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Editor's Highlight: PPARβ/δ and PPARγ Inhibit Melanoma Tumorigenicity by Modulating Inflammation and Apoptosis
Michael G Borland1,2, Pei-Li Yao1, Ellen M Kehres2
1Department of Veterinary and Biomedical Sciences, The Center of Molecular Toxicology and Carcinogenesis, The Pennsylvania State University, University Park, Pennsylvania 16802.
Abstract:
Skin tumorigenesis results from DNA damage, increased inflammation, and evasion of apoptosis. The peroxisome proliferator-activated receptors (PPARs) can modulate these mechanisms in non-melanoma skin cancer. However, limited data exists regarding the role of PPARs in melanoma. This study examined the effect of proliferator-activated receptor-β/δ (PPARβ/δ) and PPARγ on cell proliferation, anchorage-dependent clonogenicity, and ectopic xenografts in the UACC903 human melanoma cell line. Stable overexpression of either PPARβ/δ or PPARγ enhanced ligand-induced expression of a PPARβ/δ/PPARγ target gene in UACC903 cell lines as compared with controls. The induction of target gene expression by ligand activation of PPARγ was not altered by overexpression of PPARβ/δ, or vice versa. Stable overexpression of either PPARβ/δ or PPARγ reduced the percentage of cells in the G1 and S phase of the cell cycle, and increased the percentage of cells in the G2/M phase of the cell cycle in UACC903 cell lines as compared with controls. Ligand activation of PPARβ/δ did not further alter the distribution of cells within each phase of the cell cycle. By contrast, ligand activation of PPARγ enhanced these changes in stable UACC903 cells overexpressing PPARγ compared with controls. Stable overexpression of either PPARβ/δ or PPARγ and/or ligand activation of either PPARβ/δ or PPARγ inhibited cell proliferation, and anchorage-dependent clonogenicity of UACC903 cell lines as compared with controls. Further, overexpression of either PPARβ/δ or PPARγ and/or ligand activation of either PPARβ/δ or PPARγ inhibited ectopic xenograft tumorigenicity derived from UACC903 melanoma cells as compared with controls, and this was likely due in part to induction of apoptosis. Results from these studies demonstrate the antitumorigenic effects of both PPARβ/δ and PPARγ and suggest that targeting these receptors may be useful for primary or secondary melanoma chemoprevention.
Insights
Targeting peroxisome proliferator-activated receptors (PPARs), specifically PPARβ/δ and PPARγ, shows significant antitumorigenic effects in melanoma. These receptors inhibit cell proliferation and xenograft growth, suggesting potential for melanoma chemoprevention.
Area of Science:
- Molecular biology
- Oncology
- Dermatology
Background:
- Skin tumorigenesis involves DNA damage, inflammation, and apoptosis evasion.
- Peroxisome proliferator-activated receptors (PPARs) influence non-melanoma skin cancer mechanisms.
- Limited data exists on PPARs' role in melanoma.
Purpose of the Study:
- To investigate the effects of PPARβ/δ and PPARγ on melanoma cell behavior.
- To assess the impact of PPARs on cell proliferation, clonogenicity, and xenograft growth in a human melanoma cell line.
Main Methods:
- Stable overexpression of PPARβ/δ or PPARγ in UACC903 melanoma cells.
- Analysis of cell cycle distribution, proliferation, and anchorage-dependent clonogenicity.
- Evaluation of ectopic xenograft tumor formation and apoptosis induction.
Main Results:
- Overexpression of PPARβ/δ or PPARγ enhanced target gene expression and altered cell cycle phases (G1/S reduction, G2/M increase).
- Ligand activation of PPARγ further enhanced cell cycle changes; PPARβ/δ ligand activation had no additional effect.
- Both PPARβ/δ and PPARγ, with or without ligand activation, inhibited cell proliferation, clonogenicity, and xenograft tumorigenicity, partly via apoptosis induction.
Conclusions:
- PPARβ/δ and PPARγ exhibit antitumorigenic effects in melanoma.
- Targeting PPARβ/δ and PPARγ may offer a strategy for melanoma chemoprevention.
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