Matrix metalloproteinase-14 promotes LRP6 shedding in vascular smooth muscle cells and its expression is elevated in the tibial arteries from peripheral artery disease

  • Biochim Biophys Acta Gen Subj. 2026 Aug;1870(8):130964. doi: 10.1016/j.bbagen.2026.130964.
Hui-Guang Chen  1 Di Gao  1 Gui-Feng Zeng  1 Guo-Ping Zhang  1 Zi-Yan Yuan  1 De-Hong Pan  1 Yi-Kun Qin  1 Zhong-Yuan Lv  1 Xiao-Bo Tan  1 Guo-Tian Chen  1 Gui-Qing Wang  2 Da-Wei Zhang  3 Xiao-Dan Xia  4
Affiliations
  • 1. Department of Orthopedics, Affiliated Qingyuan Hospital (Qingyuan People's Hospital), Guangzhou Medical University, Qingyuan, Guangdong 511518, China.
  • 2. Department of Orthopedics, Affiliated Qingyuan Hospital (Qingyuan People's Hospital), Guangzhou Medical University, Qingyuan, Guangdong 511518, China. Electronic address: [email protected].
  • 3. Department of Pediatrics and Group on the Molecular and Cell Biology of Lipids, University of Alberta, Alberta, Canada. Electronic address: [email protected].
  • 4. Department of Orthopedics, Affiliated Qingyuan Hospital (Qingyuan People's Hospital), Guangzhou Medical University, Qingyuan, Guangdong 511518, China. Electronic address: [email protected].
Abstract

Vascular smooth muscle cells (VSMCs) dedifferentiation is a key driver of peripheral artery disease (PAD), a common complication of atherosclerosis. Although matrix metallopeptidase 14 (MMP14) has been implicated in promoting VSMC dedifferentiation, the underlying mechanisms remain incompletely defined. Here, we demonstrate that MMP14 expression is markedly increased in PAD plaques, accompanied by elevated platelet-derived growth factor receptor-β (PDGFRβ) and reduced low-density lipoprotein receptor-related protein 6 (LRP6) levels, predominantly within VSMCs, compared with plaque-free arterial segments. Mechanistically, MMP14 selectively promoted LRP6 shedding without affecting LRP5 in VSMCs. Genetic or pharmacological inhibition of MMP14 increased LRP6 abundance, reduced PDGFRβ and SP1 expression, attenuated ERK phosphorylation, and suppressed VSMC proliferation and migration. In contrast, MMP14 overexpression produced opposite effects. Collectively, these findings indicate that MMP14 enhances VSMC proliferation and migration through modulation of the LRP6-PDGFRβ signaling axis.

Keywords
LRP6; MMP14; PDGFR beta; Peripheral artery disease; Shedding; Smooth muscle cell.