Genomics

Dataset Information

0

The eIF2 kinase PERK and the integrated stress response facilitate activation of ATF6 during endoplasmic reticulum stress


ABSTRACT: Disruptions of the endoplasmic reticulum (ER) that perturb protein folding cause ER stress and elicit an unfolded protein response (UPR) that involves translational and transcriptional changes in gene expression aimed at expanding the ER processing capacity and alleviating cellular injury. Three ER stress sensors PERK, ATF6, and IRE1 implement the UPR. PERK phosphorylation of eIF2 during ER stress represses protein synthesis, which prevents further influx of ER client proteins, along with preferential translation of ATF4, a transcription activator of the integrated stress response. In this study we show that the PERK/eIF2α~P/ATF4 pathway is required not only for translational control, but also activation of ATF6 and its target genes. The PERK pathway facilitates both the synthesis of ATF6 and trafficking of ATF6 from the ER to the Golgi for intramembrane proteolysis and activation of ATF6. As a consequence, liver-specific depletion of PERK significantly reduces both the translational and transcriptional phases of the UPR, leading to reduced protein chaperone expression, disruptions of lipid metabolism, and enhanced apoptosis. These findings show that the regulatory networks of the UPR are fully integrated, and helps explain the diverse pathologies associated with loss of PERK.

ORGANISM(S): Mus musculus

PROVIDER: GSE29929 | GEO | 2012/01/20

SECONDARY ACCESSION(S): PRJNA140871

REPOSITORIES: GEO

Similar Datasets

2012-01-20 | E-GEOD-29929 | biostudies-arrayexpress
2016-07-03 | E-GEOD-68265 | biostudies-arrayexpress
2014-06-02 | GSE54581 | GEO
2014-06-02 | E-GEOD-54581 | biostudies-arrayexpress
2016-01-01 | GSE68265 | GEO
2014-01-22 | E-GEOD-54256 | biostudies-arrayexpress
2019-03-20 | GSE118660 | GEO
2016-07-21 | E-GEOD-84636 | biostudies-arrayexpress
2016-07-21 | GSE84636 | GEO
2021-07-24 | GSE167688 | GEO