ArticleCell death & disease2024
Intracellular C5aR1 inhibits ferroptosis in glioblastoma through METTL3-dependent m6A methylation of GPX4.
Article in Cell death & disease, 2024. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 25 papers.
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Who cites it
25 citing papers in PubMed.
- RNA modifications as determinants of cancer cell death: from epitranscriptomic mechanisms to therapeutic targeting.Functional & integrative genomics · 2026Review
- Complement-Targeted Therapies in Glioblastoma: A Systematic Review.Biomedicines · 2026Review
- Mechanistic insights into TXNDC17-mediated ferroptosis suppression in glioblastoma progression.Biology direct · 2026Article
- Complement C5a/C5aR1 pathway facilitates glioblastoma progression via fostering glioma stem cell-macrophage symbiosis.Journal of neuroinflammation · 2026Article
- Biomimetic Nanoplatform for Targeted Glioblastoma Therapy via Concurrently Triggering GPX4/DHODH Mediated Ferroptosis.Advanced science (Weinheim, Baden-Wurttemberg, Germany) · 2026Article
- The Complosome: An Emerging Intracellular Complement Network in Cancer Development and Therapy.International journal of molecular sciences · 2026Review
- RNA modifications and cancer ferroptosis.Cancer cell international · 2026Review
- C5aR1 and cGAS/STING and their possible involvement in radiosensitivity of colorectal cancer.iScience · 2026Review
- Ferroptosis in Glioblastoma and Neuroblastoma: Molecular Mechanisms and Novel Therapeutic Strategies.Current issues in molecular biology · 2026Review
- Understanding the role of C5a/C5aR1-mediated complement activation pathway in tumor progression and therapy resistance.Science China. Life sciences · 2026Review
- Unlocking glioma vulnerabilities: targeting regulated cell death pathways for innovative therapies.Cell death discovery · 2026Review
- C5aR1 Inhibition Alleviates Cranial Radiation-Induced Cognitive Decline.Cancer research · 2026Article
- Natural products in treating sepsis-associated lung and liver injuries by mediating ferroptosis, current progress, and future perspective.Frontiers in pharmacology · 2026Review
- SYNCRIP drives ferroptosis resistance and metabolic activation via SIRT1 and HK2 in glioblastoma.International journal of biological sciences · 2026Article
- RNA m6A modification-regulated ferroptosis in cancer: mechanism and therapeutic potential.Frontiers in cell and developmental biology · 2026Review
- Mechanism and therapeutic prospects of ferroptosis regulation through m6A in cancer.Frontiers in cell and developmental biology · 2026Review
- RNA Methylation in Cancer Metabolism: from Mechanisms to Therapeutic Opportunities.International journal of biological sciences · 2026Review
- Post-translational modifications in ferroptosis: mechanisms and therapeutic potential.International journal of biological sciences · 2026Review
- Ferroptosis and metabolic reprogramming in the immunosuppressive microenvironment of glioblastoma: emerging mechanisms and novel strategies.Frontiers in immunology · 2026Review
- EF24 targets METTL3 to reprogram m6A methylation and induce ferroptosis: an epitranscriptomic mechanism with therapeutical potential for glioma.Cell communication and signaling : CCS · 2025Article
Corrections and comments
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Authors and funding
10 authors.
Funding
Abstract
Glioblastoma (GBM) is the most common primary intracranial malignant tumor. Recent literature suggests that induction of programmed death has become a mainstream cancer treatment strategy, with ferroptosis being the most widely studied mode. Complement C5a receptor 1 (C5aR1) is associated with both tumorigenesis and tumor-related immunity. However, knowledge regarding the role of C5aR1 in GBM progression is limited. In the present study, we observed significant upregulation of C5aR1 in glioma tissue. In addition, C5aR1 expression was found to be closely associated with patient prognosis and survival. Subsequent experimental verification demonstrated that C5aR1 promoted the progression of GBM mainly by suppressing ferroptosis induction, inhibiting the accumulation of lipid peroxides, and stabilizing the expression of the core antiferroptotic factor glutathione peroxidase 4 (GPX4). Aberrant N6-methyladenosine (m6A) modification of GPX4 mRNA contributes significantly to epigenetic tumorigenesis, and here, we report that selective methyltransferase-like 3 (METTL3)-dependent m6A methylation of GPX4 plays a key role in C5AR1 knockdown-induced ferroptosis induction. Mechanistically, ERK1/2 signaling pathway activation increases the METTL3 protein abundance in GBM cells. This activation then increases the stability of METTL3-mediated m6A modifications on GPX4, enabling it to fulfill its transcriptional function. More importantly, in an intracranial xenograft mouse model, PMX205, a C5aR1 inhibitor, promoted alterations in ferroptosis in GBM cells and inhibited GBM progression. In conclusion, our findings suggest that C5aR1 inhibits ferroptosis in GBM cells and promotes MettL3-dependent GPX4 expression through ERK1/2, thereby promoting glioma progression. Our study reveals a novel mechanism by which the intracellular complement receptor C5aR1 suppresses ferroptosis induction and promotes GBM progression. These findings may facilitate the identification of a potential therapeutic target for glioma.
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