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Updated: Jun 17, 2025

Evaluation of the Interplay Between the Complement Protein C1q and Hyaluronic Acid in Promoting Cell Adhesion
Published on: June 15, 2019
C1q/MASP Complexes-Hybrid Complexes of Classical and Lectin Pathway Proteins Are Found in the Circulation
Anne Rosbjerg1, Tereza Alica Plchová1, Rafael Bayarri-Olmos1
1Department of Clinical Immunology, Laboratory of Molecular Medicine, Copenhagen University Hospital, Rigshospitalet, Copenhagen, Denmark.
Insights
This study reveals novel interactions between complement pathways, identifying C1q/MASP complexes in human serum. These complexes, including C1q/MASP-2 and C1q/MASP-3, exhibit proteolytic activity, indicating a previously undescribed crosstalk route.
Area of Science:
- Immunology
- Biochemistry
- Molecular Biology
Background:
- Complement pathways were traditionally viewed as distinct but are now known to interact.
- The MBL/ficolin/CL-associated serine protease (MASP)-3 processes substrates like pro-factor D.
- Structural similarities between lectin and classical complement pathway molecules suggest potential interactions.
Purpose of the Study:
- To investigate the hypothesis that C1q, a classical pathway component, interacts with MASPs.
- To detect and characterize C1q/MASP complexes in human serum.
- To assess the functional activity of these complexes.
Main Methods:
- Microscale thermophoresis, ELISA, and immunoprecipitation assays were used to detect C1q/MASP complexes.
- Enzymatic cleavage assays were performed to assess functional activity.
- Calcium dependency of the interaction was tested using EDTA.
Main Results:
- C1q/MASP-3 complexes were detected in human serum and correlated with MASP-3 levels.
- MASP-3 bound to C1q in vitro with nanomolar affinity in a calcium-dependent manner.
- C1q/MASP-2 and C1q/MASP-3 complexes showed proteolytic activity, cleaving C4 and pro-factor D, respectively.
Conclusions:
- This study demonstrates the existence of C1q/MASP complexes in healthy individuals' circulation.
- Both C1q/MASP-2 and C1q/MASP-3 complexes possess proteolytic activity.
- A novel crosstalk route between the classical and lectin complement pathways has been uncovered.
Abstract:
Complement pathways, traditionally regarded as separate entities in vitro, are increasingly noted for cross-communication and bypass mechanisms. Among these, the MBL/ficolin/CL-associated serine protease (MASP)-3, a component of lectin pathway pattern recognition molecules, has shown the ability to process critical substrates such as pro-factor D and insulin growth factor binding protein-5. Given shared features between lectin pathway pattern recognition molecules and C1q from the classical pathway, we hypothesized that C1q might be a viable in vivo binding partner for the MASPs. We used microscale thermophoresis, ELISA, and immunoprecipitation assays to detect C1q/MASP complexes and functionally assessed the complexes through enzymatic cleavage assays. C1q/MASP-3 complexes were detected in human serum and correlated well with MASP-3 serum levels in healthy individuals. The binding affinity between MASP-3 and C1q in vitro was in the nanomolar range, and the interaction was calcium-dependent, as demonstrated by their dissociation in the presence of EDTA. Furthermore, most of the circulating C1q-bound MASP-3 was activated. Based on immunoprecipitation, also C1q/MASP-2 complexes appeared to be present in serum. Finally, C1q/MASP-2 and C1q/MASP-3 in vitro complexes were able to cleave C4 and pro-factor D, respectively. Our study reveals the existence of C1q/MASP complexes in the circulation of healthy individuals, and both C1q/MASP-2 and C1q/MASP-3 complexes display proteolytic activity. Hence, this study uncovers a crosstalk route between complement pathways not previously described.
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