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Updated: Jun 10, 2026

Evaluation of the Interplay Between the Complement Protein C1q and Hyaluronic Acid in Promoting Cell Adhesion
Published on: June 15, 2019
Direct interaction between CD91 and C1q
Karen Duus1, Erik W Hansen, Pascale Tacnet
1Department of Clinical Biochemistry and Immunology, Statens Serum Institut, Copenhagen, Denmark.
Insights
The complement C1q protein directly binds to CD91 (alpha-2-macroglobulin receptor), a scavenger receptor on monocytes. This interaction suggests CD91 acts as a direct receptor for C1q, aiding in the clearance of immune complexes and apoptotic cells.
Area of Science:
- Immunology
- Cell Biology
- Biochemistry
Background:
- The complement system's C1q protein is crucial for removing immune complexes and apoptotic cells, maintaining tissue homeostasis and preventing autoimmunity.
- Previous research suggested C1q facilitates apoptotic cell clearance via a receptor complex involving CD91 and calreticulin.
Purpose of the Study:
- To investigate the direct interaction between C1q and CD91.
- To determine if CD91 functions as a direct receptor for C1q on monocytic cells.
Main Methods:
- ELISA and surface plasmon resonance assays to detect direct binding between purified C1q and CD91.
- Experiments using monocytic cell lines and human blood monocytes to assess C1q binding and its correlation with CD91 expression.
- Inhibition studies using receptor-associated protein and known CD91/C1q ligands.
Main Results:
- C1q directly binds to CD91 expressed on monocytic cells and human monocytes.
- C1q binding to monocytes correlates with CD91 expression and can be inhibited by receptor-associated protein.
- Direct, specific, time-dependent, and saturable interactions between purified C1q and CD91 were confirmed by ELISA and surface plasmon resonance.
Conclusions:
- CD91 directly recognizes and binds C1q.
- CD91 functions as a direct receptor for C1q.
- This interaction facilitates the clearance of C1q and C1q-bound material by the multifunctional scavenger receptor CD91.
Abstract:
C1q-mediated removal of immune complexes and apoptotic cells plays an important role in tissue homeostasis and the prevention of autoimmune conditions. It has been suggested that C1q mediates phagocytosis of apoptotic cells through a receptor complex assembled from CD91 (alpha-2- macroglobulin receptor, or low-density lipoprotein receptor-related protein) and calreticulin, with CD91 being the transmembrane part and calreticulin acting as the C1q-binding molecule. In the present study, we observe that C1q binds cells from a CD91 expressing monocytic cell line as well as monocytes from human blood. C1q binding to monocytes was shown to be correlated with CD91 expression and could be inhibited by the CD91 chaperone, receptor-associated protein. We also report data showing a direct interaction between CD91 and C1q. The interaction was investigated using various protein interaction assays. A direct interaction between purified C1q and CD91 was observed both by ELISA and a surface plasmon resonance assay, with either C1q or CD91 immobilized. The interaction showed characteristics of specificity because it was time-dependent, saturable and could be inhibited by known ligands of both CD91 and C1q. The results obtained show for the first time that CD91 recognizes C1q directly. On the basis of these findings, we propose that CD91 is a receptor for C1q and that this multifunctional scavenger receptor uses a subset of its ligand-binding sites for clearance of C1q and C1q bound material.
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