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Ferroptosis-activating metabolite acrolein antagonizes necroptosis and anti-cancer therapeutics

  • Hyun Bae
  • , Seonghyun Moon
  • , Mengmeng Chang
  • , Fenfen Zhang
  • , Yeonseo Jang
  • , Wonyoung Kim
  • , Soyeon Kim
  • , Minjie Fu
  • , Jaemin Lim
  • , Seongjun Park
  • , Chirag N. Patel
  • , Raghvendra Mall
  • , Min Zheng
  • , Si Ming Man*
  • , Rajendra Karki*
  • *Corresponding author for this work

Research output: Contribution to journalArticlepeer-review

21 Citations (Scopus)

Abstract

Dysregulated cell death leading to uncontrolled cell proliferation is a hallmark of cancer. Chemotherapy-induced cell death is critical for the success of cancer treatment but this process is impaired by metabolic byproducts. How these byproducts interfere with anti-cancer therapy is unclear. Here, we show that the metabolic byproduct acrolein derived from polyamines, tobacco smoke or fuel combustion, induces ferroptosis independently of ZBP1, while suppressing necroptosis in cancer cells by inhibiting the oligomerization of the necroptosis effector MLKL. Loss of the enzyme SAT1, which contributes to intracellular acrolein production, sensitizes cells to necroptosis. In mice, administration of an acrolein-trapping agent relieves necroptosis blockade and enhances the anti-tumor efficacy of the chemotherapeutic drug cyclophosphamide. Human patients with cancer coupled with a higher cell death activity but a lower expression of genes controlling polyamine metabolism exhibit improved survival. These findings highlight that the removal of metabolic byproducts improves the success of certain chemotherapies.

Original languageEnglish
Article number4919
Number of pages17
JournalNature Communications
Volume16
Issue number1
Early online date27 May 2025
DOIs
Publication statusPublished - Dec 2025

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