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McQuary, P.

Publications and source records attributed to McQuary, P..

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Crosstalk between eIF2α and eEF2 phosphorylation pathways optimizes translational arrest in response to oxidative stress

The cellular stress response triggers a cascade of events leading to transcriptional reprogramming and a transient inhibition of global protein synthesis, which is thought to be mediated by phosphorylation of eukaryotic initiation factor-2 (eIF2). Using mouse embryonic fibroblasts (MEFs) and the fission yeast S. pombe, we report here that rapid translational arrest and cell survival in response to hydrogen peroxide-induced oxidative stress do not rely on eIF2 kinases and eIF2 phosphorylation. Rather H2O2 induces a block in elongation through phosphorylation of eukaryotic elongation factor 2 (eEF2). Kinetic and dose-response analyses uncovered crosstalk between the eIF2 and eEF2 phosphorylation pathways, indicating that, in MEFs, eEF2 phosphorylation initiates the acute shutdown in translation, which is then maintained by eIF2 phosphorylation. Our results challenge the common conception that eIF2 phosphorylation is the primary trigger of translational arrest in response to oxidative stress and point to integrated control that may facilitate the survival of cancer cells.\n\nHIGHLIGHTSO_LIOxidative stress-induced translation arrest is independent of eIF2 phosphorylation\nC_LIO_LIOxidative stress blocks translation elongation\nC_LIO_LIOxidative stress triggers eEF2 kinase activation\nC_LIO_LIeEF2K KO cells are hypersensitive to oxidative stress\nC_LI

cell biology