AbstractChanges in the two main intracellular degradation systems, the Ubiquitin-Proteasome System and the Autophagy-Lysosome pathway (ALP) are widely discussed as a hallmark of the aging process. To follow the age-related behavior of both degradation systems we examined their impact on ferritin, known to be degradable by both. Ferritin H was analyzed in young and senescent human fibroblasts, revealing a higher steady-state level in the senescent cells. By blocking both proteolytic systems, we confirmed that particularly the ALP plays a crucial role in ferritin H turnover. However, an unexpected increase in lysosomal activity in the senescent cells, suggests a dysregulation in the autophagy pathway. To further investigate the impaired ferri...
Autophagy is a fundamental cellular process that eliminates molecules and subcellular elements, incl...
Cellular senescence is a stable proliferation arrest, a potent tumor suppressor mechanism, and a lik...
SIRT1 (Sir2) is an NAD+-dependent deacetylase that plays critical roles in a broad range of biologic...
Changes in the two main intracellular degradation systems, the Ubiquitin-Proteasome System and the A...
Cellular senescence is characterised by the irreversible arrest of proliferation, a pro-inflammatory...
AbstractThe overall decrease in proteolytic activity in aging can promote and accelerate protein acc...
The overall decrease in proteolytic activity in aging can promote and accelerate protein accumulatio...
The lysosomal compartment is a major site for intracellular degradation. Lysosomal degradation of th...
Recent studies have demonstrated that activation of autophagy increases the lifespan of organisms fr...
Autophagy is an intracellular stress response that is enhanced under starvation conditions, and also...
The lysosomal compartment is essential for a variety of cellular functions, including the normal tur...
Autophagy, a highly conserved mechanism of quality control inside cells, is essential for the mainte...
BACKGROUND:Recent studies have demonstrated that activation of autophagy increases the lifespan of o...
Autophagy is an evolutionally conserved membrane trafficking process that degrades unwanted proteins...
Autophagy is an evolutionally conserved membrane trafficking process that degrades unwanted proteins...
Autophagy is a fundamental cellular process that eliminates molecules and subcellular elements, incl...
Cellular senescence is a stable proliferation arrest, a potent tumor suppressor mechanism, and a lik...
SIRT1 (Sir2) is an NAD+-dependent deacetylase that plays critical roles in a broad range of biologic...
Changes in the two main intracellular degradation systems, the Ubiquitin-Proteasome System and the A...
Cellular senescence is characterised by the irreversible arrest of proliferation, a pro-inflammatory...
AbstractThe overall decrease in proteolytic activity in aging can promote and accelerate protein acc...
The overall decrease in proteolytic activity in aging can promote and accelerate protein accumulatio...
The lysosomal compartment is a major site for intracellular degradation. Lysosomal degradation of th...
Recent studies have demonstrated that activation of autophagy increases the lifespan of organisms fr...
Autophagy is an intracellular stress response that is enhanced under starvation conditions, and also...
The lysosomal compartment is essential for a variety of cellular functions, including the normal tur...
Autophagy, a highly conserved mechanism of quality control inside cells, is essential for the mainte...
BACKGROUND:Recent studies have demonstrated that activation of autophagy increases the lifespan of o...
Autophagy is an evolutionally conserved membrane trafficking process that degrades unwanted proteins...
Autophagy is an evolutionally conserved membrane trafficking process that degrades unwanted proteins...
Autophagy is a fundamental cellular process that eliminates molecules and subcellular elements, incl...
Cellular senescence is a stable proliferation arrest, a potent tumor suppressor mechanism, and a lik...
SIRT1 (Sir2) is an NAD+-dependent deacetylase that plays critical roles in a broad range of biologic...