Correlative evidence links stress, accumulation of oxidative cellular damage and ageing in lower organisms and in mammals. We investigated their mechanistic connections in p66Shc knockout mice, which are characterized by increased resistance to oxidative stress and extended life span. We report that p66Shc acts as a downstream target of the tumour suppressor p53 and is indispensable for the ability of stress-activated p53 to induce elevation of intracellular oxidants, cytochrome c release and apoptosis. Other functions of p53 are not influenced by p66Shc expression. In basal conditions, p66Shc-/- and p53-/- cells have reduced amounts of intracellular oxidants and oxidation-damaged DNA. We propose that steady-state levels of intracellular ox...
Reactive oxygen species (ROS) are potent inducers of oxidative damage and have been implicated in th...
The 66 KDa isoform of Shc and its signalling properties have attracted in the past years major inter...
p66Shc was the first mammalian gene whose mutation was demonstrated to increase resistance to oxidat...
Oxidative stress is a determining factor of cellular senescence and aging and a potent inducer of th...
Reactive oxygen species (ROS) are regarded as hazardous by-products of mitochondrial respiration. In...
Abstract Reactive oxygen species (ROS) are regarded as hazardous by-products of mitochondrial respir...
Abstract Control of intracellular redox balance has emerged as a primary function of the p53 networ...
p66shc-/- mice exhibit prolonged lifespan and increased resistance to oxidative and hypoxic stress. ...
P66Shc regulates life span in mammals and is a critical component of the apoptotic response to oxida...
p66Shc is the only known proapoptotic member of the Shc protein family of molecular adaptors. Throug...
Oxidative stress affects the availability of key-regulators of vascular homeostasis and controls a n...
Oxidative stress affects the availability of key-regulators of vascular homeostasis and controls a n...
Reactive oxygen species (ROS) are potent inducers of oxidative damage and have been implicated in th...
Oxidative stress affects the availability of key-regulators of vascular homeostasis and controls a n...
p66shc is a protein product of an mRNA isoform of SHC1 gene that has a pro-oxidant and pro-apoptotic...
Reactive oxygen species (ROS) are potent inducers of oxidative damage and have been implicated in th...
The 66 KDa isoform of Shc and its signalling properties have attracted in the past years major inter...
p66Shc was the first mammalian gene whose mutation was demonstrated to increase resistance to oxidat...
Oxidative stress is a determining factor of cellular senescence and aging and a potent inducer of th...
Reactive oxygen species (ROS) are regarded as hazardous by-products of mitochondrial respiration. In...
Abstract Reactive oxygen species (ROS) are regarded as hazardous by-products of mitochondrial respir...
Abstract Control of intracellular redox balance has emerged as a primary function of the p53 networ...
p66shc-/- mice exhibit prolonged lifespan and increased resistance to oxidative and hypoxic stress. ...
P66Shc regulates life span in mammals and is a critical component of the apoptotic response to oxida...
p66Shc is the only known proapoptotic member of the Shc protein family of molecular adaptors. Throug...
Oxidative stress affects the availability of key-regulators of vascular homeostasis and controls a n...
Oxidative stress affects the availability of key-regulators of vascular homeostasis and controls a n...
Reactive oxygen species (ROS) are potent inducers of oxidative damage and have been implicated in th...
Oxidative stress affects the availability of key-regulators of vascular homeostasis and controls a n...
p66shc is a protein product of an mRNA isoform of SHC1 gene that has a pro-oxidant and pro-apoptotic...
Reactive oxygen species (ROS) are potent inducers of oxidative damage and have been implicated in th...
The 66 KDa isoform of Shc and its signalling properties have attracted in the past years major inter...
p66Shc was the first mammalian gene whose mutation was demonstrated to increase resistance to oxidat...