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Published on: March 29, 2024
TAK1 suppresses RIPK1-dependent cell death and is associated with disease progression in melanoma
Biswajit Podder1,2, Cristiano Guttà1, Jan Rožanc3
1Institute of Cell Biology and Immunology, University of Stuttgart, Stuttgart, Germany.
Abstract:
Melanoma cells are highly resistant to conventional genotoxic agents, and BRAFV600/MEK-targeted therapies as well as immunotherapies frequently remain inefficient. Alternative means to treat melanoma, in particular through the induction of programmed cell death modalities such as apoptosis or necroptosis, therefore still need to be explored. Here, we report that melanoma cell lines expressing notable amounts of RIPK1, RIPK3 and MLKL, the key players of necroptosis signal transduction, fail to execute necroptotic cell death. Interestingly, the activity of transforming growth factor β-activated kinase 1 (TAK1) appears to prevent RIPK1 from contributing to cell death induction, since TAK1 inhibition by (5Z)-7-Oxozeaenol, deletion of MAP3K7 or the expression of inactive TAK1 were sufficient to sensitize melanoma cells to RIPK1-dependent cell death in response to TNFα or TRAIL based combination treatments. However, cell death was executed exclusively by apoptosis, even when RIPK3 expression was high. In addition, TAK1 inhibitor (5Z)-7-Oxozeaenol suppressed intrinsic or treatment-induced pro-survival signaling as well as the secretion of cytokines and soluble factors associated with melanoma disease progression. Correspondingly, elevated expression of TAK1 correlates with reduced disease free survival in patients diagnosed with primary melanoma. Overall, our results therefore demonstrate that TAK1 suppresses the susceptibility to RIPK1-dependent cell death and that high expression of TAK1 indicates an increased risk for disease progression in melanoma.
Insights
Transforming growth factor β-activated kinase 1 (TAK1) inhibition sensitizes melanoma cells to cell death. High TAK1 expression correlates with reduced survival, indicating its role in melanoma progression.
Area of Science:
- Oncology
- Molecular Biology
- Cell Death Pathways
Background:
- Melanoma exhibits resistance to standard therapies.
- Targeted therapies and immunotherapies show limited efficacy.
- Alternative cell death induction strategies are needed.
Purpose of the Study:
- Investigate the role of necroptosis in melanoma.
- Identify mechanisms preventing cell death in melanoma.
- Explore TAK1 as a therapeutic target in melanoma.
Main Methods:
- Assessed necroptosis execution in melanoma cell lines.
- Utilized TAK1 inhibition (e.g., (5Z)-7-Oxozeaenol) and genetic manipulation (MAP3K7 deletion).
- Analyzed cell death induction via TNFα/TRAIL combination treatments.
Main Results:
- Melanoma cells expressing necroptosis mediators (RIPK1, RIPK3, MLKL) failed to undergo necroptosis.
- TAK1 activity inhibited RIPK1-dependent cell death.
- TAK1 inhibition sensitized cells to apoptosis, not necroptosis.
- TAK1 inhibition reduced pro-survival signaling and melanoma-associated factors.
- Elevated TAK1 expression correlated with poorer disease-free survival in melanoma patients.
Conclusions:
- TAK1 suppresses susceptibility to RIPK1-dependent cell death in melanoma.
- TAK1 activity promotes melanoma cell survival and progression.
- Targeting TAK1 may offer a novel therapeutic strategy for melanoma.
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