MMP7 cleaves remyelination-impairing fibronectin aggregates and its expression is reduced in chronic multiple

Peng Wang1, Rianne P Gorter1, Jenny C de Jonge1

  • 1Department of Cell Biology, University of Groningen, University Medical Center Groningen, Groningen, the Netherlands.

Glia
|March 31, 2018
PubMed

Insights

Matrix metalloproteinases (MMPs), specifically MMP7, can break down fibronectin aggregates that impede remyelination in multiple sclerosis (MS). Reduced MMP7 in MS lesions hinders this process, suggesting MMP7 upregulation as a therapeutic strategy.

Area of Science:

  • Neuroscience
  • Cell Biology
  • Biochemistry

Background:

  • Fibronectin aggregates prevent remyelination in multiple sclerosis (MS).
  • Matrix metalloproteinases (MMPs) remodel the extracellular matrix, including fibronectin.
  • Targeting fibronectin aggregates is a potential strategy to promote remyelination.

Purpose of the Study:

  • To investigate the role of MMPs, particularly MMP7, in degrading fibronectin aggregates.
  • To assess MMP7 expression in demyelination models and MS lesions.
  • To explore the cellular sources and regulation of MMP7 in the context of remyelination.

Main Methods:

  • Enzymatic assays using MMP7 to cleave fibronectin aggregates.
  • Analysis of MMP7 expression in lysolecithin-induced demyelination models.
  • Immunohistochemical analysis of proMMP7 in MS lesions.
  • In vitro studies with activated microglia and macrophages.

Main Results:

  • MMP7 effectively cleaved fibronectin aggregates, producing a specific fragment.
  • MMP7 expression was upregulated during acute demyelination but decreased in chronic MS lesions.
  • Microglia and macrophages are key sources of proMMP7, with IL-4 activation enhancing secretion.
  • MMP7-cleaved fibronectin fragments inhibited oligodendrocyte maturation, necessitating further clearance.

Conclusions:

  • MMP7 cleaves fibronectin aggregates, but reduced levels in MS lesions contribute to their persistence.
  • Upregulating MMP7 may be crucial for clearing remyelination-inhibiting fibronectin aggregates in MS.
  • Further degradation or phagocytosis of fibronectin fragments is essential for successful remyelination.

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