Autophagy and senescence, stress responses induced by the DNA-damaging mycotoxin alternariol

A Solhaug1, M L Torgersen2, J A Holme3

  • 1Norwegian Veterinary Institute, 0454 Oslo, Norway.

Toxicology
|December 3, 2014
PubMed

Insights

The mycotoxin alternariol (AOH) triggers cellular autophagy and senescence in macrophages. These findings link AOH exposure to cellular stress responses and potential aging pathways.

Area of Science:

  • Cell Biology
  • Toxicology
  • Molecular Biology

Background:

  • Mycotoxin alternariol (AOH) is a common contaminant in food.
  • AOH induces cellular stress, including DNA damage and cell cycle arrest.
  • Cellular stress is frequently linked to autophagy, a cellular degradation process.

Purpose of the Study:

  • To investigate whether AOH induces autophagy in macrophages.
  • To explore the molecular mechanisms underlying AOH-induced cellular responses.
  • To determine if AOH exposure leads to cellular senescence.

Main Methods:

  • RAW264.7 macrophage model was used.
  • Autophagy was assessed by measuring acidic vacuoles, LC3 marker expression, and protein degradation.
  • Cellular senescence was evaluated through morphological changes and β-galactosidase activity.
  • Signaling pathways (AMPK, mTOR, S6K, p53) and ultrastructure (TEM) were analyzed.

Main Results:

  • AOH significantly increased markers of autophagy, including acidic vacuoles and LC3 puncta.
  • Biochemical assays confirmed enhanced autophagic activity.
  • AOH modulated key signaling pathways involved in autophagy (Sestrin2, AMPK, mTOR, S6K).
  • Transmission electron microscopy revealed autophagosomes, autolysosomes, and lamellar bodies.
  • Prolonged AOH exposure induced cellular senescence markers.

Conclusions:

  • AOH is identified as an inducer of both autophagy and senescence in macrophages.
  • These effects are potentially mediated by AOH-induced DNA double-strand breaks (DSBs).
  • The Sestrin2-AMPK-mTOR-S6K pathway, activated by p53, is implicated in AOH's cellular effects.

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