Title of article :
IRE1α Kinase Activation Modes Control Alternate Endoribonuclease Outputs to Determine Divergent Cell Fates
Author/Authors :
Dan Han، نويسنده , , Alana G. Lerner، نويسنده , , Lieselotte Vande Walle، نويسنده , , John-Paul Upton، نويسنده , , Weihong Xu، نويسنده , , Andrew Hagen، نويسنده , , Bradley J. Backes، نويسنده , , Scott A. Oakes، نويسنده , , Feroz R. Papa، نويسنده ,
Issue Information :
هفته نامه با شماره پیاپی سال 2009
Pages :
14
From page :
562
To page :
575
Abstract :
During endoplasmic reticulum (ER) stress, homeostatic signaling through the unfolded protein response (UPR) augments ER protein-folding capacity. If homeostasis is not restored, the UPR triggers apoptosis. We found that the ER transmembrane kinase/endoribonuclease (RNase) IRE1α is a key component of this apoptotic switch. ER stress induces IRE1α kinase autophosphorylation, activating the RNase to splice XBP1 mRNA and produce the homeostatic transcription factor XBP1s. Under ER stress—or forced autophosphorylation—IRE1αʹs RNase also causes endonucleolytic decay of many ER-localized mRNAs, including those encoding chaperones, as early events culminating in apoptosis. Using chemical genetics, we show that kinase inhibitors bypass autophosphorylation to activate the RNase by an alternate mode that enforces XBP1 splicing and averts mRNA decay and apoptosis. Alternate RNase activation by kinase-inhibited IRE1α can be reconstituted in vitro. We propose that divergent cell fates during ER stress hinge on a balance between IRE1α RNase outputs that can be tilted with kinase inhibitors to favor survival.
Journal title :
CELL
Serial Year :
2009
Journal title :
CELL
Record number :
1019878
Link To Document :
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