Redox homeostasis is essential for cell function and its disruption is associated with multiple pathologies. Redox balance is largely regulated by the relative concentrations of reduced and oxidized glutathione. In eukaryotic cells, this ratio is different in each cell compartment, and disruption of the mitochondrial redox balance has been specifically linked to metabolic diseases. Here, we report a probe that is selectively activated by endogenous nitroreductases, and releases tributylphosphine to trigger redox stress in mitochondria. Mechanistic studies revealed that, counterintuitively, release of a reducing agent in mitochondria rapidly induced oxidative stress through accumulation of superoxide. This response is mediated by glutathione...
Mitochondrial glutathione (GSH) and thioredoxin (Trx) systems function independently of the rest of ...
Mitochondrial dysfunction is associated with activation of the integrated stress response (ISR) but ...
AbstractEven though oxidative stress damage from excessive production of ROS is a well known phenome...
Redox homeostasis is essential for cell function and its disruption is assocd. with cancer, metaboli...
Redox homeostasis is essential for cell function and its disruption is associated with multiple path...
Subcellular organelles maintain distinct redox environments to carry out their normal physiol. funct...
Intracellular redox balance is crucial for cell function and is primarily regulated by the relative ...
Both extremes of redox balance are known to cause cardiac injury, with mounting evidence revealing t...
AbstractBoth extremes of redox balance are known to cause cardiac injury, with mounting evidence rev...
Mitochondria have a myriad of essential functions including metabolism and apoptosis. These chief fu...
Significance: Mitochondrial glutathione fulfills crucial roles in a number of processes, including i...
Increases in the intracellular levels of reactive oxygen species (ROS), frequently referred to as ox...
AbstractAt its core mitochondrial function relies on redox reactions. Electrons stripped from nutrie...
Mitochondria are crucial components of eukaryotic cells and exchange signalling molecules, metabolit...
Even though oxidative stress damage from excessive production of ROS is a well known phenomenon, the...
Mitochondrial glutathione (GSH) and thioredoxin (Trx) systems function independently of the rest of ...
Mitochondrial dysfunction is associated with activation of the integrated stress response (ISR) but ...
AbstractEven though oxidative stress damage from excessive production of ROS is a well known phenome...
Redox homeostasis is essential for cell function and its disruption is assocd. with cancer, metaboli...
Redox homeostasis is essential for cell function and its disruption is associated with multiple path...
Subcellular organelles maintain distinct redox environments to carry out their normal physiol. funct...
Intracellular redox balance is crucial for cell function and is primarily regulated by the relative ...
Both extremes of redox balance are known to cause cardiac injury, with mounting evidence revealing t...
AbstractBoth extremes of redox balance are known to cause cardiac injury, with mounting evidence rev...
Mitochondria have a myriad of essential functions including metabolism and apoptosis. These chief fu...
Significance: Mitochondrial glutathione fulfills crucial roles in a number of processes, including i...
Increases in the intracellular levels of reactive oxygen species (ROS), frequently referred to as ox...
AbstractAt its core mitochondrial function relies on redox reactions. Electrons stripped from nutrie...
Mitochondria are crucial components of eukaryotic cells and exchange signalling molecules, metabolit...
Even though oxidative stress damage from excessive production of ROS is a well known phenomenon, the...
Mitochondrial glutathione (GSH) and thioredoxin (Trx) systems function independently of the rest of ...
Mitochondrial dysfunction is associated with activation of the integrated stress response (ISR) but ...
AbstractEven though oxidative stress damage from excessive production of ROS is a well known phenome...