Although severe stress can elicit toxicity, mild stress often elicits adaptations. Here we review the literature on stress-induced adaptations versus stress sensitization in models of neurodegenerative diseases. We also describe our recent findings that chronic proteotoxic stress can elicit adaptations if the dose is low but that high-dose proteotoxic stress sensitizes cells to subsequent challenges. In these experiments, long-term, low-dose proteasome inhibition elicited protection in a superoxide dismutase-dependent manner. In contrast, acute, high-dose proteotoxic stress sensitized cells to subsequent proteotoxic challenges by eliciting catastrophic loss of glutathione. However, even in the latter model of synergistic toxicity, several d...
The proper regulation and function of cellular stress resistance pathways are essential to the maint...
In order to fulfill their evolutionary role as support cells, astrocytes have to tolerate intense ox...
There is an increasing awareness that astrocytes, the most abundant cell type in the central nervous...
Although severe stress can elicit toxicity, mild stress often elicits adaptations. Here we review th...
Although severe stress can elicit toxicity, mild stress often elicits adaptations. Here we review th...
© 2016 The AuthorsIn neurological disorders, both acute and chronic neural stress can disrupt cellul...
AbstractIn neurological disorders, both acute and chronic neural stress can disrupt cellular proteos...
International audienceIn neurological disorders, both acute and chronic neural stress can disrupt ce...
The development of drugs directly interfering with neurodegeneration has proven to be astonishingly ...
International audienceIn neurological disorders, both acute and chronic neural stress can disrupt ce...
Neurodegenerative disorders such as Parkinson\u27s and Alzheimer\u27s disease are projected to affec...
The dual function of the ubiquitin-proteasome system in protein quality control and as a master regu...
In neurological disorders, both acute and chronic neural stress can disrupt cellular proteostasis, r...
The dual function of the ubiquitin-proteasome system in protein quality control and as a master reg...
In order to fulfill their evolutionary role as support cells, astrocytes have to tolerate intense ox...
The proper regulation and function of cellular stress resistance pathways are essential to the maint...
In order to fulfill their evolutionary role as support cells, astrocytes have to tolerate intense ox...
There is an increasing awareness that astrocytes, the most abundant cell type in the central nervous...
Although severe stress can elicit toxicity, mild stress often elicits adaptations. Here we review th...
Although severe stress can elicit toxicity, mild stress often elicits adaptations. Here we review th...
© 2016 The AuthorsIn neurological disorders, both acute and chronic neural stress can disrupt cellul...
AbstractIn neurological disorders, both acute and chronic neural stress can disrupt cellular proteos...
International audienceIn neurological disorders, both acute and chronic neural stress can disrupt ce...
The development of drugs directly interfering with neurodegeneration has proven to be astonishingly ...
International audienceIn neurological disorders, both acute and chronic neural stress can disrupt ce...
Neurodegenerative disorders such as Parkinson\u27s and Alzheimer\u27s disease are projected to affec...
The dual function of the ubiquitin-proteasome system in protein quality control and as a master regu...
In neurological disorders, both acute and chronic neural stress can disrupt cellular proteostasis, r...
The dual function of the ubiquitin-proteasome system in protein quality control and as a master reg...
In order to fulfill their evolutionary role as support cells, astrocytes have to tolerate intense ox...
The proper regulation and function of cellular stress resistance pathways are essential to the maint...
In order to fulfill their evolutionary role as support cells, astrocytes have to tolerate intense ox...
There is an increasing awareness that astrocytes, the most abundant cell type in the central nervous...