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Coordinated induction of extracellular proteolysis systems during experimental autoimmune encephalomyelitis in mice
T Teesalu1, A E Hinkkanen, A Vaheri
1Haartman Institute, University of Helsinki, Helsinki, Finland. tambet.teesalu@helsinki.fi
Abstract:
Plasminogen activators (PAs) and matrix metalloproteinases (MMPs) are considered to play an important role in the pathogenesis of multiple sclerosis. Experimental autoimmune encephalomyelitis (EAE) is widely used as an animal model of multiple sclerosis. Whereas several studies have addressed the expression of various MMPs and their inhibitors in the pathogenesis of EAE, the expression of the molecules of the PA system during EAE has not been reported previously. The present study was undertaken to investigate the expression of the molecules of the PA system (tPA, uPA, PAI-1, uPAR, LRP), as well as several members of the MMP family and their inhibitors in the course of actively induced EAE in BALB/c mice. During clinical EAE, the PA system was up-regulated in the central nervous system at several levels. Induction of expression of tPA and PAI-1 transcripts was detected in activated astrocytes in the white matter. Inflammatory cells expressed uPA receptor, uPAR. In situ zymography demonstrated the presence of increased tPA and uPA activities in the areas of the inflammatory damage. Accumulation of fibrin, fibronectin, and vitronectin immunoreactivity was seen in perivascular matrices of symptomatic animals. In addition, transcription of MT1-MMP and metalloelastase (in inflammatory cells), and TIMP-1 (in activated astrocytes) was induced during EAE. Increased gelatinolytic activity was detected at the sites of inflammatory cell accumulation by in situ zymography of fluorescently labeled gelatin; substrate gel zymography identified the up-regulated gelatinolytic activity as gelatinase B. Overall, our study demonstrates concurrent induction of PA and MMP systems during active EAE, supporting further the concept that the neuroinflammatory damage in EAE involves altered balance between multiple extracellular proteases and their inhibitors.
Insights
This study reveals that plasminogen activators (PAs) and matrix metalloproteinases (MMPs) are upregulated in the central nervous system during experimental autoimmune encephalomyelitis (EAE), a model for multiple sclerosis, indicating their role in neuroinflammation.
Area of Science:
- Neuroimmunology
- Molecular Biology
- Protease Biology
Background:
- Multiple sclerosis pathogenesis involves plasminogen activators (PAs) and matrix metalloproteinases (MMPs).
- Experimental autoimmune encephalomyelitis (EAE) is a key animal model for multiple sclerosis.
- PA system expression in EAE has not been previously reported.
Purpose of the Study:
- To investigate the expression of PA system molecules (tPA, uPA, PAI-1, uPAR, LRP) and MMPs during active EAE.
- To analyze the role of these proteases and their inhibitors in neuroinflammation within the EAE model.
Main Methods:
- Active EAE induction in BALB/c mice.
- Analysis of PA and MMP system gene expression in the central nervous system.
- In situ zymography to detect protease activity.
- Immunohistochemistry for fibrin, fibronectin, and vitronectin.
Main Results:
- PA system components (tPA, PAI-1, uPAR) were upregulated in the CNS during EAE, particularly in astrocytes and inflammatory cells.
- Increased tPA and uPA activities were observed in inflammatory lesions.
- MMP expression (MT1-MMP, metalloelastase, gelatinase B) and TIMP-1 were also induced.
- Accumulation of fibrin, fibronectin, and vitronectin in perivascular matrices.
Conclusions:
- Concurrent induction of PA and MMP systems occurs during active EAE.
- Altered balance between extracellular proteases and inhibitors contributes to neuroinflammatory damage in EAE.
- These findings highlight the complex proteolytic environment in multiple sclerosis.