m6a修饰的BFSP1通过上调原调节蛋白4诱导有氧糖酵解促进肝癌生长和转移。

IF 6.3 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY
Rong Li, Shunle Li, Lin Shen, Junhui Li, Di Zhang, Jinmin Yu, Lanxuan Huang, Na Liu, Hongwei Lu, Meng Xu
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引用次数: 0

摘要

RNA n6 -甲基腺苷(m6A)是真核生物中常见的RNA修饰,其异常调控与癌症进展密切相关。有氧糖酵解是癌细胞获取能量的主要途径。在肝癌中发现串珠细丝结构蛋白1 (BFSP1)是m6A相关基因。然而,m6a修饰的BFSP1对有氧糖酵解的影响及其在肝癌进展中的调节机制尚未探讨。我们发现BFSP1在肝癌细胞和组织中表达上调。过表达BFSP1促进肝癌细胞的活力、侵袭和有氧糖酵解,而下调BFSP1则表现相反的效果。免疫共沉淀、免疫荧光和GST下拉分析显示,BFSP1与原莫达林4 (TMOD4)直接相互作用,TMOD4的敲低逆转了BFSP1过度表达诱导的肝癌细胞恶性表型和有氧糖酵解。此外,甲基转移酶样3 (METTL3)通过增加BFSP1 mRNA的m6A修饰来增强BFSP1的稳定性,这是通过依赖于ythdf1的方式实现的。小鼠体内实验证实,METTL3通过促进m6A修饰BFSP1 mRNA来提高BFSP1的稳定性,敲低BFSP1可抑制肿瘤的生长和转移。综上所述,mettl3介导的BFSP1 mRNA的m6A甲基化在肝癌的有氧糖酵解和进展中起着重要作用,为肝癌的治疗提供了潜在的治疗策略。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
M6A-modified BFSP1 induces aerobic glycolysis to promote liver cancer growth and metastasis through upregulating tropomodulin 4.

RNA N6-methyladenosine (m6A) is a common RNA modification in eukaryotes, and its abnormal regulation is closely related to cancer progression. Aerobic glycolysis is a main way for cancer cells to obtain energy. It was found that beaded filament structural protein 1 (BFSP1) is a m6A related gene in liver cancer. However, the effect of m6A-modified BFSP1 on aerobic glycolysis and how it is regulated in liver cancer progression have not been explored. Here, we found that BFSP1 was upregulated in liver cancer cells and tissues. Overexpression of BFSP1 promoted the viability, invasion, and aerobic glycolysis of liver cancer cells, whereas knockdown of BFSP1 showed the opposite effects. Co-immunoprecipitation, immunofluorescence and GST pull down analyses showed that BFSP1 directly interacted with tropomodalin 4 (TMOD4), and knockdown of TMOD4 reversed BFSP1 overexpression-induced malignant phenotypes and aerobic glycolysis in liver cancer cells. Moreover, methyltransferase-like 3 (METTL3) enhanced BFSP1 stability by augmenting m6A modification of BFSP1 mRNA, which is achieved in a YTHDF1-dependent manner. In vivo experiments in mice confirmed that METTL3 increased BFSP1 stability by promoting m6A modification of BFSP1 mRNA, and knockdown of BFSP1 inhibited tumor growth and metastasis. In summary, METTL3-mediated m6A methylation of BFSP1 mRNA plays an important role in the aerobic glycolysis and progression of liver cancer, providing a potential therapeutic strategy for liver cancer.

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