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Apoptosis and cancer: mutations within caspase genes

Journal of Medical Genetics · 2009 · Vol. 46(8) · pp. 497–510
Saeid GhavamiMohammad HashemiSudharsana Rao AndeBehzad YeganehWenyan XiaoMohsen EshraghiChristine BusKamran KadkhodaEmilia WiechećAndrew J. HalaykoM Los

Abstract

The inactivation of programmed cell death has profound effects not only on the development but also on the overall integrity of multicellular organisms. Beside developmental abnormalities, it may lead to tumorigenesis, autoimmunity, and other serious health problems. Deregulated apoptosis may also be the leading cause of cancer therapy chemoresistance. Caspase family of cysteinyl-proteases plays the key role in the initiation and execution of programmed cell death. This review gives an overview of the role of caspases, their natural modulators like IAPs, FLIPs, and Smac/Diablo in apoptosis and upon inactivation, and also in cancer development. Besides describing the basic mechanisms governing programmed cell death, a large part of this review is dedicated to previous studies that were focused on screening tumours for mutations within caspase genes as well as their regulators. The last part of this review discusses several emerging treatments that involve modulation of caspases and their regulators. Thus, we also highlight caspase cascade modulating experimental anticancer drugs like cFLIP-antagonist CDDO-Me; cIAP1 antagonists OSU-03012 and ME-BS; and XIAP small molecule antagonists 1396-11, 1396-12, 1396-28, triptolide, AEG35156, survivin/Hsp90 antagonist shephedrin, and some of the direct activators of procaspase-3.

Cell death mechanisms and regulationAutophagy in Disease and TherapyPhagocytosis and Immune RegulationXIAPCaspaseProgrammed cell deathInhibitor of apoptosisPyroptosisApoptosisBiologyProteasesCarcinogenesisCancer research

MeSH terms

AnimalsHumansModels, BiologicalMutationNeoplasmsApoptosisCaspasesCaspase Inhibitors

Funding

  • Manitoba Health Research Council
  • Canadian Lung Association
  • Deutsche Forschungsgemeinschaft
  • Deutsche Krebshilfe
  • Canadian Institutes of Health Research
Citations
704
FWCI
15.19
field-weighted impact
References
228
Percentile
99%
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Citations per year
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