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Phosphocatalytic Kinome Activity Profiling of Apoptotic and Ferroptotic Agents in Multiple Myeloma Cells
Emilie Logie1, Claudina Perez Novo1, Amber Driesen1
1Laboratory of Protein Science, Proteomics and Epigenetic Signaling (PPES) and Integrated Personalized and Precision Oncology Network (IPPON), Department of Biomedical Sciences, Campus Drie Eiken, University of Antwerp, Universiteitsplein 1, B-2610 Wilrijk, Belgium.
Abstract:
Through phosphorylation of their substrate proteins, protein kinases are crucial for transducing cellular signals and orchestrating biological processes, including cell death and survival. Recent studies have revealed that kinases are involved in ferroptosis, an iron-dependent mode of cell death associated with toxic lipid peroxidation. Given that ferroptosis is being explored as an alternative strategy to eliminate apoptosis-resistant tumor cells, further characterization of ferroptosis-dependent kinase changes might aid in identifying novel druggable targets for protein kinase inhibitors in the context of cancer treatment. To this end, we performed a phosphopeptidome based kinase activity profiling of glucocorticoid-resistant multiple myeloma cells treated with either the apoptosis inducer staurosporine (STS) or ferroptosis inducer RSL3 and compared their kinome activity signatures. Our data demonstrate that both cell death mechanisms inhibit the activity of kinases classified into the CMGC and AGC families, with STS showing a broader spectrum of serine/threonine kinase inhibition. In contrast, RSL3 targets a significant number of tyrosine kinases, including key players of the B-cell receptor signaling pathway. Remarkably, additional kinase profiling of the anti-cancer agent withaferin A revealed considerable overlap with ferroptosis and apoptosis kinome activity, explaining why withaferin A can induce mixed ferroptotic and apoptotic cell death features. Altogether, we show that apoptotic and ferroptotic cell death induce different kinase signaling changes and that kinome profiling might become a valid approach to identify cell death chemosensitization modalities of novel anti-cancer agents.
Insights
Protein kinases regulate cell death. This study reveals distinct kinase activity changes during apoptosis versus ferroptosis, identifying potential cancer drug targets. Kinome profiling aids in understanding cell death induction by anti-cancer agents.
Area of Science:
- Cellular signaling and kinase biology
- Cancer cell death mechanisms
- Drug target identification
Background:
- Protein kinases are vital for cell signaling and biological processes, including cell death.
- Ferroptosis, an iron-dependent cell death, is a promising strategy against apoptosis-resistant tumors.
- Understanding kinase involvement in ferroptosis could reveal new cancer therapeutic targets.
Purpose of the Study:
- To compare kinase activity profiles during apoptosis and ferroptosis.
- To identify specific kinases targeted by ferroptosis in multiple myeloma cells.
- To explore the role of kinome profiling in cancer treatment strategies.
Main Methods:
- Phosphopeptidome-based kinase activity profiling was used.
- Glucocorticoid-resistant multiple myeloma cells were treated with staurosporine (STS) or RSL3.
- Kinome activity signatures were compared between apoptosis and ferroptosis induction.
Main Results:
- Both STS (apoptosis) and RSL3 (ferroptosis) inhibited CMGC and AGC family kinases.
- STS exhibited broader serine/threonine kinase inhibition than RSL3.
- RSL3 significantly targeted tyrosine kinases, including B-cell receptor pathway components.
- Withaferin A showed overlapping kinase activity with both ferroptosis and apoptosis.
Conclusions:
- Apoptotic and ferroptotic cell death trigger distinct kinase signaling alterations.
- Kinome profiling can identify how anti-cancer agents sensitize cells to death.
- Targeting specific kinase pathways may offer novel strategies for cancer therapy.
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