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IKKbeta-mediated nuclear factor-kappaB activation attenuates smac mimetic-induced apoptosis in cancer cells
Lang Bai1, Wenshu Chen, Wenjie Chen
1Molecular Biology and Lung Cancer Program, Lovelace Respiratory Research Institute, 2425 Ridgecrest Drive Southeast, Albuquerque, NM 87108, USA.
Abstract:
Smac mimetics (SM) have been recently reported to kill cancer cells through the extrinsic apoptosis pathway mediated by autocrine tumor necrosis factor (TNF). SM also activates nuclear factor-kappaB (NF-kappaB). However, how SM induces NF-kappaB and the role of NF-kappaB in SM-induced cancer cell death has not been well elucidated. We found that effective blockage of NF-kappaB had no detectable effect on SM compound 3 (SMC3)-induced TNF secretion, suggesting that the induction of TNF by SMC3 is independent of NF-kappaB. Conversely, SMC3-induced NF-kappaB activation was found to be mediated by autocrine TNF because this effect of SMC3 was effectively inhibited when TNF was blocked with either a TNF neutralizing antibody or TNF small interfering RNA. In addition, although SMC3 dramatically reduced c-IAP1 level, it had marginal effect on c-IAP2 expression, TNF-induced RIP modification, NF-kappaB activation, and downstream antiapoptosis NF-kappaB target expression. Furthermore, blocking NF-kappaB by targeting IKKbeta or RelA substantially potentiated SMC3-induced cytotoxicity, suggesting that the NF-kappaB pathway inhibits SMC3-induced apoptosis in cancer cells. Our results show that through TNF autocrine, SM induces an IKKbeta-mediated NF-kappaB activation pathway that protects cancer cells against SM-induced apoptosis, and thus, NF-kappaB blockage could be an effective approach for improving the anticancer value of SM.
Insights
Smac mimetics kill cancer cells via TNF-mediated apoptosis. However, they also activate nuclear factor-kappaB (NF-kappaB), which protects cells. Blocking NF-kappaB enhances Smac mimetic cancer cell killing.
Area of Science:
- Oncology
- Molecular Biology
- Immunology
Background:
- Smac mimetics (SM) induce cancer cell death through the extrinsic apoptosis pathway, involving autocrine tumor necrosis factor (TNF).
- SM also activate nuclear factor-kappaB (NF-kappaB), but its role in SM-induced cancer cell death is unclear.
Purpose of the Study:
- To elucidate the mechanism of NF-kappaB activation by SM.
- To determine the role of NF-kappaB in SM-induced cancer cell death.
Main Methods:
- Utilized Smac mimetic compound 3 (SMC3) in cancer cell models.
- Employed TNF neutralization antibodies and small interfering RNA (siRNA) to block TNF.
- Inhibited NF-kappaB pathway components IKKbeta and RelA.
Main Results:
- SMC3-induced TNF secretion is independent of NF-kappaB.
- SMC3-induced NF-kappaB activation is mediated by autocrine TNF.
- Blocking NF-kappaB significantly potentiated SMC3-induced cancer cell death.
Conclusions:
- SM induces an IKKbeta-mediated NF-kappaB activation pathway via TNF autocrine signaling.
- This NF-kappaB pathway protects cancer cells from SM-induced apoptosis.
- NF-kappaB blockade represents a potential strategy to enhance the efficacy of SM in cancer therapy.
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