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ATF3 promotes erastin-induced ferroptosis by suppressing system Xc–

Cell Death and Differentiation · 2019 · Vol. 27(2) · pp. 662–675
Liyuan WangYichen LiuTingting DuHeng YangLei LeiMengqi GuoHan‐Fei DingJunran ZhangHongbo WangXiaoguang ChenChunhong Yan

Abstract

The amino acid antiporter system Xc<sup>-</sup> is important for the synthesis of glutathione (GSH) that functions to prevent lipid peroxidation and protect cells from nonapoptotic, iron-dependent death (i.e., ferroptosis). While the activity of system Xc<sup>-</sup> often positively correlates with the expression level of its light chain encoded by SLC7A11, inhibition of system Xc<sup>-</sup> activity by small molecules (e.g., erastin) causes a decrease in the intracellular GSH level, leading to ferroptotic cell death. How system Xc<sup>-</sup> is regulated during ferroptosis remains largely unknown. Here we report that activating transcription factor 3 (ATF3), a common stress sensor, can promote ferroptosis induced by erastin. ATF3 suppressed system Xc<sup>-</sup>, depleted intracellular GSH, and thereby promoted lipid peroxidation induced by erastin. ATF3 achieved this activity through binding to the SLC7A11 promoter and repressing SLC7A11 expression in a p53-independent manner. These findings thus add ATF3 to a short list of proteins that can regulate system Xc<sup>-</sup> and promote ferroptosis repressed by this antiporter.

Ferroptosis and cancer prognosisEpigenetics and DNA MethylationRNA modifications and cancerGlutathioneIntracellularLipid peroxidationATF3Transcription factorCell biologyAntiporterGPX4ChemistryBiochemistry

MeSH terms

FerroptosisAntineoplastic AgentsHumansPiperazinesTumor Cells, CulturedLipid PeroxidationAmino Acid Transport System y+Activating Transcription Factor 3

Funding

  • National Institutes of Health
  • National Cancer Institute
  • Division of Cancer Epidemiology and Genetics, National Cancer Institute
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ATF3 promotes erastin-induced ferroptosis by suppressing system Xc– · Scinovex