4.8 Article

Cytoprotection by pre-emptive conditional phosphorylation of translation initiation factor 2

Journal

EMBO JOURNAL
Volume 23, Issue 1, Pages 169-179

Publisher

WILEY
DOI: 10.1038/sj.emboj.7600030

Keywords

preconditioning; protein kinases; reactive oxygen species; signal transduction; translation

Funding

  1. NIDDK NIH HHS [R37 DK047119, DK47119, R01 DK042394, DK42394, R01 DK047119, R37 DK042394] Funding Source: Medline
  2. NIEHS NIH HHS [ES08681, R01 ES008681] Funding Source: Medline

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Transient phosphorylation of the alpha-subunit of translation initiation factor 2 (eIF2alpha) represses translation and activates select gene expression under diverse stressful conditions. Defects in the eIF2alpha phosphorylation-dependent integrated stress response impair resistance to accumulation of malfolded proteins in the endoplasmic reticulum (ER stress), to oxidative stress and to nutrient deprivations. To study the hypothesized protective role of eIF2alpha phosphorylation in isolation of parallel stress signaling pathways, we fused the kinase domain of pancreatic endoplasmic reticulum kinase (PERK), an ER stress-inducible eIF2alpha kinase that is normally activated by dimerization, to a protein module that binds a small dimerizer molecule. The activity of this artificial eIF2alpha kinase, Fv2E-PERK, is subordinate to the dimerizer and is uncoupled from upstream stress signaling. Fv2E-PERK activation enhanced the expression of numerous stress-induced genes and protected cells from the lethal effects of oxidants, peroxynitrite donors and ER stress. Our findings indicate that eIF2alpha phosphorylation can initiate signaling in a cytoprotective gene expression pathway independently of other parallel stress-induced signals and that activation of this pathway can single-handedly promote a stress-resistant preconditioned state.

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