The Role of Matrix Metalloproteinase-13 (MMP13) in TGFβ/BMP Pathway Regulation of Fibro-Adipogenic Progenitor (FAP)

Mengyao Liu1,2,3, Brian T Feeley1,2, Hubert T Kim1,2

  • 1San Francisco Veterans Affairs Health Care System, Department of Veterans Affairs, San Francisco, CA, USA.

Abstract

Insights

Matrix metalloproteinase-13 (MMP13) regulates fibro/adipogenic progenitor (FAP) differentiation, impacting muscle fibrosis and fatty infiltration. MMP13 acts as a key mediator in the TGFβ/BMP pathway, offering a potential therapeutic target.

Area of Science:

  • Muscle biology
  • Cellular differentiation
  • Biochemistry

Background:

  • Muscle fibrosis and fatty infiltration (FI) are common in muscle diseases.
  • Fibro/adipogenic progenitors (FAPs) are the primary source of fibrosis and FI.
  • MMP13 knockout mice exhibit increased FI, suggesting MMP13's role in FI.

Purpose of the Study:

  • To investigate the role of MMP13 in FAP differentiation.
  • To determine how MMP13 influences TGFβ and BMP signaling in FAPs.
  • To explore MMP13 as a therapeutic target for muscle fibrosis and FI.

Main Methods:

  • Isolated FAPs from wildtype and MMP13 knockout mice using FACS.
  • Assessed adipogenic and fibrogenic differentiation via immunofluorescence and gene expression.
  • Treated FAPs with TGFβ1, BMP7, and MMP13 inhibitors to analyze signaling pathway effects.

Main Results:

  • MMP13 knockout FAPs showed increased adipogenesis and decreased fibrogenesis.
  • MMP13 inhibition mimicked knockout phenotypes.
  • TGFβ1 and BMP7 signaling effects on FAP differentiation were MMP13-dependent.

Conclusions:

  • TGFβ1 promotes fibrogenesis and inhibits adipogenesis; BMP7 has opposing effects.
  • MMP13 is crucial for TGFβ/BMP pathway-mediated FAP differentiation.
  • MMP13 is a potential therapeutic target for muscle fibrosis and FI.

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