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Evaluation of the Interplay Between the Complement Protein C1q and Hyaluronic Acid in Promoting Cell Adhesion
Published on: June 15, 2019
Recombinant C1q variants modulate macrophage responses but do not activate the classical complement pathway
Victoria Espericueta1, Ayla O Manughian-Peter1, Isabelle Bally2
1Department of Biological Sciences, California State University Long Beach, CA, USA.
Insights
Complement protein C1q has dual roles in inflammation. Modified C1q variants, unable to activate complement, still promote phagocytosis and reduce inflammatory cytokines, suggesting a distinct therapeutic role.
Area of Science:
- Immunology
- Molecular Biology
- Biochemistry
Background:
- Complement protein C1q exhibits a dual role in inflammatory diseases like atherosclerosis, with beneficial effects in early stages and detrimental effects in later stages.
- C1q interacts with phagocytes independently of complement activation, promoting debris clearance and an anti-inflammatory macrophage phenotype, potentially preventing autoimmunity.
Purpose of the Study:
- To characterize recombinant human C1q (rC1q) variants with mutations at the C1r2C1s2 interaction site, rendering them unable to initiate complement activation.
- To investigate the structural basis of C1q's interaction with phagocytes by assessing the impact of these mutations on phagocytosis and macrophage polarization.
Main Methods:
- Created rC1q variants by mutating the C1r2C1s2 interaction site.
- Assessed phagocytosis of antibody-coated sheep erythrocytes and oxidized LDL by human monocytes and macrophages (HMDM) exposed to wild-type or variant rC1q.
- Measured secreted cytokine levels in HMDM stimulated with rC1q variants.
Main Results:
- All C1q variants enhanced phagocytosis in HMDM, similar to wild-type rC1q.
- Pro-inflammatory cytokine and chemokine secretion by HMDM was modulated by C1q variants, mirroring effects of wild-type rC1q and native C1q.
- Specific cytokines (IL-1α, IL-1β, TNFα, MIP-1α, IL-12p40) were downregulated by native and rC1q in both resting and M1-polarized HMDM.
Conclusions:
- The phagocyte-interacting site of C1q is independent of the C1r2C1s2 interaction site.
- Classical pathway-null C1q variants retain beneficial functions, suggesting potential for therapeutic exploitation.
- Further research on these variants will elucidate the complement-independent roles of C1q.
Abstract:
Complement protein C1q plays a dual role in a number of inflammatory diseases such as atherosclerosis. While in later stages classical complement pathway activation by C1q exacerbates disease progression, C1q also plays a beneficial role in early disease. Independent of its role in complement activation, we and others have identified a number of potentially beneficial interactions of C1q with phagocytes in vitro, including triggering phagocytosis of cellular and molecular debris and polarizing macrophages toward an anti-inflammatory phenotype. These interactions may also be important in preventing autoimmunity. Here, we characterize variants of recombinant human C1q (rC1q) which no longer initiate complement activation, through mutation of the C1r2C1s2 interaction site. For insight into the structural location of the site of C1q that is important for interaction with phagocytes, we investigated the effect of these mutations on phagocytosis and macrophage inflammatory polarization, as compared to wild-type C1q. Phagocytosis of antibody coated sheep erythrocytes and oxidized LDL was measured in human monocytes and monocyte-derived macrophages (HMDM) respectively that had interacted with rC1q wild-type or variants. Secreted levels of cytokines were also measured in C1q stimulated HMDM. All variants of C1q increased phagocytosis in HMDM compared to controls, similar to native or wild-type rC1q. In addition, levels of certain pro-inflammatory cytokines and chemokines secreted by HMDM were modulated in cells that interacted with C1q variants, similar to wild-type rC1q and native C1q. This includes downregulation of IL-1α, IL-1β, TNFα, MIP-1α, and IL-12p40 by native and rC1q in both resting and M1-polarized HMDM. This suggests that the site responsible for C1q interaction with phagocytes is independent of the C1r2C1s2 interaction site. Further studies with these classical pathway-null variants of C1q should provide greater understanding of the complement-independent role of C1q, and allow for potential therapeutic exploitation.
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