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Induction of Experimental Autoimmune Encephalomyelitis in Mice and Evaluation of the Disease-dependent Distribution of Immune Cells in Various Tissues
Published on: May 8, 2016
Inflammatory proprotein convertase-matrix metalloproteinase proteolytic pathway in antigen-presenting cells as a step
Sergey A Shiryaev1, Albert G Remacle, Alexei Y Savinov
1Burnham Institute for Medical Research, La Jolla, California 92037, USA.
Abstract:
Multiple sclerosis (MS) is a disease of the central nervous system with autoimmune etiology. Susceptibility to MS is linked to viral and bacterial infections. Matrix metalloproteinases (MMPs) play a significant role in the fragmentation of myelin basic protein (MBP) and demyelination. The splice variants of the single MBP gene are expressed in the oligodendrocytes of the central nervous system (classic MBP) and in the immune cells (Golli-MBPs). Our data suggest that persistent inflammation caused by environmental risk factors is a step to MS. We have discovered biochemical evidence suggesting the presence of the inflammatory proteolytic pathway leading to MS. The pathway involves the self-activated furin and PC2 proprotein convertases and membrane type-6 MMP (MT6-MMP/MMP-25) that is activated by furin/PC2. These events are followed by MMP-25 proteolysis of the Golli-MBP isoforms in the immune system cells and stimulation of the specific autoimmune T cell clones. It is likely that the passage of these autoimmune T cell clones through the disrupted blood-brain barrier to the brain and the recognition of neuronal, classic MBP causes inflammation leading to the further up-regulation of the activity of the multiple individual MMPs, the massive cleavage of MBP in the brain, demyelination, and MS. In addition to the cleavage of Golli-MBPs, MMP-25 proteolysis readily inactivates crystallin alphaB that is a suppressor of MS. These data suggest that MMP-25 plays an important role in MS pathology and that MMP-25, especially because of its restricted cell/tissue expression pattern and cell surface/lipid raft localization, is a promising drug target in MS.
Insights
Persistent inflammation and a newly discovered proteolytic pathway involving MMP-25 contribute to multiple sclerosis (MS). MMP-25 cleaves myelin basic protein (MBP) variants and inactivates a key suppressor, highlighting its role in MS pathology and potential as a drug target.
Area of Science:
- Neuroimmunology
- Biochemistry
- Molecular Biology
Background:
- Multiple sclerosis (MS) is an autoimmune central nervous system disease.
- Infections and environmental factors are linked to MS susceptibility.
- Matrix metalloproteinases (MMPs) contribute to myelin basic protein (MBP) fragmentation and demyelination.
Purpose of the Study:
- To investigate a novel inflammatory proteolytic pathway implicated in MS pathogenesis.
- To identify key enzymes and substrates involved in this pathway.
- To evaluate MMP-25 as a potential therapeutic target for MS.
Main Methods:
- Biochemical analysis to identify proteolytic enzymes and substrates.
- Investigation of proprotein convertase (furin, PC2) and MMP-25 activation.
- Assessment of MMP-25's role in cleaving Golli-MBP isoforms and alphaB-crystallin.
Main Results:
- A pathway involving self-activated furin/PC2 and MMP-25 was identified.
- MMP-25 cleaves Golli-MBP isoforms in immune cells, stimulating autoimmune T cells.
- MMP-25 inactivates alphaB-crystallin, a suppressor of MS, and cleaves classic MBP in the brain.
Conclusions:
- MMP-25 plays a critical role in MS pathology by cleaving MBP variants and inactivating alphaB-crystallin.
- The identified proteolytic pathway contributes to inflammation and demyelination in MS.
- MMP-25's specific expression and localization make it a promising drug target for MS treatment.
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