PPP1R15A-mediated dephosphorylation of eIF2 alpha is unaffected by Sephin1 or Guanabenz
ELIFE
Authors: Crespillo-Casado, Ana; Chambers, Joseph E.; Fischer, Peter M.; Marciniak, Stefan J.; Ron, David
Abstract
Dephosphorylation of translation initiation factor 2 (eIF2 alpha) terminates signalling in the mammalian integrated stress response (ISR) and has emerged as a promising target for modifying the course of protein misfolding diseases. The [(o-chlorobenzylidene) amino] guanidines (Guanabenz and Sephin1) have been proposed to exert protective effects against misfolding by interfering with eIF2 alpha-P dephosphorylation through selective disruption of a PP1-PPP1R15A holophosphatase complex. Surprisingly, they proved inert in vitro affecting neither stability of the PP1-PPP1R15A complex nor substrate-specific dephosphorylation. Furthermore, eIF2 alpha-P dephosphorylation, assessed by a kinase shut-off experiment, progressed normally in Sephin1-treated cells. Consistent with its role in defending proteostasis, Sephin1 attenuated the IRE1 branch of the endoplasmic reticulum unfolded protein response. However, repression was noted in both wildtype and Ppp1r15a deleted cells and in cells rendered ISR-deficient by CRISPR editing of the Eif2s1 locus to encode a non-phosphorylatable eIF2 alpha (eIF2 alpha(S51A)). These findings challenge the view that [(o-chlorobenzylidene) amino] guanidines restore proteostasis by interfering with eIF2 alpha-P dephosphorylation.
EIF2A promotes cell survival during paclitaxel treatment in vitro and in vivo
JOURNAL OF CELLULAR AND MOLECULAR MEDICINE
Authors: Chen, Lin; He, Jiang; Zhou, Jianhua; Xiao, Zhi; Ding, Nianhua; Duan, Yumei; Li, Wenzheng; Sun, Lun-Quan
Abstract
The integrated stress response (ISR) is critical for cancer cell survival during stress stimuli and has been implicated in the resistance to cancer therapeutics, in which the mechanism, however, is poorly understood. Here, we showed that paclitaxel, the major chemotherapy drug for breast cancer, induced ISR and phosphorylated ser51 residue of EIF2S1 by EIF2AK3 and EIF2AK4. When exposed to paclitaxel, cancer cells activated the EIF2AK3/EIF2AK4-pEIF2S1-ATF4 axis and maintained redox homoeostasis by inducing expression of the major antioxidant enzymes HMOX1, SHMT2 and SLC7A11. Paclitaxel-mediated cell death was significantly increased following loss of ISR or ATF4 expression. This sensitizing effect could be partially rescued by Trolox, a ROS scavenger. We demonstrated that the alternative initiation factor EIF2A was essential for cancer cell survival after paclitaxel-mediated ISR both in vitro and in vivo. Moreover, patients with breast cancer exhibited higher ISR after chemotherapy, and the elevated mRNA levels of HMOX1, SHMT2 and EIF2A were correlated with poor prognosis. Collectively, our findings reveal a novel mechanism for paclitaxel resistance and suggest that targeting EIF2A combined with ISR agonist may be a potential treatment regimen to overcome drug resistance for breast cancer.