Dynamic imaging of stress response pathway activation for quantitative systems liver toxicity approaches

2021 ◽  
Vol 350 ◽  
pp. S30
Author(s):  
B van de Water
2018 ◽  
Vol 92 (5) ◽  
pp. 1797-1814 ◽  
Author(s):  
Steven Wink ◽  
Steven W. Hiemstra ◽  
Suzanne Huppelschoten ◽  
Janna E. Klip ◽  
Bob van de Water

eLife ◽  
2018 ◽  
Vol 7 ◽  
Author(s):  
Cheng Wang ◽  
Zhijia Tan ◽  
Ben Niu ◽  
Kwok Yeung Tsang ◽  
Andrew Tai ◽  
...  

The integrated stress response (ISR) is activated by diverse forms of cellular stress, including endoplasmic reticulum (ER) stress, and is associated with diseases. However, the molecular mechanism(s) whereby the ISR impacts on differentiation is incompletely understood. Here, we exploited a mouse model of Metaphyseal Chondrodysplasia type Schmid (MCDS) to provide insight into the impact of the ISR on cell fate. We show the protein kinase RNA-like ER kinase (PERK) pathway that mediates preferential synthesis of ATF4 and CHOP, dominates in causing dysplasia by reverting chondrocyte differentiation via ATF4-directed transactivation of Sox9. Chondrocyte survival is enabled, cell autonomously, by CHOP and dual CHOP-ATF4 transactivation of Fgf21. Treatment of mutant mice with a chemical inhibitor of PERK signaling prevents the differentiation defects and ameliorates chondrodysplasia. By preventing aberrant differentiation, titrated inhibition of the ISR emerges as a rationale therapeutic strategy for stress-induced skeletal disorders.


Cell Cycle ◽  
2012 ◽  
Vol 11 (2) ◽  
pp. 407-417 ◽  
Author(s):  
Richard Bennett ◽  
Yu Pan ◽  
Jaime Christian ◽  
Teng Hui ◽  
W. Stratford May Jr.

2008 ◽  
Vol 199 (6) ◽  
pp. S204 ◽  
Author(s):  
Yali Xiong ◽  
Dan Liebermann ◽  
Eliezer J. Holtzman ◽  
Barbara Hoffman ◽  
Ossie Geifman-Holtzman

2018 ◽  
Vol 53 ◽  
pp. 110-119 ◽  
Author(s):  
Elham Asghari Adib ◽  
Laura J Smithson ◽  
Catherine A Collins

2019 ◽  
Vol 3 (Supplement_1) ◽  
pp. S730-S730
Author(s):  
Karl Rodriguez

Abstract The accrual of aggregation-prone cytotoxic proteins underlies neural pathologies seen in aging, Alzheimer’s disease and other dementias. Recent evidence indicates that heat shock protein 25kDa (HSP25) interacts with tau. To demonstrate a causal role for HSP25 in these pathologies, we overexpressed HSP25 protein in worms. This manipulation led to an increase in life span. Moreover, the longevity-effect was associated with increased expression of genes downstream of the SKN-1/Nrf2 stress-response transcription factor. HSP25 over-expression also reduces aggregate pathology and extends lifespan in a C. elegans neuronal-specific, aggregate-prone tau model . We propose that over-expression of HSP25 could provide protection from protein aggregation induced neurodegeneration. However, it is not yet clear whether this HSP25 effect could be efficaciously provided exogenously by other cell types. Thus, we will test whether increased peripheral HSP25 will reduce protein aggregation and stimulate a global Skn-1 stress-response pathway, reduce toxicity in neurons, and improve health outcomes.


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