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Updated: Jun 2, 2026

Membrane-SPINE: A Biochemical Tool to Identify Protein-protein Interactions of Membrane Proteins In Vivo
Published on: November 7, 2013
M-ficolin interacts with the long pentraxin PTX3: a novel case of cross-talk between soluble pattern-recognition
Evelyne Gout1, Christine Moriscot, Andrea Doni
1Commissariat à l'Énergie Atomique, Institut de Biologie Structurale Jean-Pierre Ebel, 38027 Grenoble, France.
Abstract:
Ficolins and pentraxins are soluble oligomeric pattern-recognition molecules that sense danger signals from pathogens and altered self-cells and might act synergistically in innate immune defense and maintenance of immune tolerance. The interaction of M-ficolin with the long pentraxin pentraxin 3 (PTX3) has been characterized using surface plasmon resonance spectroscopy and electron microscopy. M-ficolin was shown to bind PTX3 with high affinity in the presence of calcium ions. The interaction was abolished in the presence of EDTA and inhibited by N-acetyl-D-glucosamine, indicating involvement of the fibrinogen-like domain of M-ficolin. Removal of sialic acid from the single N-linked carbohydrate of the C-terminal domain of PTX3 abolished the interaction. Likewise, an M-ficolin mutant with impaired sialic acid-binding ability did not interact with PTX3. Interaction was also impaired when using the isolated recognition domain of M-ficolin or the monomeric C-terminal domain of PTX3, indicating requirement for oligomerization of both proteins. Electron microscopy analysis of the M-ficolin-PTX3 complexes revealed that the M-ficolin tetramer bound up to four PTX3 molecules. From a functional point of view, immobilized PTX3 was able to trigger M-ficolin-dependent activation of the lectin complement pathway. These data indicate that interaction of M-ficolin with PTX3 arises from its ability to bind sialylated ligands and thus differs from the binding to the short pentraxin C-reactive protein and from the binding of L-ficolin to PTX3. The M-ficolin-PTX3 interaction described in this study represents a novel case of cross-talk between soluble pattern-recognition molecules, lending further credit to the integrated view of humoral innate immunity that emerged recently.
Insights
M-ficolin binds to pentraxin 3 (PTX3) via sialic acid recognition, requiring both proteins to be oligomeric. This interaction activates the lectin complement pathway, revealing novel cross-talk in innate immunity.
Area of Science:
- Immunology
- Molecular Biology
- Biochemistry
Background:
- Ficolins and pentraxins are soluble pattern-recognition molecules crucial for innate immunity and immune tolerance.
- These molecules recognize danger signals from pathogens and altered self-cells, potentially acting synergistically.
Purpose of the Study:
- To characterize the interaction between M-ficolin and the long pentraxin pentraxin 3 (PTX3).
- To elucidate the molecular basis and functional consequences of M-ficolin-PTX3 binding.
Main Methods:
- Surface plasmon resonance spectroscopy to assess binding affinity and kinetics.
- Electron microscopy to visualize M-ficolin-PTX3 complexes.
- Biochemical assays using modified proteins and inhibitors (EDTA, N-acetyl-D-glucosamine) to determine binding requirements.
Main Results:
- M-ficolin binds PTX3 with high affinity in a calcium-dependent manner, involving M-ficolin's fibrinogen-like domain.
- The interaction requires sialic acid on PTX3 and oligomerization of both M-ficolin and PTX3.
- Electron microscopy showed M-ficolin tetramers binding up to four PTX3 molecules.
- PTX3 triggered M-ficolin-dependent lectin complement pathway activation.
Conclusions:
- The M-ficolin-PTX3 interaction is mediated by sialylated ligand binding, distinguishing it from other pentraxin interactions.
- This study reveals a novel cross-talk mechanism between soluble pattern-recognition molecules.
- The findings support an integrated view of humoral innate immunity involving synergistic actions of ficolins and pentraxins.
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