ArticleCancer research2025
Recharacterization of the Tumor Suppressive Mechanism of RSL3 Identifies the Selenoproteome as a Druggable Pathway in Colorectal Cancer.
Article in Cancer research, 2025. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 22 papers.
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Who cites it
22 citing papers in PubMed.
- Ferroptosis in kidney disease.Nature reviews. Nephrology · 2026Review
- Targeting microglial glutaminase 1 protects against ferroptosis-driven cognitive impairment in perioperative neurocognitive disorders.Cell death and differentiation · 2026Article
- Cell size modulates ferroptosis susceptibility.eLife · 2026Article
- Translating ferroptosis into oncology: challenges, opportunities and future directions.Nature reviews. Clinical oncology · 2026Review
- Ferroptosis vulnerability of enzalutamide resistant prostate cancer conferred by ACSL4 overexpression and GPX4 antagonism.Cell death & disease · 2026Article
- Fibroblast-specificAmerican journal of physiology. Gastrointestinal and liver physiology · 2026Article
- Labile iron pool dynamics do not drive ferroptosis in colorectal cancer cells.The Journal of biological chemistry · 2026Article
- Lipid metabolism as a central driver of immune remodeling and therapeutic vulnerability in metastatic colorectal cancer.Lipids in health and disease · 2026Review
- Dissecting Complex Interactions Between Ferroptosis and the Proteasome.bioRxiv : the preprint server for biology · 2026Article
- Caspase-3/7 deficiency results in enhanced intestinal inflammation and reduced tumorigenesis.Science advances · 2026Article
- Cell size modulates ferroptosis susceptibility.bioRxiv : the preprint server for biology · 2026Article
- Emerging roles of tRNA modification-mediated codon-specific translational reprogramming in cancer biology.Cell death & disease · 2026Review
- Article
- Metabolic Functions and Mechanisms of Selenium, Selenocysteine, and GPX4 Mediated Immune Regulation Through Autophagy in Solid Tumors.Food science & nutrition · 2025Review
- Targeting ferroptosis and cuproptosis in gastrointestinal cancers: molecular mechanisms, metabolic vulnerabilities, and therapeutic interventions.Molecular biomedicine · 2025Review
- Synergistic activity of RSL3 and Pyrimethamine to inhibit the proliferation ofAntimicrobial agents and chemotherapy · 2025Article
- Repurposing Asparaginase Therapy to Target Cisplatin-Resistant Cancer Cells.Fundamental & clinical pharmacology · 2025Article
- Mendelian randomization analysis of druggable gene expression in liver cancer risk and autoimmune hepatitis.Discover oncology · 2025Article
- Labile iron pool dynamics do not drive ferroptosis potentiation in colorectal cancer cells.bioRxiv : the preprint server for biology · 2025Article
- Ferreting Out Ferroptosis: Extending the Mechanism of Action of RSL3 to the Selenoproteome in Colorectal Cancer.Cancer research · 2025Article
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Abstract
Ferroptosis is a nonapoptotic form of cell death driven by iron-dependent lipid peroxide accumulation. Colorectal cancer cells feature elevated intracellular iron and reactive oxygen species that heighten ferroptosis sensitivity. The ferroptosis inducer (S)-RSL3 [(1S,3R)-RSL3] is widely described as a selective inhibitor of the selenocysteine-containing enzyme (selenoprotein) glutathione peroxidase 4 (GPX4), which detoxifies lipid peroxides using glutathione. However, through chemical controls using the (R) stereoisomer of RSL3 [(1R,3R)-RSL3] that does not bind GPX4, combined with inducible genetic knockdowns of GPX4 in colorectal cancer cell lines, we revealed in this study that GPX4 dependency does not always align with (S)-RSL3 sensitivity, thereby questioning the current characterization of GPX4 as the primary target of (S)-RSL3. Affinity pull-down mass spectrometry with modified (S)-RSL3 probes identified multiple selenoprotein targets, indicating broad selenoprotein inhibition. Further investigation of the therapeutic potential of broadly disrupting the selenoproteome as a therapeutic strategy in colorectal cancer showed that the selenoprotein inhibitor auranofin, an FDA-approved gold salt, chemically induced oxidative cell death and ferroptosis in colorectal cancer models in vitro and in vivo. Similarly, genetic perturbation of ALKBH8, a tRNA-selenocysteine methyltransferase required for selenoprotein translation, suppressed colorectal cancer growth. In summary, these findings recharacterize the mechanism of (S)-RSL3 beyond GPX4 inhibition and establish selenoproteome disruption as a colorectal cancer therapeutic strategy. SIGNIFICANCE: Chemoproteomic profiling reveals that RSL3 functions through pan-selenoprotein inhibition beyond GPX4 and identifies ALKBH8, a tRNA-selenocysteine methyltransferase essential for selenoprotein translation, as a therapeutic target to disrupt redox balance in colorectal cancer. See related commentary by Short, p. 2775.
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