TY - JOUR
T1 - Pharmacologic activation of a compensatory integrated stress response kinase promotes mitochondrial remodeling in PERK-deficient cells
AU - Perea, Valerie
AU - Baron, Kelsey R.
AU - Dolina, Vivian
AU - Aviles, Giovanni
AU - Kim, Grace
AU - Rosarda, Jessica D.
AU - Guo, Xiaoyan
AU - Kampmann, Martin
AU - Wiseman, R. Luke
N1 - Publisher Copyright:
© 2023 Elsevier Ltd
PY - 2023/12/21
Y1 - 2023/12/21
N2 - The integrated stress response (ISR) comprises the eIF2α kinases PERK, GCN2, HRI, and PKR, which induce translational and transcriptional signaling in response to diverse insults. Deficiencies in PERK signaling lead to mitochondrial dysfunction and contribute to the pathogenesis of numerous diseases. We define the potential for pharmacologic activation of compensatory eIF2α kinases to rescue ISR signaling and promote mitochondrial adaptation in PERK-deficient cells. We show that the HRI activator BtdCPU and GCN2 activator halofuginone promote ISR signaling and rescue ER stress sensitivity in PERK-deficient cells. However, BtdCPU induces mitochondrial depolarization, leading to mitochondrial fragmentation and activation of the OMA1-DELE1-HRI signaling axis. In contrast, halofuginone promotes mitochondrial elongation and adaptive mitochondrial respiration, mimicking regulation induced by PERK. This shows halofuginone can compensate for deficiencies in PERK signaling and promote adaptive mitochondrial remodeling, highlighting the potential for pharmacologic ISR activation to mitigate mitochondrial dysfunction and motivating the pursuit of highly selective ISR activators.
AB - The integrated stress response (ISR) comprises the eIF2α kinases PERK, GCN2, HRI, and PKR, which induce translational and transcriptional signaling in response to diverse insults. Deficiencies in PERK signaling lead to mitochondrial dysfunction and contribute to the pathogenesis of numerous diseases. We define the potential for pharmacologic activation of compensatory eIF2α kinases to rescue ISR signaling and promote mitochondrial adaptation in PERK-deficient cells. We show that the HRI activator BtdCPU and GCN2 activator halofuginone promote ISR signaling and rescue ER stress sensitivity in PERK-deficient cells. However, BtdCPU induces mitochondrial depolarization, leading to mitochondrial fragmentation and activation of the OMA1-DELE1-HRI signaling axis. In contrast, halofuginone promotes mitochondrial elongation and adaptive mitochondrial respiration, mimicking regulation induced by PERK. This shows halofuginone can compensate for deficiencies in PERK signaling and promote adaptive mitochondrial remodeling, highlighting the potential for pharmacologic ISR activation to mitigate mitochondrial dysfunction and motivating the pursuit of highly selective ISR activators.
KW - integrated stress response
KW - ISR
KW - pharmacologic activator
KW - stress-responsive signaling pathway
KW - unfolded protein response
KW - UPR
UR - http://www.scopus.com/inward/record.url?scp=85177066194&partnerID=8YFLogxK
U2 - 10.1016/j.chembiol.2023.10.006
DO - 10.1016/j.chembiol.2023.10.006
M3 - Article
C2 - 37922906
AN - SCOPUS:85177066194
SN - 2451-9456
VL - 30
SP - 1571-1584.e5
JO - Cell Chemical Biology
JF - Cell Chemical Biology
IS - 12
ER -