METTL5 promotes fatty acid metabolism by modulating peroxisome to promote hepatocellular carcinoma recurrence after thermal ablation

下调和上调 肝细胞癌 癌症研究 信使核糖核酸 翻译(生物学) 核糖核酸 化学 脂肪酸代谢 过氧化物酶体 医学 小RNA 射频消融术 体外 热烧蚀 新陈代谢 烧蚀 生物发生 生物 内科学 临床意义 环状RNA
作者
Zonglin Xie,Lina Wang,Yifan Wu,Yifan Zhang,Shuo Wang,Xuezhen Zeng,Ruiming Liang,Jianting Long,Jianping Guo,Sui Peng,Ming Kuang,Shuibin Lin,Zihao Dai,Shuling Chen
出处
期刊:Molecular Therapy [Elsevier BV]
标识
DOI:10.1016/j.ymthe.2025.11.016
摘要

Thermal ablation (e.g. radiofrequency ablation, RFA) is a critical curative therapy for hepatocellular carcinoma (HCC). However, high recurrence rate after ablation remains a major clinical challenge. Hyperactive mRNA translation mediated by aberrant RNA modifications is vital for tumor heat stress adaption. 18S rRNA m6A modification catalyzed by Methyltransferase 5 (METTL5) is one of the most prevalent rRNA modifications, however, the role of METTL5-mediated rRNA modification in HCC recurrence after RFA remains unknown. Here, we found that the levels of METTL5 and 18S rRNA m6A modification were significantly upregulated in post-RFA recurrent HCC and were further verified by insufficient RFA (iRFA) models in vitro and in vivo. Four mouse models, together with functional cell experiments, showed that METTL5 promoted HCC progression under heat stress. Mechanically, we demonstrated that heat-mediated METTL5 upregulation enhanced the PEX16 translation that promoted peroxisomal biogenesis and β-oxidation of very long-chain fatty acid (VLCFA), which promoted mitochondrial respiration to mediate HCC progression. Our study uncovers the novel mechanistic insights in HCC recurrence after iRFA, demonstrating the important role of heat stress-mediated tumor metabolism adaption by mRNA translation in HCC development. These findings identify METTL5 as a potential therapeutic target to prevent and treat HCC recurrence after thermal ablation.
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