An mTORC2-Lipid Signaling Axis Controls Stress-Induced Organismal Death

Thomas Heimbucher1, Gang Wu1, Wenjing Qi1

  • 1Bioinformatics and Molecular Genetics, Faculty of Biology, University of Freiburg, 79104 Freiburg, Germany.

Research Square
|February 27, 2026
PubMed

Insights

mTORC2 signaling impacts survival during cold stress by altering lipid homeostasis. A sphingolipid metabolite, S1P, signals through PPARα/NHR-49 to protect against neuronal damage and promote survival.

Area of Science:

  • Cellular signaling
  • Metabolic homeostasis
  • Stress response

Background:

  • mTORC2 signaling regulates growth and survival but integrates stress signals poorly understood.
  • Mechanisms linking mTORC2, metabolism, and organismal survival under stress are unclear.

Purpose of the Study:

  • Investigate mTORC2's role in cold stress survival.
  • Elucidate the lipid-based signaling pathway downstream of mTORC2.

Main Methods:

  • Utilized genetic models to study mTORC2, SGK-1, S1P, PPARα/NHR-49, and ASM-3.
  • Analyzed lipid homeostasis, apoptosis, and neuronal damage under cold stress.

Main Results:

  • mTORC2 signaling reduces somatic lipid homeostasis, promoting apoptosis during cold stress via SGK-1.
  • Sphingosine-1-phosphate (S1P) acts as a cross-tissue survival signal.
  • S1P activates PPARα/NHR-49, repressing ASM-3 to prevent neuronal damage and promote survival.

Conclusions:

  • A novel lipid-based pathway downstream of mTORC2 couples stress and metabolic state to survival.
  • S1P mediates systemic survival decisions by signaling from lipid stores to neurons.

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