The GGH/HuR Complex Binds and Stabilizes mRNAs to Maintain Tumor Cell Cycle and DNA Replication
文献类型: 外文期刊
第一作者: Li, Yu
作者: Li, Yu;Li, Yu;Li, Xinrui;Du, Yuhui;Chen, Sijie;He, Xiaoniu;Xie, Zhangrong;Zhou, Zhiqing;Zhao, Huijie;Zeng, Xiaofei;Chen, Guoan;Du, Yuhui;Du, Yuhui;He, Xiaoniu;Zhou, Zhiqing;Zhao, Huijie;Zeng, Xiaofei
作者机构:
关键词: GGH; HuR; RNA-binding protein; mRNA stability; lung cancer
期刊名称:ADVANCED SCIENCE ( 影响因子:14.1; 五年影响因子:15.6 )
ISSN:
年卷期: 2025 年
页码:
收录情况: SCI
摘要: GGH (Gamma-glutamyl hydrolase) is a folate metabolism enzyme that hydrolyzes intracellular polyglutamylated folates and is highly expressed in various cancers. It remains unclear whether GGH functions as an oncogene and its underlying mechanisms in tumor progression. Here, it is reported that GGH silencing inhibited the growth of lung cancer cells in vivo and in vitro. The oncogenic function of GGH relied on its non-canonical role as a novel RNA-binding protein, which maintained the cell cycle and DNA replication by stabilizing target mRNAs. Furthermore, GGH bound to the GC-rich motif in the 5 ' untranslated region of mRNAs, such as CDC6 and CCND1. Additionally, GGH directly interacts with HuR (Human Antigen R), a well-characterized RNA-binding protein critical for mRNA stability in cancer. GGH, HuR, and their mRNA targets formed a ternary complex, which may facilitate the induction of a circular mRNA conformation, potentially enhancing RNA stability. Finally, it is found that GGH is highly expressed in lung cancer tissues, and its elevated expression correlates with worse patient survival in lung cancer. This discovery offered novel insights and identified potential therapeutic targets for the prevention and treatment of lung cancer.
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