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World J Clin Oncol. Sep 24, 2026; 17(9): 124498
Published online Sep 24, 2026. doi: 10.5306/wjco.124498
Figure 1
Figure 1 Dual-track regulatory mechanisms of miR-204 inactivation in small cell lung cancer and non-small cell lung cancer. In small cell lung cancer (left panel), HuD binds to and stabilizes both the oncogenic LYPLAL1-DT (lncRNA) and PFN2 mRNA. LYPLAL1-DT functions as a competing endogenous RNA that indirectly inhibits miR-204-5p, thereby relieving miR-204-5p-mediated repression of PFN2. Elevated PFN2 promotes actin cytoskeletal remodeling, cancer cell proliferation, migration, and invasion. HuD further stabilizes PFN2 mRNA, forming a self-amplifying positive-feedback loop. In non-small cell lung cancer (right panel), DNMT-mediate promoter hypermethylation, directly suppressing miR-204 transcription, leading to NUAK1 upregulation. It activates the mTOR signaling cascade, leading to phosphorylation of 4E-BP1 and p70S6K1, enhanced protein synthesis and cancer progression. The both pathways converge on loss of miR-204 function despite distinct upstream mechanisms. SCLC: Small cell lung cancer; NSCLC: Non-small cell lung cancer.


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