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.

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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