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Published on: July 9, 2014
MASP-1 and MASP-3 Bind Directly to Aspergillus fumigatus and Promote Complement Activation and Phagocytosis
Anne Rosbjerg1,2, Reinhard Würzner3, Peter Garred1
1Department of Clinical Immunology, Laboratory of Molecular Medicine, Rigshospitalet, Faculty of Health and Medical Sciences, University of Copenhagen, Copenhagen, Denmark.
Abstract:
Activation of the complement system is mediated by the interaction between pathogens and pattern recognition molecules (PRMs); mannose-binding lectin (MBL), ficolins, and collectin-10/-11 from the lectin pathway and C1q from the classical pathway. Lectin pathway activation specifically depends on proteases named MBL-associated serine proteases (MASPs) that are found in complexes with PRMs. In this study, we hypothesize that MASPs can recognize selected pathogens independently of PRMs. Using different clinical strains of opportunistic fungi, we have observed that MASPs directly recognize certain fungal pathogens in a way that can facilitate complement activation. Among these were Aspergillus fumigatus - a dangerous pathogen, especially for immunocompromised patients. In flow cytometry and fluorescence microscopy, we found that MASP-1 and -3 bound to all A. fumigatus growth stages (conidia, germ tubes, and hyphae), whereas rMASP-2 and the nonproteolytic rMAP-1 did not. Bound rMASPs could recruit rMBL and rficolin-3 to A. fumigatus conidia in a nonclassical manner and activate complement via rMASP-2. In experiments using recombinant and purified components, rMASP-1 increased the neutrophilic phagocytosis of conidia. In serum where known complement activation pathways were blocked, phagocytosis could be mediated by rMASP-3. We have encountered an unknown pathway for complement activation and found that MASP-1 and MASP-3 have dual functions as enzymes and as PRMs.
Insights
MBL-associated serine proteases (MASPs) can directly recognize fungi like Aspergillus fumigatus, independent of pattern recognition molecules. This finding reveals a novel pathway for complement activation and suggests MASPs have dual roles.
Area of Science:
- Immunology
- Microbiology
- Biochemistry
Background:
- Complement system activation typically involves pattern recognition molecules (PRMs) interacting with pathogens.
- Lectin pathway activation relies on MBL-associated serine proteases (MASPs) complexed with PRMs.
- The role of MASPs in pathogen recognition independent of PRMs is not well understood.
Purpose of the Study:
- To investigate if MASPs can recognize pathogens directly, without PRMs.
- To explore the potential of MASPs in initiating complement activation against fungal pathogens.
- To identify novel pathways for complement activation and MASP functions.
Main Methods:
- Utilized flow cytometry and fluorescence microscopy to assess MASP binding to Aspergillus fumigatus.
- Employed recombinant and purified components (MASPs, MBL, ficolin-3) in binding and activation assays.
- Investigated the impact of MASPs on fungal phagocytosis in serum with blocked classical pathways.
Main Results:
- MASP-1 and MASP-3 directly bound to all growth stages of Aspergillus fumigatus.
- Bound MASPs facilitated the recruitment of MBL and ficolin-3, activating complement via MASP-2.
- MASP-1 enhanced neutrophilic phagocytosis, while MASP-3 mediated phagocytosis in blocked serum conditions.
Conclusions:
- MASPs can recognize specific fungal pathogens independently of PRMs, initiating complement activation.
- A novel pathway for complement activation has been identified.
- MASP-1 and MASP-3 exhibit dual functions as proteases and pattern recognition molecules.
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