IRE1α cleaves select microRNAs during ER stress to derepress translation of proapoptotic Caspase-2.

Journal: Science (New York, N.Y.)
Published:
Abstract

The endoplasmic reticulum (ER) is the primary organelle for folding and maturation of secretory and transmembrane proteins. Inability to meet protein-folding demand leads to "ER stress," and activates IRE1α, an ER transmembrane kinase-endoribonuclease (RNase). IRE1α promotes adaptation through splicing Xbp1 mRNA or apoptosis through incompletely understood mechanisms. Here, we found that sustained IRE1α RNase activation caused rapid decay of select microRNAs (miRs -17, -34a, -96, and -125b) that normally repress translation of Caspase-2 mRNA, and thus sharply elevates protein levels of this initiator protease of the mitochondrial apoptotic pathway. In cell-free systems, recombinant IRE1α endonucleolytically cleaved microRNA precursors at sites distinct from DICER. Thus, IRE1α regulates translation of a proapoptotic protein through terminating microRNA biogenesis, and noncoding RNAs are part of the ER stress response.

Authors
John-paul Upton, Likun Wang, Dan Han, Eric Wang, Noelle Huskey, Lionel Lim, Morgan Truitt, Michael Mcmanus, Davide Ruggero, Andrei Goga, Feroz Papa, Scott Oakes