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Troglitazone induces p27Kip1-associated cell-cycle arrest through down-regulating Skp2 in human hepatoma cells

Hironori Koga1, Masaru Harada, Motoaki Ohtsubo

  • 1Second Department of Medicine and Research Center for Innovative Cancer Therapy, Kurume University, Japan. hirokoga@med.kurume-u.ac.jp

Insights

Troglitazone, a peroxisome proliferator-activated receptor gamma (PPARgamma) ligand, reduces Skp2 expression, leading to increased p27(Kip1) accumulation in human hepatoma cells. This suggests potential for new cell-cycle-based antitumor strategies for hepatocellular carcinoma (HCC).

Area of Science:

  • Oncology
  • Cell Biology
  • Molecular Biology

Background:

  • Peroxisome proliferator-activated receptor gamma (PPARgamma) ligands show antitumoral effects.
  • PPARgamma ligands inhibit cell proliferation and induce differentiation in neoplasms.
  • Troglitazone treatment of hepatoma cells caused p27(Kip1) and cyclin E accumulation.

Purpose of the Study:

  • To investigate the role of Skp2 in p27(Kip1) down-regulation in troglitazone-treated human hepatoma cells.
  • To assess the impact of troglitazone on Skp2 expression in hepatoma cells.
  • To explore the therapeutic potential of troglitazone for hepatocellular carcinoma (HCC).

Main Methods:

  • Quantitative real-time RT-PCR to analyze Skp2 mRNA levels.
  • Ectopic Skp2 overexpression to assess resistance to troglitazone.
  • Analysis of Skp2 expression in surgically resected HCC tissue.

Main Results:

  • Troglitazone significantly decreased Skp2 expression and increased p27(Kip1) expression in hepatoma cells.
  • Other PPARgamma ligands (pioglitazone, ciglitazone) did not show this effect.
  • Skp2 overexpression conferred resistance to troglitazone, reducing G1 phase arrest.
  • Increased Skp2 expression was observed in moderately and poorly differentiated HCC tissues.

Conclusions:

  • Troglitazone attenuates Skp2 expression, promoting p27(Kip1) accumulation in human hepatoma cells.
  • This mechanism offers potential for novel cell-cycle-based antitumor strategies for advanced HCC.
  • Skp2 is implicated in the pathogenesis of HCC and may be a therapeutic target.

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