Overexpression of ELF3 in the PTEN-deficient lung epithelium promotes lung cancer development by inhibiting ferroptosis.

IF 9.6 1区 生物学 Q1 CELL BIOLOGY Cell Death & Disease Pub Date : 2024-12-18 DOI:10.1038/s41419-024-07274-5
Zengzhuang Yuan, Xinyan Han, Manyu Xiao, Taoyu Zhu, Yaping Xu, Qian Tang, Chen Lian, Zijin Wang, Junming Li, Boyu Wang, Changhui Li, Xiaochen Xiang, Ruobai Jin, Yufei Liu, Xinyu Yu, Kehang Zhang, Songsong Li, Madhumita Ray, Rong Li, Artiom Gruzdev, Shiqun Shao, Fangwei Shao, Hua Wang, Wang Lian, Yong Tang, Di Chen, Ying Lei, Xuru Jin, Qinglin Li, Weiwen Long, Huaqiong Huang, Francesco J DeMayo, Jian Liu
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Abstract

Ferroptosis has been shown to play a crucial role in preventing cancer development, but the underlying mechanisms of dysregulated genes and genetic alternations driving cancer development by regulating ferroptosis remain unclear. Here, we showed that the synergistic role of ELF3 overexpression and PTEN deficiency in driving lung cancer development was highly dependent on the regulation of ferroptosis. Human ELF3 (hELF3) overexpression in murine lung epithelial cells only caused hyperplasia with increased proliferation and ferroptosis. hELF3 overexpression and Pten genetic disruption significantly induced lung tumor development with increased proliferation and inhibited ferroptosis. Mechanistically, we found it was due to the induction of SCL7A11, a typical ferroptosis inhibitor, and ELF3 directly and positively regulated SCL7A11 in the PTEN-deficient background. Erastin-mediated inhibition of SCL7A11 induced ferroptosis in cells with ELF3 overexpression and PTEN deficiency and thus inhibited cell colony formation and tumor development. Clinically, human lung tumors showed a negative correlation between ELF3 and PTEN expression and a positive correlation between ELF3 and SCL7A11 in a subset of human lung tumors with PTEN-low expression. ELF3 and SCL7A11 expression levels were negatively associated with lung cancer patients' survival rates. In summary, ferroptosis induction can effectively attenuate lung tumor development induced by ELF3 overexpression and PTEN downregulation or loss-of-function mutations.

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在pten缺失的肺上皮中,ELF3的过表达通过抑制铁下垂促进肺癌的发展。
铁下垂已被证明在预防癌症发展中起着至关重要的作用,但基因失调和基因改变通过调节铁下垂驱动癌症发展的潜在机制尚不清楚。在这里,我们发现ELF3过表达和PTEN缺乏在驱动肺癌发展中的协同作用高度依赖于铁下垂的调节。人ELF3 (hELF3)在小鼠肺上皮细胞中的过表达仅引起增生,增殖增加和铁下垂。hELF3过表达和Pten基因破坏显著诱导肺肿瘤的发展,增殖增加,铁下垂受到抑制。在机制上,我们发现这是由于典型的铁下垂抑制剂SCL7A11的诱导,而ELF3在pten缺乏的背景下直接并积极调节SCL7A11。erastin介导的抑制SCL7A11诱导ELF3过表达和PTEN缺乏的细胞铁下垂,从而抑制细胞集落形成和肿瘤发展。临床发现,在一部分PTEN低表达的人肺肿瘤中,ELF3与PTEN表达呈负相关,而ELF3与SCL7A11呈正相关。ELF3和SCL7A11表达水平与肺癌患者生存率呈负相关。综上所述,诱导铁下垂可有效减弱ELF3过表达和PTEN下调或功能丧失突变诱导的肺肿瘤发展。
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来源期刊
Cell Death & Disease
Cell Death & Disease CELL BIOLOGY-
CiteScore
15.10
自引率
2.20%
发文量
935
审稿时长
2 months
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
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