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Published on: August 2, 2021
Targeting the Anti-Apoptotic Protein c-FLIP for Cancer Therapy
1Department of Pharmacology and Toxicology, Indiana University School of Medicine, 980 W. Walnut Street, R3-C524, Indianapolis, IN 46202, USA.
Abstract:
Cellular FLICE (FADD-like IL-1beta-converting enzyme)-inhibitory protein (c-FLIP) is a major resistance factor and critical anti-apoptotic regulator that inhibits tumor necrosis factor-alpha (TNF-alpha), Fas-L, and TNF-related apoptosis-inducing ligand (TRAIL)-induced apoptosis as well as chemotherapy-triggered apoptosis in malignant cells. c-FLIP is expressed as long (c-FLIP(L)), short (c-FLIP(S)), and c-FLIP(R) splice variants in human cells. c-FLIP binds to FADD and/or caspase-8 or -10 in a ligand-dependent and-independent fashion, which in turn prevents death-inducing signaling complex (DISC) formation and subsequent activation of the caspase cascade. Moreover, c-FLIP(L) and c-FLIP(S) are known to have multifunctional roles in various signaling pathways, as well as activating and/or upregulating several cytoprotective signaling molecules. Upregulation of c-FLIP has been found in various tumor types, and its downregulation has been shown to restore apoptosis triggered by cytokines and various chemotherapeutic agents. Hence, c-FLIP is an important target for cancer therapy. For example, small interfering RNAs (siRNAs) that specifically knockdown the expression of c-FLIP(L) in diverse human cancer cell lines augmented TRAIL-induced DISC recruitment and increased the efficacy of chemotherapeutic agents, thereby enhancing effector caspase stimulation and apoptosis. Moreover, small molecules causing degradation of c-FLIP as well as decreasing mRNA and protein levels of c-FLIP(L) and c-FLIP(S) splice variants have been found, and efforts are underway to develop other c-FLIP-targeted cancer therapies. This review focuses on (1) the functional role of c-FLIP splice variants in preventing apoptosis and inducing cytokine and drug resistance; (2) the molecular mechanisms that regulate c-FLIP expression; and (3) strategies to inhibit c-FLIP expression and function.
Insights
Cellular FLICE-inhibitory protein (c-FLIP) prevents apoptosis and drug resistance in cancer cells. Inhibiting c-FLIP, a key anti-apoptotic regulator, can restore cancer cell death and enhance therapy effectiveness.
Area of Science:
- Molecular Biology
- Cancer Biology
- Immunology
Background:
- Cellular FLICE-inhibitory protein (c-FLIP) is a critical regulator of apoptosis, inhibiting cell death induced by TNF-alpha, Fas-L, and TRAIL.
- c-FLIP splice variants (c-FLIP(L), c-FLIP(S), c-FLIP(R)) play multifunctional roles in signaling pathways and cytoprotection.
- Upregulation of c-FLIP is observed in various cancers, contributing to resistance against apoptosis and chemotherapy.
Purpose of the Study:
- To review the functional roles of c-FLIP splice variants in apoptosis and drug resistance.
- To elucidate the molecular mechanisms regulating c-FLIP expression.
- To discuss strategies for inhibiting c-FLIP expression and function for cancer therapy.
Main Methods:
- Review of existing literature on c-FLIP function, regulation, and therapeutic targeting.
- Analysis of studies utilizing small interfering RNAs (siRNAs) to knockdown c-FLIP(L) expression.
- Examination of small molecules designed to degrade c-FLIP or decrease its mRNA and protein levels.
Main Results:
- c-FLIP splice variants prevent apoptosis by inhibiting DISC formation and caspase activation.
- Downregulation of c-FLIP restores sensitivity to apoptosis triggered by cytokines and chemotherapeutic agents.
- siRNAs targeting c-FLIP(L) enhance TRAIL-induced apoptosis and chemotherapy efficacy.
Conclusions:
- c-FLIP is a significant target for cancer therapy due to its role in apoptosis resistance.
- Inhibiting c-FLIP expression or function can re-sensitize cancer cells to apoptosis and improve treatment outcomes.
- Development of c-FLIP-targeted therapies, including small molecules and RNA interference, holds promise for cancer treatment.
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