RBM15-Mediated m6A Modification Regulates Proliferation and Migration of Pancreatic Cancer Cells via the lncRNA LINC01320/miR-1287-5p/FBXO11 Axis
10.4062/biomolther.2025.159
- Author:
Xin DENG
1
;
Baosheng WANG
Author Information
1. Department of General Surgery, Shengjing Hospital of China Medical University, Shenyang 110000, China
- Publication Type:Original Article
- From:Biomolecules & Therapeutics
2026;34(3):618-631
- CountryRepublic of Korea
- Language:English
-
Abstract:
Pancreatic cancer (PC) is life-threatening with unfavorable outcomes. RBM15, an m6A methylation modulator, is a potential biomarker for cancers. This study delved into the mechanism of RBM15-mediated m6A modification in PC. RBM15, LINC01320, miR-1287-5p, and FBXO11 levels in PC tissues and cells were examined. Cell proliferation, invasion, and migration were determined. The enrichment of m6A on LINC01320 and LINC01320 stability were detected. Joint experiments were designed to analyze the role of LINC01320 or FBXO11 in PC cell growth. The tumor xenograft in nude mice was established, and the effect of RBM15 on PC cell proliferation was verified in vivo. RBM15, LINC01320, and FBXO11 were significantly increased in PC, while miR-1287-5p was decreased. RBM15 downregulation reduced PC cell proliferation, invasion, and migration. In mechanism, RBM15-mediated m6A modification increased LINC01320 stability and its expression, thus upregulating FBXO11 transcription by competitively binding to miR-1287-5p. Overexpression of LINC01320 or FBXO11 abated the inhibition of RBM15 downregulation on PC cells. RBM15 knockdown inhibited tumor size and weight and reduced the positive rate of Ki67 through LINC01320/miR-1287-5p/FBXO11 axis. Overall, RBM15-mediated m6A modification increases LINC01320 stability and promotes its expression and FBXO11 transcription by competitive binding to miR-1287-5p, ultimately promoting PC cell growth.