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DDX39B protects against sorafenib-induced ferroptosis by facilitating the splicing and cytoplasmic export of GPX4 pre-mRNA in hepatocellular carcinoma

索拉非尼 肝细胞癌 癌症研究 GPX4 癌细胞 程序性细胞死亡 化学 下调和上调 肝癌 癌症 细胞 细胞凋亡 生物 细胞生物学 生物化学 谷胱甘肽 基因 遗传学 谷胱甘肽过氧化物酶
作者
Qin Li,Hang Yuan,Gang Zhao,Deqiong Ou,Jie Zhang,Liang Li,Siqi Li,Tianyu Feng,Rui Gu,Qiming Kou,Qijing Wang,Shan Li,Guanru Wang,Minghui Zhao,Huayang Yu,Jie Qu,Ping Lin,Kai Li
出处
期刊:Biochemical Pharmacology [Elsevier]
卷期号:225: 116251-116251 被引量:2
标识
DOI:10.1016/j.bcp.2024.116251
摘要

Hepatocellular carcinoma (HCC) is the main histological subtype of primary liver cancer and remains one of the most common solid malignancies globally. Ferroptosis was recently defined as an iron-catalyzed form of regulated necrosis. Because cancer cells exhibit higher iron requirements than noncancer cells, treatment with ferroptosis-inducing compounds may be a feasible strategy for cancer therapy. However, cancer cells develop acquired resistance to evade ferroptosis, and the mechanisms responsible for ferroptosis resistance are not fully clarified. In the current study, we reported that DDX39B was downregulated during sorafenib-induced ferroptosis in a dose- and time-dependent manner. Exogenous introduction of DDX39B ensured the survival of HCC cells upon exposure to sorafenib, while the opposite phenomenon was observed in DDX39B-silenced HCC cells. Mechanistically, we demonstrated that DDX39B increased GPX4 levels by promoting the splicing and cytoplasmic translocation of GPX4 pre-mRNA, which was sufficient to detoxify sorafenib-triggered excess lipid ROS production, lipid peroxidation accumulation, ferrous iron levels, and mitochondrial damage. Inhibition of DDX39B ATPase activity by CCT018159 repressed the splicing and cytoplasmic export of GPX4 pre-mRNA and synergistically assisted sorafenib-induced ferroptotic cell death in HCC cells. Taken together, our data uncover a novel role for DDX39B in ferroptosis resistance by modulating the maturation of GPX4 mRNA via a posttranscriptional approach and suggest that DDX39B inhibition may be a promising therapeutic strategy to enhance the sensitivity and vulnerability of HCC cells to sorafenib.
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