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Updated: Aug 19, 2026

Mesenchymal Stem Cell Regulation of Macrophage Phagocytosis; Quantitation and Imaging
Published on: July 16, 2021
The human macrophage mannose receptor is not a professional phagocytic receptor
Véronique Le Cabec1, Laurent J Emorine, Isabelle Toesca
1Institute de Pharmacologie et de Biologie Structural, CNRS UMR 5089, Toulouse, France. Veronique.Le-Cabec@ipbs.fr
Abstract:
The macrophage mannose receptor (MR) appears to play an important role in the binding and phagocytosis of several human pathogens, but its phagocytic property and signaling pathways have been poorly defined. The general strategy to explore such topics is to express the protein of interest in nonphagocytic cells, but in the case of MR, there are few reports using the full-length MR cDNA. When we searched to clone de novo the human MR (hMR) cDNA, problems were encountered, and full-length hMR cDNA was only obtained after devising a complex cloning strategy. Chinese hamster ovary cells, which have a fully functional phagocytic machinery when expressing professional phagocytic receptors, were stably transfected, and cell clones expressing hMR at quantitatively comparable levels than human macrophages or J774E cells were obtained. They exhibited a functional hMR-mediated endocytic capacity of a soluble ligand but failed to ingest classical particulate ligands of MR such as zymosan, Mycobacterium kansasii, or trimannoside bovine serum albumin-coated latex beads. Transient expression of hMR in two human cell lines did not provide a phagocytic capacity either. In conclusion, we show that MR is not a professional phagocytic receptor, as it does not possess the ability to promote particle ingestion in nonphagocytic cells on its own. We propose that MR is a binding receptor, which requires a partner to trigger phagocytosis in some specialized cells such as macrophages. Our new expression vector could represent a useful tool to study the receptor and its partnership further.
Insights
The macrophage mannose receptor (MR) binds pathogens but doesn't ingest particles alone. It requires a partner protein to trigger phagocytosis in specialized cells like macrophages.
Area of Science:
- Immunology
- Cell Biology
- Molecular Biology
Background:
- The macrophage mannose receptor (MR) is implicated in pathogen binding and phagocytosis.
- Its precise phagocytic role and signaling pathways remain poorly understood.
- Expressing full-length MR cDNA in nonphagocytic cells is challenging.
Purpose of the Study:
- To investigate the phagocytic capacity of the human MR (hMR) when expressed in nonphagocytic cells.
- To determine if hMR can mediate particle ingestion independently.
- To develop tools for studying MR function and its interactions.
Main Methods:
- A complex cloning strategy was used to obtain full-length hMR cDNA.
- Chinese hamster ovary (CHO) cells were stably transfected with hMR.
- Functional assays were performed using soluble and particulate ligands.
Main Results:
- Stable hMR expression was achieved in CHO cells at levels comparable to macrophages.
- hMR-expressing cells showed endocytic capacity for soluble ligands.
- However, these cells failed to ingest classical particulate MR ligands.
Conclusions:
- The MR is not a professional phagocytic receptor on its own.
- MR acts as a binding receptor, necessitating a partner for phagocytosis in certain cells.
- A novel expression vector was developed for further MR research.
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