ArticleJournal of translational medicine2025
RBM15 recruits myeloid-derived suppressor cells via the m6A-IGF2BP3/CBR3-AS1/miR-409-3p/CXCL1 axis, facilitating radioresistance in non-small-cell lung cancer.
Article in Journal of translational medicine, 2025. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 21 papers.
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Who cites it
21 citing papers in PubMed.
- lncRNA JPX promotes radioresistance in nasopharyngeal carcinoma via the miR-1301-3p/PIK3R2-mediated autophagy pathway.Translational cancer research · 2026Article
- RBM15 promotes hyperglycemia-induced retinal endothelial cell injury by regulating FOXO3 stability via m6A modification.Molecular and cellular biochemistry · 2026Article
- The lncRNA-m6A axis in cancer: a bidirectional regulatory network in tumor progression and therapeutic resistance.Journal of translational medicine · 2026Review
- Combined Serum Expression of lncRNA CBR3-AS1 and miR-3163: Prognostic Significance and Underlying Mechanism in Severe Pneumonia.The clinical respiratory journal · 2026Article
- Mechanism of RBM15 in the Immune Escape of Non-small Cell Lung Cancer Cells Via the LncRNA EGFR-AS1/USP3/PD-L1 Axis.Biological procedures online · 2026Article
- NOP58 modulates radiosensitivity in non-small cell lung cancer via DDX18-mediated DNA damage repair.Journal of radiation research · 2026Article
- RNA Regulatory Networks: Key Hubs in the Panorama of Cancer and Emerging Therapeutic Targets.MedComm · 2026Review
- Tumor-immune crosstalk in lung cancer: emerging roles of long non-coding RNAs.Frontiers in immunology · 2026Review
- Adenosine signaling in tumor immune escape: metabolic checkpoints, myeloid suppression, and combination immunotherapy.Frontiers in oncology · 2026Review
- RBM15 Mediated m6A Modification of SRSF1 Inhibits Cuproptosis in Non-Small Cell Lung Cancer by Mediating ATP7B Alternative Splicing.The Kaohsiung journal of medical sciences · 2026Article
- RBM15 Enhances 5-Fluorouracil Drug Sensitivity and Suppresses Gastric Cancer Progression by Modulating N6-Methyladenosine Modification of ECT2-Dependent IGF2BP3.Research (Washington, D.C.) · 2026Article
- Myeloid-Derived Suppressor Cells and Radiotherapy: Regulation and Clinical Implications.Journal of Cancer · 2026Review
- mFrontiers in immunology · 2026Review
- LncRNAs: key regulators and molecular mechanisms in lung cancer radiosensitivity.Open medicine (Warsaw, Poland) · 2026Review
- RNA-binding motif proteins as context-dependent regulators of tumor-immune crosstalk, genome stability, and therapeutic vulnerabilities in cancer.Frontiers in immunology · 2026Review
- N6-methyladenosine: a key regulator in ocular disease mechanisms and treatment.Cell death discovery · 2025Review
- Role of non-coding RNAs in radiotherapy sensitivity in non-small cell lung cancer.Discover oncology · 2025Review
- Role of N6-methyladenosine methyltransferase component RBM15 in cancer progression and its therapeutic potential.Discover oncology · 2025Review
- M6A RNA modification: focusing on non-small cell lung cancer progression, therapeutic strategies and challenges.Frontiers in oncology · 2025Review
- RBM15-mediated mFrontiers in cell and developmental biology · 2025Review
Corrections and comments
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Authors and funding
13 authors.
Funding
Abstract
backgroundRadiotherapy is commonly used for locoregionally advanced NSCLC, but radioresistance is a clinical challenge. The long non-coding RNA CBR3-AS1 mediates radioresistance in NSCLC, yet the underlying molecular mechanism is unclear. This study aims to explore whether and how N6-methyladenosine (m6A) modification regulates CBR3-AS1 expression and promotes NSCLC radioresistance.
methodsIntegrative bioinformatics analyses were used to investigate the m6A methyltransferases that were associated with CBR3-AS1 expression and radioresistance of patients using data from The Cancer Genome Atlas of lung adenocarcinoma and squamous cell carcinoma. Clinical samples of 133 patients with NSCLC was collected to validate the correlation of the methyltransferase with radioresistance. The functional role and molecular mechanism of the methyltransferase in radioresistance was investigated through a series of in vitro experiments including m6A MeRIP-PCR, lentivirus transfection, RNA immunoprecipitation, Luciferase reporter, Colony formation, Transwell invasion, Flow cytometry, ELISA and TUNEL assay and in vivo experiments.
resultsThe methyltransferase RNA binding motif protein 15 (RBM15) was identified as it was significantly positively correlated with CBR3-AS1 expression and overall survival of NSCLC patients receiving radiotherapy. The clinical samples demonstrated that the high protein expression of RBM15 was significantly enriched in patients with radioresistance as well as associated with poor prognosis of patients receiving radiotherapy. In vitro, RBM15 silencing enhanced the effects of radiation on the growth and invasion inhibition, and apoptosis induction of NSCLC cells; RBM15 overexpression had the opposite effects. Mechanistically, RBM15 induced CBR3-AS1 upregulation via an m6A-IGF2BP3-dependent mechanism, inducing CXCL1 expression by sponging miR-409-3p to recruit myeloid-derived suppressor cells (MDSCs) and inhibit T cell activity. In vivo, RBM15 silencing suppressed MDSC invasiveness and enhanced CD8 + and CD4 + T cell infiltration, causing NSCLC cells to overcome radioresistance.
conclusionOur study identifies methyltransferase RBM15 as a potential therapeutic target for NSCLC radioresistance whose inhibition reverses resistance through limiting MDSC recruitment via the m6A-IGF2BP3-CBR3-AS1/miR-409-3p/CXCL1 axis.
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