Communications Biology (Feb 2024)

Phenolic compounds induce ferroptosis-like death by promoting hydroxyl radical generation in the Fenton reaction

  • Xinyue Sui,
  • Jichao Wang,
  • Zhiqiang Zhao,
  • Bin Liu,
  • Miaomiao Liu,
  • Min Liu,
  • Cong Shi,
  • Xinjun Feng,
  • Yingxin Fu,
  • Dayong Shi,
  • Shengying Li,
  • Qingsheng Qi,
  • Mo Xian,
  • Guang Zhao

DOI
https://doi.org/10.1038/s42003-024-05903-5
Journal volume & issue
Vol. 7, no. 1
pp. 1 – 12

Abstract

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Abstract Phenolic compounds are industrially versatile chemicals, also the most ubiquitous pollutants. Recently, biosynthesis and biodegradation of phenols has attracted increasing attention, while phenols’ toxicity is a major issue. Here, we evolved phloroglucinol-tolerant Escherichia coli strains via adaptive evolution, and three mutations (ΔsodB, ΔclpX and fetAB overexpression) prove of great assistance in the tolerance improvement. We discover that phloroglucinol complexes with iron and promotes the generation of hydroxyl radicals in Fenton reaction, which leads to reducing power depletion, lipid peroxidation, and ferroptosis-like cell death of E. coli. Besides phloroglucinol, various phenols can trigger ferroptosis-like death in diverse organisms, from bacteria to mammalian cells. Furthermore, repressing this ferroptosis-like death improves phloroglucinol production and phenol degradation by corresponding strains respectively, showing great application potential in microbial degradation or production of desired phenolic compounds, and phloroglucinol-induced ferroptosis suppresses tumor growth in mice, indicating phloroglucinol as a promising drug for cancer treatment.