PERK-dependent Activation of Nrf2 Contributes to Redox Homeostasis and Cell Survival following Endoplasmic Reticulum Stress

Sara B. Cullinan, J. Alan Diehl

Journal of Biological Chemistry · 2004 · 720 citations · 49 references

DOIFull text

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Concepts

TL;DR

Unfolded protein accumulation triggers a cellular response that activates both pro‑survival and pro‑apoptotic signaling, with PERK‑dependent Nrf2 activation playing a key survival role. The study aims to elucidate how PERK‑dependent Nrf2 activation confers protection to cells under endoplasmic reticulum stress. The authors show that Nrf2 maintains glutathione levels, buffers reactive oxygen species, and attenuates apoptosis during ER stress, indicating that redox perturbations sensitize cells to stress but additional factors are needed for apoptotic commitment.

Abstract

The accumulation of unfolded proteins elicits a cellular response that triggers both pro-survival and pro-apoptotic signaling events. PERK-dependent activation of NF-E2-related factor-2 (Nrf2) is critical for survival signaling during this response; however, the mechanism whereby Nrf2 confers a protective advantage to stressed cells remains to be defined. We now demonstrate that Nrf2 activation contributes to the maintenance of glutathione levels, which in turn functions as a buffer for the accumulation of reactive oxygen species during the unfolded protein response. The deleterious effects of Nrf2 or PERK deficiencies could be attenuated by the restoration of cellular glutathione levels or Nrf2 activity. In addition, the inhibition of reactive oxygen species production attenuated apoptotic induction following endoplasmic reticulum stress. Our data suggest that perturbations in cellular redox status sensitize cells to the harmful effects of endoplasmic reticulum stress, but that other factors are essential for apoptotic commitment.

References

49