and by adding neutrophil inhibitory factor, which targets the CD11b I-domain. No detectable C3 was deposited on N. gonorrhoeae in the presence of neutrophils alone. Conversely, overexpressing CD11b in HL-60 promyelocytes enhanced Δopa N. gonorrhoeae phagocytosis, which required the CD11b I-domain. Phagocytosis of N. gonorrhoeae was also inhibited in mouse neutrophils that were CD11b-deficient or treated with anti-CD11b. Phorbol ester treatment upregulated surface CR3 on neutrophils in suspension, enabling CR3-dependent phagocytosis of Δopa N. gonorrhoeae. Neutrophils exposed to Δopa N. gonorrhoeae had limited phosphorylation of Erk1/2, p38, and JNK. Neutrophil phagocytosis of unopsonized Mycobacterium smegmatis, which also resides in immature phagosomes, was CR3-dependent and did not elicit reactive oxygen species. We suggest that CR3-mediated phagocytosis is a silent mode of entry into neutrophils, which is appropriated by diverse pathogens to subvert phagocytic killing.
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