Pancreatic ductal adenocarcinoma (PDAC) is characterized by high malignancy and poor prognosis. However, chemotherapy remains the cornerstone of its treatment. Through transcriptomic analysis of gemcitabine-treated PDAC cells, we identified TRDMT1, rather than other known 5-methylcytosine (m5C) methyltransferases, as a principal regulator of mRNA m5C methylation. TRDMT1 deficiency attenuated the malignant phenotype of PDAC cells and increased their sensitivity to gemcitabine, 5-fluorouracil, oxaliplatin, and irinotecan. Furthermore, deletion of TRDMT1 impaired the recruitment of homologous recombination-related proteins, including BRCA1, RAD51, and RAD52. Analysis of mRNA m5C modification sequencing in TRDMT1-deficient PDAC cells demonstrated that IRS2 exhibited significantly reduced m5C methylation levels and decreased expression. The IRS2/PI3K/AKT axis was identified as the potential downstream signaling pathway through which TRDMT1 mediated the chemotherapeutic response. Survival data from patients with PDAC, and findings from TRDMT1-deficient mouse models, further supported the role of TRDMT1 in reducing chemosensitivity. Collectively, these findings indicate that TRDMT1-mediated mRNA m5C methylation is essential for homologous recombination repair in PDAC and suggest that TRDMT1 may represent a potential therapeutic target for overcoming chemoresistance.
山东省济南市章丘区文博路2号
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