Impact of Complex Apoptotic Signaling Pathways on Cancer Cell Sensitivity to Therapy
Ryungsa Kim1, Takanori Kin2, William T Beck3
1Department of Breast Surgery, Hiroshima Mark Clinic, 1-4-3F, 2-Chome Ohte-machi, Naka-ku, Hiroshima 730-0051, Japan.
Abstract:
Anticancer drugs induce apoptotic and non-apoptotic cell death in various cancer types. The signaling pathways for anticancer drug-induced apoptotic cell death have been shown to differ between drug-sensitive and drug-resistant cells. In atypical multidrug-resistant leukemia cells, the c-Jun/activator protein 1 (AP-1)/p53 signaling pathway leading to apoptotic death is altered. Cancer cells treated with anticancer drugs undergo c-Jun/AP-1-mediated apoptotic death and are involved in c-Jun N-terminal kinase activation and growth arrest- and DNA damage-inducible gene 153 (Gadd153)/CCAAT/enhancer-binding protein homologous protein pathway induction, regardless of the p53 genotype. Gadd153 induction is associated with mitochondrial membrane permeabilization after anticancer drug treatment and involves a coupled endoplasmic reticulum stress response. The induction of apoptosis by anticancer drugs is mediated by the intrinsic pathway (cytochrome c, Cyt c) and subsequent activation of the caspase cascade via proapoptotic genes (e.g., Bax and Bcl-xS) and their interactions. Anticancer drug-induced apoptosis involves caspase-dependent and caspase-independent pathways and occurs via intrinsic and extrinsic pathways. The targeting of antiapoptotic genes such as Bcl-2 enhances anticancer drug efficacy. The modulation of apoptotic signaling by Bcl-xS transduction increases the sensitivity of multidrug resistance-related protein-overexpressing epidermoid carcinoma cells to anticancer drugs. The significance of autophagy in cancer therapy remains to be elucidated. In this review, we summarize current knowledge of cancer cell death-related signaling pathways and their alterations during anticancer drug treatment and discuss potential strategies to enhance treatment efficacy.
Insights
Anticancer drugs trigger apoptosis through various pathways, including the c-Jun/AP-1/p53 and Gadd153 pathways, impacting drug resistance. Targeting apoptotic genes like Bcl-2 enhances treatment efficacy.
Area of Science:
- Oncology
- Molecular Biology
- Cell Death Signaling
Background:
- Anticancer drugs induce diverse cell death mechanisms, including apoptosis and non-apoptotic pathways.
- Signaling pathways for drug-induced apoptosis vary between sensitive and resistant cancer cells.
- The c-Jun/AP-1/p53 pathway is altered in multidrug-resistant leukemia, affecting apoptotic cell death.
Purpose of the Study:
- To review signaling pathways involved in anticancer drug-induced cell death.
- To discuss alterations in these pathways in drug-resistant cancer cells.
- To explore strategies for enhancing anticancer drug efficacy by modulating cell death pathways.
Main Methods:
- Review of existing literature on anticancer drug-induced cell death.
- Analysis of signaling pathways including c-Jun/AP-1, p53, Gadd153, and caspase cascades.
- Examination of the roles of intrinsic and extrinsic apoptotic pathways.
- Investigation of antiapoptotic genes (e.g., Bcl-2) and their modulation.
Main Results:
- Anticancer drugs induce apoptosis via c-Jun/AP-1 and Gadd153 pathways, irrespective of p53 status.
- Gadd153 induction involves mitochondrial permeabilization and endoplasmic reticulum stress.
- Apoptosis induction utilizes intrinsic (cytochrome c) and extrinsic pathways, involving caspase-dependent and -independent mechanisms.
- Targeting antiapoptotic genes like Bcl-2 and modulating Bcl-xS enhances drug sensitivity in resistant cells.
Conclusions:
- Anticancer drug efficacy can be improved by targeting specific cell death signaling pathways.
- Modulating apoptosis, particularly through antiapoptotic genes, offers a promising strategy against drug resistance.
- Further research is needed to elucidate the role of autophagy in cancer therapy.
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