MTR4 drives liver tumorigenesis by promoting cancer metabolic switch through alternative splicing

MTR4通过选择性剪接促进癌症代谢转换,从而驱动肝脏肿瘤发生。

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作者:Lili Yu #,Jinchul Kim #,Lei Jiang,Bingbing Feng,Yue Ying,Kai-Yuan Ji,Qingshuang Tang,Wancheng Chen,Taoyi Mai,Wenlong Dou,Jianlong Zhou,Le-Yang Xiang,Yang-Fan He,Dinghua Yang,Qingjiao Li,Xuemei Fu,Yang Xu

Abstract

The metabolic switch from oxidative phosphorylation to glycolysis is required for tumorigenesis in order to provide cancer cells with energy and substrates of biosynthesis. Therefore, it is important to elucidate mechanisms controlling the cancer metabolic switch. MTR4 is a RNA helicase associated with a nuclear exosome that plays key roles in RNA processing and surveillance. We demonstrate that MTR4 is frequently overexpressed in hepatocellular carcinoma (HCC) and is an independent diagnostic marker predicting the poor prognosis of HCC patients. MTR4 drives cancer metabolism by ensuring correct alternative splicing of pre-mRNAs of critical glycolytic genes such as GLUT1 and PKM2. c-Myc binds to the promoter of the MTR4 gene and is important for MTR4 expression in HCC cells, indicating that MTR4 is a mediator of the functions of c-Myc in cancer metabolism. These findings reveal important roles of MTR4 in the cancer metabolic switch and present MTR4 as a promising therapeutic target for treating HCC.

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