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CD47, a ligand for the macrophage fusion receptor, participates in macrophage multinucleation
1Yale University School of Medicine, Departments of Cell Biology and Orthopaedics and Rehabilitation, New Haven, Connecticut 06510, USA.
Abstract:
The macrophage fusion receptor (MFR), also called P84/BIT/SIRPalpha/SHPS-1, is a transmembrane glycoprotein that belongs to the superfamily of immunoglobulins. Previously, we showed that MFR expression is highly induced at the onset of fusion in macrophages, and that MFR appears to play a role in macrophage-macrophage adhesion/fusion leading to multinucleation. The recent finding that IAP/CD47 acts as a ligand for MFR led us to hypothesize that it interacts with CD47 at the onset of cell-cell fusion. CD47 is a transmembrane glycoprotein, which, like MFR, belongs to the superfamily of immunoglobulins. We show that macrophages express the hemopoietic form of CD47, the expression of which is induced at the onset of fusion, but to a lower level than MFR. A glutathione S-transferase CD47 fusion protein engineered to contain the extracellular domain of CD47, binds macrophages, associates with MFR, and prevents multinucleation. CD47 and MFR associate via their amino-terminal immunoglobulin variable domain. Of the nine monoclonal antibodies raised against the extracellular domain of CD47, three block fusion, as well as MFR-CD47 interaction, whereas the others have no effect. Together, these data suggest that CD47 is involved in macrophage multinucleation by virtue of interacting with MFR during adhesion/fusion.
Insights
The macrophage fusion receptor (MFR) interacts with CD47, a protein expressed during macrophage fusion. This interaction is crucial for macrophage multinucleation, influencing cell-cell adhesion and fusion processes.
Area of Science:
- Immunology
- Cell Biology
Background:
- Macrophage fusion receptor (MFR) is a transmembrane glycoprotein involved in macrophage-macrophage adhesion and fusion.
- MFR expression increases during macrophage fusion, leading to multinucleation.
Purpose of the Study:
- To investigate the interaction between MFR and CD47 (also known as integrin-associated protein) during macrophage fusion.
- To determine the role of CD47 in macrophage multinucleation.
Main Methods:
- Utilized glutathione S-transferase (GST) CD47 fusion protein to study binding to macrophages.
- Employed monoclonal antibodies against CD47 to assess effects on fusion and MFR-CD47 interaction.
- Analyzed expression levels of MFR and CD47 during macrophage fusion.
Main Results:
- CD47 expression is induced during macrophage fusion, though at lower levels than MFR.
- A GST-CD47 fusion protein binds to macrophages, associates with MFR, and inhibits multinucleation.
- Specific monoclonal antibodies against CD47 blocked both fusion and MFR-CD47 interaction.
Conclusions:
- CD47 interacts with MFR via their extracellular immunoglobulin variable domains.
- CD47 plays a role in macrophage multinucleation by mediating interactions with MFR during cell adhesion and fusion.

