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September 4, 2001Proceedings of the National Academy of Sciences490 citationsOpen Access

The histone deacetylase inhibitor and chemotherapeutic agent suberoylanilide hydroxamic acid (SAHA) induces a cell-death pathway characterized by cleavage of Bid and production of reactive oxygen species

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ARAstrid A. RuefliMAMichael J. AusserlechnerDBDavid Bernhard

Key Points

  • The aim is to define how SAHA induces mitochondrial perturbation and apoptosis in cancer cells.
  • Analyzed effects of SAHA on cell death pathways using pharmacological inhibitors
  • Investigated the role of Bid cleavage in cell death processes
  • Assessed mitochondrial disruption and reactive oxygen species production
  • SAHA induces cell death characterized by Bid cleavage and reactive oxygen species production
  • Mitochondrial disruption occurs without activation of caspases such as -3 or -8
  • Cell death is mediated by transcriptional regulation related to SAHA's activity

Abstract

Many chemotherapeutic agents induce mitochondrial-membrane disruption to initiate apoptosis. However, the upstream events leading to drug-induced mitochondrial perturbation have remained poorly defined. We have used a variety of physiological and pharmacological inhibitors of distinct apoptotic pathways to analyze the manner by which suberoylanilide hydroxamic acid (SAHA), a chemotherapeutic agent and histone deacetylase inhibitor, induces cell death. We demonstrate that SAHA initiates cell death by inducing mitochondria-mediated death pathways characterized by cytochrome c release and the production of reactive oxygen species, and does not require the activation of key caspases such as caspase-8 or -3. We provide evidence that mitochondrial disruption is achieved by means of the cleavage of the BH3-only proapoptotic Bcl-2 family member Bid. SAHA-induced Bid cleavage was not blocked by caspase inhibitors or the overexpression of Bcl-2 but did require the transcriptional regulatory activity of SAHA. These data provide evidence of a mechanism of cell death mediated by transcriptional events that result in the cleavage of Bid, disruption of the mitochondrial membrane, and production of reactive oxygen species to induce cell death.

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Cite This Study

Ruefli et al. (2001) studied this question.

synapsesocial.com/papers/6a2022ced47ed904550dcbe5https://doi.org/10.1073/pnas.191208598
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