Zhen Chen, Jiaxin Yin, Zhongqi Feng, Yanlai Zhang, Li Liang, Xiaojun Wang, Kai Wang, Ni Tang
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引用次数: 0
摘要
m6A甲基转移酶METTL3是RNA m6A修饰的关键调控因子,在癌症发展中起关键作用。尽管METTL3在肝细胞癌(HCC)中具有重要意义,但其翻译后修饰及其在HCC中的功能意义仍然知之甚少。本研究表明,METTL3发生o - glcn酰化,增强其稳定性并促进HCC进展。确定了METTL3中特定的o - glcn酰化位点(T186/S192/S193)。O-GlcNAc修饰降低了METTL3泛素化,从而提高了蛋白的稳定性,并增强了其与WTAP的相互作用,从而维持肝癌细胞中m6A的水平。值得注意的是,METTL3 o - glcn酰化通过m6a - igf2bp3依赖的方式稳定微染色体维持蛋白10 (MCM10)的mRNA,从而上调MCM10的表达。用设计的肽靶向METTL3 o - glcn酰化,在体外和体内都能有效抑制HCC的生长。总的来说,我们的研究结果为o - glcn酰化在调节m6A表转录组中的调节作用提供了见解,并提示靶向METTL3 o - glcn酰化在HCC中的潜在治疗相关性。
O-GlcNAcylation of METTL3 drives hepatocellular carcinoma progression by upregulating MCM10 expression in an m6A-IGF2BP3-dependent manner.
The m6A methyltransferase METTL3 is a key regulator of RNA m6A modification, which plays a critical role in cancer development. Despite the significance of METTL3 in hepatocellular carcinoma (HCC), its post-translational modifications and their functional implications in HCC remain poorly understood. The present study reveals that METTL3 undergoes O-GlcNAcylation, which enhances its stability and promotes HCC progression. Specific O-GlcNAcylation sites (T186/S192/S193) in METTL3 are identified. O-GlcNAc modification reduces METTL3 ubiquitination, thereby increasing protein stability, and enhances its interaction with WTAP, thereby sustaining m6A levels in hepatoma cells. Notably, METTL3 O-GlcNAcylation upregulates the expression of minichromosome maintenance protein 10 (MCM10) by stabilizing its mRNA via an m6A-IGF2BP3-dependent manner. Targeting METTL3 O-GlcNAcylation with designed peptides effectively inhibits HCC growth both in vitro and in vivo. Collectively, our findings provide insights into the regulatory role of O-GlcNAcylation in modulating the m6A epitranscriptome and suggest the potential therapeutic relevance of targeting METTL3 O-GlcNAcylation in HCC.
期刊介绍:
Brought to readers by the editorial team of Cell Death & Differentiation, Cell Death & Disease is an online peer-reviewed journal specializing in translational cell death research. It covers a wide range of topics in experimental and internal medicine, including cancer, immunity, neuroscience, and now cancer metabolism.
Cell Death & Disease seeks to encompass the breadth of translational implications of cell death, and topics of particular concentration will include, but are not limited to, the following:
Experimental medicine
Cancer
Immunity
Internal medicine
Neuroscience
Cancer metabolism