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NOP2以依赖EIF3A的方式介导c-Myc的m5C修饰,从而重编程葡萄糖代谢并促进肝细胞癌进展。

NOP2-mediated m5C Modification of c-Myc in an EIF3A-Dependent Manner to Reprogram Glucose Metabolism and Promote Hepatocellular Carcinoma Progression.

作者信息

Zhang Hao, Zhai Xiangyu, Liu Yanfeng, Xia Zhijia, Xia Tong, Du Gang, Zhou Huaxin, Franziska Strohmer Dorothee, Bazhin Alexandr V, Li Ziqiang, Wang Xianqiang, Jin Bin, Guo Deliang

机构信息

Department of Hepatobiliary and Pancreatic Surgery, Zhongnan Hospital of Wuhan University, Wuhan, China.

Department of Hepatobiliary Surgery, The Second Hospital of Shandong University, Jinan, China.

出版信息

Research (Wash D C). 2023 Jun 30;6:0184. doi: 10.34133/research.0184. eCollection 2023.

Abstract

Mitochondrial dysfunction and glycolysis activation are improtant hallmarks of hepatocellular carcinoma (HCC). NOP2 is an S-adenosyl-L-methionine-dependent methyltransferase that regulates the cell cycle and proliferation activities. In this study, found that NOP2 contributes to HCC progression by promoting aerobic glycolysis. Our results revealed that NOP2 was highly expressed in HCC and that it was associated with unfavorable prognosis. NOP2 knockout in combination with sorafenib enhanced sorafenib sensitivity, which, in turn, led to marked tumor growth inhibition. Mechanistically, we identified that NOP2 regulates the c-Myc expression in an m5C-modification manner to promote glycolysis. Moreover, our results revealed that m5C methylation induced c-Myc mRNA degradation in an eukaryotic translation initiation factor 3 subunit A (EIF3A)-dependent manner. In addition, NOP2 was found to increase the expression of the glycolytic genes LDHA, TPI1, PKM2, and ENO1. Furthermore, MYC associated zinc finger protein (MAZ) was identified as the major transcription factor that directly controlled the expression of NOP2 in HCC. Notably, in a patient-derived tumor xenograft (PDX) model, adenovirus-mediated knockout of NOP2 maximized the antitumor effect and prolonged the survival of PDX-bearing mice. Our cumulative findings revealed the novel signaling pathway MAZ/NOP2/c-Myc in HCC and uncovered the important roles of NOP2 and m5C modifications in metabolic reprogramming. Therefore, targeting the MAZ/NOP2/c-Myc signaling pathway is suggested to be a potential therapeutic strategy for the treatment of HCC.

摘要

线粒体功能障碍和糖酵解激活是肝细胞癌(HCC)的重要标志。NOP2是一种依赖S-腺苷-L-甲硫氨酸的甲基转移酶,可调节细胞周期和增殖活性。在本研究中,发现NOP2通过促进有氧糖酵解促进HCC进展。我们的结果显示,NOP2在HCC中高表达,且与不良预后相关。NOP2基因敲除联合索拉非尼可增强索拉非尼敏感性,进而显著抑制肿瘤生长。机制上,我们发现NOP2以m5C修饰的方式调节c-Myc表达以促进糖酵解。此外,我们的结果显示,m5C甲基化以真核翻译起始因子3亚基A(EIF3A)依赖的方式诱导c-Myc mRNA降解。此外,发现NOP2可增加糖酵解基因LDHA、TPI1、PKM2和ENO1的表达。此外,MYC相关锌指蛋白(MAZ)被确定为直接控制HCC中NOP2表达的主要转录因子。值得注意的是,在患者来源的肿瘤异种移植(PDX)模型中,腺病毒介导的NOP2基因敲除可最大化抗肿瘤效果并延长荷瘤小鼠的生存期。我们的累积研究结果揭示了HCC中新型信号通路MAZ/NOP2/c-Myc,并揭示了NOP2和m5C修饰在代谢重编程中的重要作用。因此,靶向MAZ/NOP2/c-Myc信号通路被认为是治疗HCC的潜在治疗策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/74c9/10313139/9061fdaaa80c/research.0184.fig.001.jpg

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