蛋白质稳态
未折叠蛋白反应
内质网
细胞生物学
信号转导
重编程
生物
生物化学
细胞
作者
Julia M. D. Grandjean,Aparajita Madhavan,Lauren Čech,Bryan O. Seguinot,Ryan J Paxman,Emery Smith,Louis Scampavia,Evan T. Powers,Christina B. Cooley,Lars Plate,Timothy Spicer,Jeffery W. Kelly,R. Luke Wiseman
标识
DOI:10.1038/s41589-020-0584-z
摘要
Activation of the IRE1/XBP1s signaling arm of the unfolded protein response (UPR) is a promising strategy to correct defects in endoplasmic reticulum (ER) proteostasis implicated in diverse diseases. However, no pharmacologic activators of this pathway identified to date are suitable for ER proteostasis remodeling through selective activation of IRE1/XBP1s signaling. Here, we use high-throughput screening to identify non-toxic compounds that induce ER proteostasis remodeling through IRE1/XBP1s activation. We employ transcriptional profiling to stringently confirm that our prioritized compounds selectively activate IRE1/XBP1s signaling without activating other cellular stress-responsive signaling pathways. Furthermore, we demonstrate that our compounds improve ER proteostasis of destabilized variants of amyloid precursor protein (APP) through an IRE1-dependent mechanism and reduce APP-associated mitochondrial toxicity in cellular models. These results establish highly selective IRE1/XBP1s activating compounds that can be widely employed to define the functional importance of IRE1/XBP1s activity for ER proteostasis regulation in the context of health and disease. Highly selective activators of IRE1/XBP1 splicing pathway were identified via high-throughput screen, which promoted the degradation of APP and reduced APP-associated mitochondrial toxicity in an IRE1-dependent manner.
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