Aging is a prominent risk factor for neurodegenerative disorders (NDDs); however, the molecular mechanisms rendering the aged brain particularly susceptible to neurodegeneration remain unclear. Here, we aim to determine the link between physiological aging and NDDs by exploring protein turnover using metabolic labeling and quantitative pulse-SILAC proteomics. By comparing protein lifetimes between physiologically aged and young adult mice, we found that in aged brains protein lifetimes are increased by ~20% and that aging affects distinct pathways linked to NDDs. Specifically, a set of neuroprotective proteins are longer-lived in aged brains, while some mitochondrial proteins linked to neurodegeneration are shorter-lived. Strikingly, we obs...
Aging is characterized by a progressive decline in the function of adult tissues which can lead to n...
Biological aging is often described by its phenotypic effect on individuals. Still, its causes are m...
Brain function is highly dependent upon controlled energy metabolism whose loss heralds cognitive im...
A progressive loss of protein homeostasis is characteristic of aging and a driver of neurodegenerati...
Aging is associated with a general decline in cognitive functions, which appears to be due to altera...
Aging is associated with a general decline of cognitive functions, and it is widely accepted that th...
Brain function is highly dependent on a well-regulated, harmonic interaction of a multitude of cellu...
The amount of any given protein in the brain is determined by the rates of its synthesis and destruc...
The deleterious effects of aging on the brain remain to be fully elucidated. In the present study, p...
AbstractMitochondria are dynamic organelles critical for many cellular processes, including energy g...
Brain function is highly dependent upon controlled energy metabolism whose loss heralds cognitive im...
Thesis (Ph.D.)--University of Washington, 2015-10Introduction: Maintenance of proper protein homeost...
Mitochondria are dynamic organelles critical for many cellular processes, including energy generatio...
Proteome and proteostasis network disruptions accompany proteostasis alterations, leading to accumul...
Described here is the application of thermodynamic stability measurements to study age-related diffe...
Aging is characterized by a progressive decline in the function of adult tissues which can lead to n...
Biological aging is often described by its phenotypic effect on individuals. Still, its causes are m...
Brain function is highly dependent upon controlled energy metabolism whose loss heralds cognitive im...
A progressive loss of protein homeostasis is characteristic of aging and a driver of neurodegenerati...
Aging is associated with a general decline in cognitive functions, which appears to be due to altera...
Aging is associated with a general decline of cognitive functions, and it is widely accepted that th...
Brain function is highly dependent on a well-regulated, harmonic interaction of a multitude of cellu...
The amount of any given protein in the brain is determined by the rates of its synthesis and destruc...
The deleterious effects of aging on the brain remain to be fully elucidated. In the present study, p...
AbstractMitochondria are dynamic organelles critical for many cellular processes, including energy g...
Brain function is highly dependent upon controlled energy metabolism whose loss heralds cognitive im...
Thesis (Ph.D.)--University of Washington, 2015-10Introduction: Maintenance of proper protein homeost...
Mitochondria are dynamic organelles critical for many cellular processes, including energy generatio...
Proteome and proteostasis network disruptions accompany proteostasis alterations, leading to accumul...
Described here is the application of thermodynamic stability measurements to study age-related diffe...
Aging is characterized by a progressive decline in the function of adult tissues which can lead to n...
Biological aging is often described by its phenotypic effect on individuals. Still, its causes are m...
Brain function is highly dependent upon controlled energy metabolism whose loss heralds cognitive im...