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Strategies for Tracking Anastasis, A Cell Survival Phenomenon that Reverses Apoptosis
Published on: February 16, 2015
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.
Abstract:
Disruption of cell-matrix interactions can lead to anoikis-apoptosis due to loss of matrix contacts. We previously showed that Nerve/glial antigen 2 (NG2) is a novel anoikis receptor. Specifically, overexpression of NG2 leads to anoikis propagation, whereas its suppression leads to anoikis attenuation. Interestingly, NG2 expression decreases in late anoikis, suggesting that NG2 reduction is also critical to this process. Thus, we hypothesized that NG2 undergoes cleavage to curtail anoikis propagation. Further, since matrix metalloproteinases (MMPs) cleave cell surface receptors, play a major role in modulating apoptosis, and are associated with death receptor cleavage during apoptosis, we further hypothesized that cleavage of NG2 could be mediated by MMPs to regulate anoikis. Indeed, anoikis conditions triggered release of the NG2 extracellular domain into condition media during late apoptosis, and this coincided with increased MMP-13 expression. Treatment with an MMP-13 inhibitor and MMP-13 siRNA increased anoikis, since these treatments blocked NG2 release. Further, NG2-positive cells exhibited increased anoikis upon MMP-13 inhibition, whereas MMP-13 inhibition did not increase anoikis in NG2-null cells, corroborating that retention of NG2 on the cell membrane is critical for sustaining anoikis, and its cleavage for mediating anoikis attenuation. Similarly, NG2 suppression with siRNA inhibited NG2 release and anoikis. In contrast, MMP-13 overexpression or exogenous MMP-13 reduced anoikis by more effectively shedding NG2. In conclusion, maintenance of NG2 on the cell surface promotes anoikis propagation, whereas its shedding by MMP-13 actions attenuates anoikis. Given that these findings are derived in the context of periodontal ligament fibroblasts, these data have implications for periodontal inflammation and periodontal disease pathogenesis.
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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