ArticleCell death & disease2024
A novel protein encoded by circCOPA inhibits the malignant phenotype of glioblastoma cells and increases their sensitivity to temozolomide by disrupting the NONO-SFPQ complex.
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 11 papers.
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Who cites it
11 citing papers in PubMed.
- Peptides from the Shadows: Molecular Depth Insights and Clinical Horizons of Circular RNA-encoded Peptides in Gliomas.Neuromolecular medicine · 2026Review
- CFGSCDSA: Predicting circRNA-drug sensitivity associations based on collaborative feature learning and graph structure learning.PLoS computational biology · 2026Article
- METTL14/IGF2BP-mediated m6A methylation of circSLIT2 promotes malignant phenotypes of glioblastoma via the miR-127-5p/SH3GLB1 axis.American journal of cancer research · 2026Article
- CAF-derived exosomal circMPP6 drives ovarian cancer metastasis by coordinating nuclear and cytoplasmic regulation of ADAM22 to activate TGF-β/Smad signaling.International journal of biological sciences · 2026Article
- Targeting non-coding RNAs to overcome resistance and improving outcomes in glioblastoma.Global medical genetics · 2025Review
- CircATP5C1 promotes triple-negative breast cancer progression by binding IGF2BP2 to modulate CSF-1 secretion.Cancer biology & therapy · 2025Article
- Review
- The Role of Circular RNA in the Progression of Gliomas and Its Potential Clinical Applications.Biology · 2025Review
- Anti-Tumor Effects of Sheep Umbilical Cord Mesenchymal Stem Cells on Melanoma Cells.International journal of molecular sciences · 2025Article
- Circular RNAs modulate cancer drug resistance: advances and challenges.Cancer drug resistance (Alhambra, Calif.) · 2025Article
- Role of circular RNAs in DNA repair.RNA biology · 2024Review
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Authors and funding
6 authors.
Funding
Abstract
Glioblastoma (GBM) represents a primary malignant brain tumor. Temozolomide resistance is a major hurdle in GBM treatment. Proteins encoded by circular RNAs (circRNAs) can modulate the sensitivity of multiple tumor chemotherapies. However, the impact of circRNA-encoded proteins on GBM sensitivity to temozolomide remains unknown. Herein, we discover a circRNA (circCOPA) through the circRNA microarray profile in GBM samples, which can encode a novel 99 amino acid protein (COPA-99aa) through its internal ribosome entry site. Functionally, circCOPA overexpression in GBM cells inhibits cell proliferation, migration, and invasion in vitro and growth in vivo. Rather than itself, circCOPA mainly functions as a suppressive effector by encoding COPA-99aa. Moreover, we reveal that circCOPA is downregulated in GBM tissues and high expression of circCOPA is related to a better prognosis in GBM patients. Mechanistically, a heteromer of SFPQ and NONO is required for double-strand DNA break repair. COPA-99aa disrupts the dimerization of NONO and SFPQ by separately binding with the NONO and SFPQ proteins, thus resulting in the inhibition of proliferation or invasion and the increase of temozolomide-induced DNA damage in GBM cells. Collectively, our data suggest that circCOPA mainly contributes to inhibiting the GBM malignant phenotype through its encoded COPA-99aa and that COPA-99aa increases temozolomide-induced DNA damage by interfering with the dimerization of NONO and SFPQ. Restoring circCOPA or COPA-99aa may increase the sensitivity of patients to temozolomide.
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