4.7 Article

RSL3 Drives Ferroptosis Through GPX4 Inactivation and ROS Production in Colorectal Cancer

期刊

FRONTIERS IN PHARMACOLOGY
卷 9, 期 -, 页码 -

出版社

FRONTIERS MEDIA SA
DOI: 10.3389/fphar.2018.01371

关键词

RSL3; ferroptosis; glutathione peroxidase 4; reactive oxygen species; colorectal cancer

资金

  1. National Natural Science Foundation of China [81874380, 81672932, 81730108]
  2. Zhejiang Provincial Natural Science Foundation of China [LR18H160001]
  3. Zhejiang Province Medical Science and Technology Project [2017RC007]
  4. Key Project of Zhejiang Province Ministry of Science and Technology [2015C03055]
  5. Talent Project of Zhejiang Association for Science and Technology [2017YCGC002]
  6. Zhejiang Province Science and Technology Project of TCM [2019ZZ016]
  7. Key Project of Hangzhou Ministry of Science and Technology [20162013A07, 20142013A63]
  8. Zhejiang Provincial Project for the Key Discipline of Traditional Chinese Medicine [2017-XK-A09]

向作者/读者索取更多资源

Ferroptosis is an iron-dependent, oxidative cell death, and is characterized by iron-dependent accumulation of reactive oxygen species (ROS) within the cell. It has been implicated in various human diseases, including cancer. Recently, ferroptosis, as a non-apoptotic form of cell death, is emerging in specific cancer types; however, its relevance in colorectal cancer (CRC) is unexplored and remains unclear. Here, we showed that ferroptosis inducer RSL3 initiated cell death and ROS accumulation in HCT116, LoVo, and HT29 CRC cells over a 24 h time course. Furthermore, we found that ROS levels and transferrin expression were elevated in CRC cells treated with RSL3 accompanied by a decrease in the expression of glutathione peroxidase 4 (GPX4), indicating an iron-dependent cell death, ferroptosis. Overexpression GPX4 resulted in decreased cell death after RSL3 treatment. Therefore, RSL3 was able to induce ferroptosis on three different CRC cell lines in vitro in a dose-and time-dependent manner, which was due to increased ROS and an increase in the cellular labile iron pool. Moreover, this effect was able to be reversed by overexpression of GPX4. Taken together, our results suggest that the induction of ferroptosis contributed to RSL3-induced cell death in CRC cells and ferroptosis may be a pervasive and dynamic form of cell death for cancer treatment.

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