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Published on: August 26, 2025
Fungal recognition enhances mannose receptor shedding through dectin-1 engagement
Umut Gazi1, Marcela Rosas2, Sonali Singh1
1From the School of Molecular Medical Sciences,; Respiratory Biomedical Research Unit, Queen's Medical Centre, University of Nottingham, Nottingham NG7 2UH, United Kingdom.
Abstract:
The mannose receptor (MR) is an endocytic type I membrane molecule with a broad ligand specificity that is involved in both hemostasis and pathogen recognition. Membrane-anchored MR is cleaved by a metalloproteinase into functional soluble MR (sMR) composed of the extracellular domains of intact MR. Although sMR production was initially considered a constitutive process, enhanced MR shedding has been observed in response to the fungal pathogen Pneumocystis carinii. In this work, we have investigated the mechanism mediating enhanced MR shedding in response to fungi. We show that other fungal species, including Candida albicans and Aspergillus fumigatus, together with zymosan, a preparation of the cell wall of Saccharomyces cerevisiae, mimic the effect of P. carinii on sMR production and that this effect takes place mainly through β-glucan recognition. Additionally, we demonstrate that MR cleavage in response to C. albicans and bioactive particulate β-glucan requires expression of dectin-1. Our data, obtained using specific inhibitors, are consistent with the canonical Syk-mediated pathway triggered by dectin-1 being mainly responsible for inducing MR shedding, with Raf-1 being partially involved. As in the case of steady-state conditions, MR shedding in response to C. albicans and β-glucan particles requires metalloprotease activity. The induction of MR shedding by dectin-1 has clear implications for the role of MR in fungal recognition, as sMR was previously shown to retain the ability to bind fungal pathogens and can interact with numerous host molecules, including lysosomal hydrolases. Thus, MR cleavage could also impact on the magnitude of inflammation during fungal infection.
Insights
Fungal recognition triggers increased shedding of the mannose receptor (MR), releasing soluble MR (sMR). This process, mediated by dectin-1 and β-glucan, impacts inflammation during fungal infections.
Area of Science:
- Immunology
- Molecular Biology
- Cell Biology
Background:
- The mannose receptor (MR) is a key molecule in pathogen recognition and hemostasis.
- Soluble MR (sMR) is generated by metalloproteinase cleavage of membrane-anchored MR.
- Enhanced MR shedding was previously observed in response to Pneumocystis carinii.
Purpose of the Study:
- To investigate the mechanism of enhanced MR shedding induced by fungal pathogens.
- To identify the fungal components and host receptors involved in MR shedding.
- To elucidate the signaling pathways mediating MR cleavage.
Main Methods:
- Utilized various fungal species (Candida albicans, Aspergillus fumigatus) and zymosan to stimulate MR shedding.
- Employed specific inhibitors to probe signaling pathways, including Syk and Raf-1.
- Assessed the role of dectin-1 expression in MR cleavage.
- Confirmed the requirement for metalloproteinase activity in MR shedding.
Main Results:
- Fungi and β-glucans mimic P. carinii in inducing sMR production.
- MR cleavage in response to fungi and β-glucans requires dectin-1 expression.
- The Syk-mediated pathway, with partial Raf-1 involvement, is primarily responsible for MR shedding induction.
- Metalloproteinase activity is essential for MR shedding under both steady-state and induced conditions.
Conclusions:
- Dectin-1-mediated recognition of fungal β-glucans is a major driver of MR shedding.
- MR cleavage is a regulated process influenced by fungal presence and host immune receptors.
- The induction of MR shedding has significant implications for fungal recognition and inflammatory responses.
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