Shedding of NG2 by MMP-13 attenuates anoikis

Nam E Joo1, Di Miao, Mercedes Bermúdez

  • 11 Department of Periodontics and Oral Medicine, School of Dentistry, University of Michigan , Ann Arbor, Michigan.

DNA and Cell Biology
|August 29, 2014
PubMed

Insights

Nerve/glial antigen 2 (NG2) promotes anoikis (cell death) when on the cell surface. Matrix metalloproteinase-13 (MMP-13) cleaves NG2, reducing anoikis and impacting periodontal disease.

Area of Science:

  • Cell biology
  • Molecular biology
  • Biochemistry

Background:

  • Anoikis is apoptosis triggered by detachment from the extracellular matrix.
  • Nerve/glial antigen 2 (NG2) acts as a novel anoikis receptor, with its expression influencing anoikis propagation and attenuation.
  • NG2 expression decreases during late anoikis, suggesting a role for its reduction in the process.

Purpose of the Study:

  • To investigate the hypothesis that NG2 undergoes cleavage to regulate anoikis.
  • To determine if matrix metalloproteinases (MMPs), specifically MMP-13, mediate NG2 cleavage and anoikis regulation.

Main Methods:

  • Investigated NG2 cleavage and release under anoikis conditions.
  • Assessed the impact of MMP-13 inhibition (using inhibitors and siRNA) on NG2 release and anoikis.
  • Examined the effect of MMP-13 overexpression and exogenous MMP-13 on NG2 shedding and anoikis.
  • Utilized NG2-null cells to confirm the role of NG2 in MMP-13-mediated anoikis regulation.

Main Results:

  • Anoikis conditions triggered the release of the NG2 extracellular domain, coinciding with increased MMP-13 expression.
  • MMP-13 inhibition or NG2 suppression blocked NG2 release and enhanced anoikis.
  • MMP-13 overexpression or addition reduced anoikis by promoting NG2 shedding.
  • MMP-13 inhibition increased anoikis in NG2-positive cells but not in NG2-null cells.

Conclusions:

  • NG2 retention on the cell surface promotes anoikis, while its shedding by MMP-13 attenuates anoikis.
  • MMP-13-mediated cleavage of NG2 is a key mechanism for regulating anoikis.
  • These findings in periodontal ligament fibroblasts suggest implications for periodontal inflammation and disease pathogenesis.

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