Lee Wei-Chang, Moi Sin-Hua, Yang Sheau-Fang, Tseng Ho-Hsing, Liu Yu-Peng
Graduate Institute of Medicine, Kaohsiung Medical University, Kaohsiung, Taiwan.
Graduate Institute of Clinical Medicine, Kaohsiung Medical University, Kaohsiung, Taiwan.
J Pathol. 2025 Apr;265(4):422-436. doi: 10.1002/path.6393. Epub 2025 Jan 27.
Ferroptosis has been characterised by disruption of the cell membrane through iron-related lipid peroxidation. However, regulation of iron homeostasis in lung cancer cells that are resistant to epidermal growth factor receptor tyrosine kinase inhibitors (EGFR-TKIs) remains unclear. Transcriptome analysis identified a significant downregulation of apoptosis-associated tyrosine kinase (AATK) mRNA expression in gefitinib-resistant PC9 (PC9-GR) cells, which were found to be more susceptible to ferroptosis inducers. An in-depth analysis of publicly available datasets revealed that downregulation of AATK mRNA was associated with lymph node metastasis and poor prognosis in patients with lung adenocarcinoma. Knockdown of AATK-sensitised PC9, HCC827, and H441 cells to the ferroptosis inducer RSL3, whereas ectopic expression of AATK reduced RSL3-induced cell death in PC9-GR and HCC827-GR cells. Compared to PC9 cells, PC9-GR cells exhibited higher transferrin uptake, endosome recycling rate, and increased intracellular iron levels. Blocking iron transport reduced RSL3-induced ferroptosis in PC9-GR cells. Mechanistic studies showed that AATK localised to both early and recycling endosomes. Knockdown of AATK facilitated endosome recycling and elevated intracellular ferrous iron (Fe) levels in PC9 cells. Conversely, ectopic expression of AATK delayed endosome recycling and reduced intracellular Fe levels in PC9-GR cells. Inhibition of AATK downregulation-induced iron accumulation decreased RSL3-induced ferroptosis. Taken together, our study indicates that the downregulation of AATK contributes to endosome recycling and iron accumulation, leading to an increased susceptibility to ferroptosis in EGFR-TKI-resistant lung cancer cells. © 2025 The Pathological Society of Great Britain and Ireland.
铁死亡的特征是通过铁相关的脂质过氧化作用破坏细胞膜。然而,对表皮生长因子受体酪氨酸激酶抑制剂(EGFR-TKIs)耐药的肺癌细胞中铁稳态的调节仍不清楚。转录组分析发现,在吉非替尼耐药的PC9(PC9-GR)细胞中,凋亡相关酪氨酸激酶(AATK)mRNA表达显著下调,这些细胞被发现对铁死亡诱导剂更敏感。对公开可用数据集的深入分析表明,AATK mRNA的下调与肺腺癌患者的淋巴结转移和不良预后相关。敲低AATK使PC9、HCC827和H441细胞对铁死亡诱导剂RSL3敏感化,而AATK的异位表达减少了RSL3诱导的PC9-GR和HCC827-GR细胞死亡。与PC9细胞相比,PC9-GR细胞表现出更高的转铁蛋白摄取、内体循环率和细胞内铁水平增加。阻断铁转运减少了RSL3诱导的PC9-GR细胞铁死亡。机制研究表明,AATK定位于早期和循环内体。敲低AATK促进了PC9细胞内体循环并提高了细胞内亚铁(Fe)水平。相反,AATK的异位表达延迟了PC9-GR细胞内体循环并降低了细胞内Fe水平。抑制AATK下调诱导的铁积累减少了RSL3诱导的铁死亡。综上所述,我们的研究表明,AATK的下调促进了内体循环和铁积累,导致EGFR-TKI耐药肺癌细胞对铁死亡的易感性增加。© 2025英国和爱尔兰病理学会。