Matrix metalloproteinase-12 gene regulation by a PPAR alpha agonist in human monocyte-derived macrophages

Imen Jguirim Souissi1, Ludivine Billiet, Clarisse Cuaz-Pérolin

  • 1Research Laboratory on Atherosclerotic Biological and Genetic Factors, Faculty of Medicine, Monastir TN-5019, Tunisia.

Insights

Peroxisome proliferator-activated receptor alpha (PPARα) agonists inhibit matrix metalloproteinase-12 (MMP-12) in macrophages. This finding suggests PPARα agonists could treat atherosclerosis by reducing inflammation and plaque rupture.

Area of Science:

  • Cell Biology
  • Molecular Biology
  • Cardiovascular Research

Background:

  • Matrix metalloproteinase-12 (MMP-12) is elevated in atherosclerotic lesions and linked to degenerative diseases.
  • Inflammatory cytokines like IL-1beta increase MMP-12 in macrophages.

Purpose of the Study:

  • Investigate the role of peroxisome proliferator-activated receptors (PPARs), specifically PPARα and PPARγ, in regulating MMP-12 expression in human monocyte-derived macrophages (HMDM).

Main Methods:

  • Treated HMDM with IL-1beta and PPARα agonists (GW647).
  • Assessed MMP-12 mRNA and protein levels.
  • Utilized reporter gene assays, knockout mice (PPARα-/-), gel shift, and ChIP experiments to analyze promoter activity and transcription factor interactions.

Main Results:

  • PPARα activation, via GW647, dose-dependently downregulated MMP-12 in IL-1beta-stimulated HMDM.
  • This inhibitory effect was absent in PPARα(-/-) macrophages.
  • Reporter gene assays showed reduced MMP-12 promoter activity.
  • Mechanism involves PPARα-mediated protein-protein interaction with c-Fos/c-Jun, inhibiting AP-1 binding.

Conclusions:

  • PPARα agonists effectively inhibit MMP-12 expression in macrophages.
  • This inhibition occurs through interference with AP-1 transcription factor binding.
  • PPARα agonists show therapeutic potential for atherosclerosis by reducing inflammation and plaque instability.

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