Torii Seiji, Shintoku Ryosuke, Kubota Chisato, Yaegashi Makoto, Torii Ryoko, Sasaki Masaya, Suzuki Toshinobu, Mori Masanobu, Yoshimoto Yuhei, Takeuchi Toshiyuki, Yamada Keiichi
Secretion Biology Laboratory, Institute for Molecular and Cellular Regulation, Gunma University, Maebashi 371-8512, Japan
Secretion Biology Laboratory, Institute for Molecular and Cellular Regulation, Gunma University, Maebashi 371-8512, Japan Department of Neurosurgery, Gunma University Graduate School of Medicine, Maebashi 371-8512, Japan.
Biochem J. 2016 Mar 15;473(6):769-77. doi: 10.1042/BJ20150658. Epub 2016 Jan 12.
Pharmacological challenges to oncogenic Ras-expressing cancer cells have shown a novel type of cell death, ferroptosis, which requires intracellular iron. In the present study, we assessed ferroptosis following treatment of human fibrosarcoma HT1080 cells with several inhibitors of lysosomal activity and found that they prevented cell death induced by the ferroptosis-inducing compounds erastin and RSL3. Fluorescent analyses with a reactive oxygen species (ROS) sensor revealed constitutive generation of ROS in lysosomes, and treatment with lysosome inhibitors decreased both lysosomal ROS and a ferroptotic cell-death-associated ROS burst. These inhibitors partially prevented intracellular iron provision by attenuating intracellular transport of transferrin or autophagic degradation of ferritin. Furthermore, analyses with a fluorescent sensor that detects oxidative changes in cell membranes revealed that formation of lipid ROS in perinuclear compartments probably represented an early event in ferroptosis. These results suggest that lysosomal activity is involved in lipid ROS-mediated ferroptotic cell death through regulation of cellular iron equilibria and ROS generation.
对表达致癌性Ras的癌细胞进行药理学挑战已显示出一种新型细胞死亡——铁死亡,其需要细胞内铁。在本研究中,我们用几种溶酶体活性抑制剂处理人纤维肉瘤HT1080细胞后评估了铁死亡,发现它们可预防由铁死亡诱导化合物埃拉斯汀和RSL3诱导的细胞死亡。用活性氧(ROS)传感器进行的荧光分析显示溶酶体中ROS的组成性产生,用溶酶体抑制剂处理可降低溶酶体ROS和与铁死亡细胞死亡相关的ROS爆发。这些抑制剂通过减弱转铁蛋白的细胞内运输或铁蛋白的自噬降解来部分阻止细胞内铁的供应。此外,用检测细胞膜氧化变化的荧光传感器进行的分析表明,核周区室中脂质ROS的形成可能代表铁死亡的早期事件。这些结果表明,溶酶体活性通过调节细胞铁平衡和ROS产生参与脂质ROS介导的铁死亡细胞死亡。