4.5 Article

Peroxide is a key mediator of Bcl-2 down-regulation and apoptosis induction by cisplatin in human lung cancer cells

Journal

MOLECULAR PHARMACOLOGY
Volume 73, Issue 1, Pages 119-127

Publisher

AMER SOC PHARMACOLOGY EXPERIMENTAL THERAPEUTICS
DOI: 10.1124/mol.107.040873

Keywords

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Funding

  1. NHLBI NIH HHS [HL071545, HL076340] Funding Source: Medline
  2. NATIONAL HEART, LUNG, AND BLOOD INSTITUTE [R15HL071545, R01HL076340] Funding Source: NIH RePORTER

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Susceptibility to apoptosis is an essential prerequisite for successful eradication of tumor cells by chemotherapy. Consequently, resistance to apoptosis has been established as one of the mechanisms responsible for the failure of therapeutic approaches in many types of cancers. In the present study, we investigated the susceptibility of human lung cancer H460 cells to apoptotic cell death induced by cisplatin and determined its regulatory mechanisms. Treatment of the cells with cisplatin induced rapid generation of multiple oxidative species and a concomitant increase in apoptotic cell death. Apoptosis induced by cisplatin was mediated through the mitochondrial death pathway, which requires caspase-9 activation and is regulated by Bcl-2. Cisplatin induced down-regulation of Bcl-2 through a process that involves dephosphorylation and ubiquitination of the protein, which facilitates its degradation by proteasome. This down-regulation was inhibited by antioxidant enzymes catalase and glutathione peroxidase (H2O2 scavenger), but not by superoxide dismutase (O-2(center dot) over bar scavenger) or deferoxamine (OH center dot inhibitor). Electron spin resonance and flow cytometric analyses showed the formation of H2O2 along with O-2(center dot) over bar and OH center dot radicals after cisplatin treatment. H2O2 was generated in part by dismutation of O-2(center dot) over bar and served as a precursor for OH center dot. Together, our results indicate an essential role of H2O2 in the regulation of Bcl-2 and apoptotic cell death induced by cisplatin. Because aberrant expression of Bcl-2 has been associated with death resistance of cancer cells to chemotherapy, the results of this study could be used to aid the design of more effective strategies for cancer treatment.

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