Endometrial cancer(EC) is increasing worldwide, but its molecular mechanisms remain unclear. This study explored whether RBM15B-mediated m6A modification of FOXM1 promotes EC progression through the AURKA/TPX2 axis and epithelial-mesenchymal transition(EMT). Bioinformatics analyses assessed FOXM1 expression and prognosis in EC. RNA pull-down, MeRIP-PCR, dot blot, and RNA stability assays examined m6A regulation. Colony formation, Transwell, wound healing, and tumor sphere assays evaluated malignant behaviors. FOXM1 was significantly upregulated in EC and associated with unfavorable prognosis. Functional assays showed that FOXM1 enhanced proliferation, migration, invasion, and stemness of EC cells. Mechanistically, RBM15B increased m6A modification of FOXM1 mRNA and promoted expression. RBM15B knockdown inhibited malignant phenotypes and reduced activation of the downstream AURKA/TPX2 pathway. RBM15B-mediated m6A methylation stabilizes FOXM1 expression, activates the AURKA/TPX2 axis, and promotes EMT and EC progression. Targeting the RBM15B/FOXM1/AURKA/TPX2 pathway may offer therapeutic potential.
Zhang et al. (Mon,) studied this question.
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