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Dual role of ERK2/NF-κB signaling in TRAIL sensitivity
Myoung Woo Lee1,2,3, Dae Seong Kim1,2,3, Ji Eun Eom1
1Department of Pediatrics, Samsung Medical Center, Sungkyunkwan University School of Medicine Seoul, Korea.
Abstract:
Targeting tumor necrosis factor-related apoptosis-inducing ligand (TRAIL) signaling is a promising approach in cancer treatment. Although ERK and/or NF-κB signaling is involved in the expression of TRAIL receptors (TRAIL-R), the exact underlying mechanisms remain unknown. In this study, we evaluated the role of ERK2 and NF-κB in the cytotoxicity of TRAIL during cisplatin treatment. Cisplatin treatment of neuroepithelioma cells (SK-N-MC) significantly induced ERK2 activation and increased TRAIL cytotoxicity via the upregulation of death receptor 5 (DR5) expression. In partial ERK2 knockdown cell lines that maintained only basal levels of ERK2 activity, cisplatin treatment did not increase ERK2 activity or DR5 expression. These findings indicate that induced (rather than basal) ERK2 activity enhances TRAIL susceptibility via DR5 expression. In complete ERK2 knockdown cell lines with no basal ERK2 activity, DR4, DR5, and DcRs expression levels were increased, and additional treatment with cisplatin did not further increase TRAIL-R expression. Chemical inhibition of ERK2 also enhanced TRAIL cytotoxicity by upregulating DR4 and DR5 expression. These findings indicate that basal ERK2 activity suppresses TRAIL-R expression. Both basal and inducible ERK2 activities regulate TRAIL-R expression via the NF-κB signaling pathway. Overall, our findings suggest that the ERK2/NF-κB signaling pathway has a dual role in TRAIL susceptibility by differentially regulating TRAIL-R expression in the same cellular system.
Insights
The ERK2/NF-κB pathway has a dual role in cancer treatment by regulating tumor necrosis factor-related apoptosis-inducing ligand (TRAIL) receptor expression, impacting TRAIL cytotoxicity.
Area of Science:
- Oncology
- Molecular Biology
- Cell Signaling
Background:
- Targeting tumor necrosis factor-related apoptosis-inducing ligand (TRAIL) signaling is a key strategy in cancer therapy.
- The precise mechanisms by which ERK and NF-κB signaling influence TRAIL receptor (TRAIL-R) expression are not fully understood.
Purpose of the Study:
- To investigate the roles of ERK2 and NF-κB in TRAIL-mediated cytotoxicity during cisplatin treatment.
- To elucidate the differential regulation of TRAIL receptors by ERK2 activity.
Main Methods:
- Utilized neuroepithelioma cells (SK-N-MC) treated with cisplatin.
- Employed partial and complete ERK2 knockdown cell lines.
- Assessed TRAIL receptor (DR4, DR5, DcRs) expression and TRAIL cytotoxicity.
- Investigated the involvement of the NF-κB signaling pathway.
Main Results:
- Cisplatin-induced ERK2 activation upregulated death receptor 5 (DR5) expression, enhancing TRAIL cytotoxicity.
- Basal ERK2 activity suppressed TRAIL-R expression, while induced ERK2 activity enhanced it.
- Chemical inhibition of ERK2 increased TRAIL-R (DR4, DR5) expression and TRAIL cytotoxicity.
- Both basal and inducible ERK2 activities modulated TRAIL-R expression through the NF-κB pathway.
Conclusions:
- The ERK2/NF-κB signaling pathway exhibits a dual role in regulating TRAIL susceptibility.
- Differential regulation of TRAIL receptors by ERK2 activity impacts cancer cell response to TRAIL-based therapies.
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