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The inhibitors of apoptosis (IAPs) as cancer targets
Allison M Hunter1, Eric C LaCasse, Robert G Korneluk
1Apoptosis Research Centre, Children's Hospital of Eastern Ontario, 401 Smyth Road, Ottawa, ON, Canada, K1H 8L1.
Abstract:
Apoptosis has been accepted as a fundamental component in the pathogenesis of cancer, in addition to other human diseases including neurodegeneration, coronary disease and diabetes. The origin of cancer involves deregulated cellular proliferation and the suppression of apoptotic processes, ultimately leading to tumor establishment and growth. Several lines of evidence point toward the IAP family of proteins playing a role in oncogenesis, via their effective suppression of apoptosis. The central mechanisms of IAP apoptotic suppression appear to be through direct caspase and pro-caspase inhibition (primarily caspase 3 and 7) and modulation of, and by, the transcription factor NF-kappaB. Thus, when the IAPs are over-expressed or over-active, as is the case in many cancers, cells are no longer able to die in a physiologically programmed fashion and become increasingly resistant to standard chemo- and radiation therapies. To date several approaches have been taken to target and eliminate IAP function in an attempt to re-establish sensitivity, reduce toxicity, and improve efficacy of cancer treatment. In this review, we address IAP proteins as therapeutic targets for the treatment of cancer and emphasize the importance of novel therapeutic approaches for cancer therapy. Novel targets of IAP function are being identified and include gene therapy strategies and small molecule inhibitors that are based on endogenous IAP antagonists. As well, molecular mechanistic approaches, such as RNAi to deplete IAP expression, are in development.
Insights
Inhibitor of Apoptosis (IAP) proteins suppress cancer cell death, contributing to tumor growth and therapy resistance. Targeting IAPs offers a promising strategy to restore apoptosis and enhance cancer treatment efficacy.
Area of Science:
- Oncology
- Molecular Biology
- Biochemistry
Background:
- Apoptosis is crucial in preventing cancer by eliminating abnormal cells.
- Inhibitor of Apoptosis (IAP) proteins are frequently over-expressed in cancers, suppressing apoptosis and promoting tumor growth.
- IAPs contribute to chemo- and radio-resistance by inhibiting programmed cell death pathways.
Purpose of the Study:
- To review the role of IAP proteins in cancer pathogenesis.
- To explore IAP proteins as therapeutic targets for cancer treatment.
- To highlight novel therapeutic strategies aimed at IAP inhibition.
Main Methods:
- Review of existing literature on IAP function in cancer.
- Analysis of IAP's mechanisms in apoptosis suppression (caspase inhibition, NF-kappaB modulation).
- Discussion of emerging therapeutic approaches targeting IAPs.
Main Results:
- Over-expression of IAPs leads to suppressed apoptosis and cancer progression.
- IAPs' mechanisms involve direct inhibition of caspases (e.g., caspase 3, 7) and NF-kappaB pathway.
- IAP suppression can re-sensitize cancer cells to conventional therapies.
Conclusions:
- IAP proteins are critical regulators of apoptosis and key players in oncogenesis.
- Targeting IAPs represents a significant therapeutic strategy for improving cancer treatment outcomes.
- Novel approaches including small molecule inhibitors and gene therapy hold promise for IAP-targeted cancer therapy.
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