Muscle atrophy involves a massive catabolism of intracellular components leading to a significant reduction in cellular and tissue volume. In this regard, autophagy, an intracellular mechanism that degrades proteins and organelles, has been implicated with muscle breakdown. Recently, it has shown that polycystin-2 (PC2), a membrane protein that belongs to the transient receptor potential (TRP) family, is required for the maintenance of cellular proteostasis, by regulating autophagy in several cell types. The role of PC2 in the control of atrophy and autophagy in skeletal muscle remains unknown. Here, we show that PC2 is required for the induction of atrophy in C2C12 myotubes caused by nutrient deprivation or rapamycin exposure. Consistently...
This review assesses the importance of proteostasis in skeletal muscle maintenance with a specific e...
The proteolytic autophagy system is involved in a major regulatory pathway in dexamethasone (Dex)-in...
BACKGROUND: Skeletal muscle is a plastic tissue that can adapt to different stimuli. It is well est...
Muscle atrophy involves a massive catabolism of intracellular components leading to a significant re...
Muscle atrophy involves a massive catabolism of intracellular components leading to a significant re...
Muscle atrophy involves a massive catabolism of intracellular components leading to a significant re...
Aims: Considerable evidence points to critical roles of intracellular Ca2+ homeostasis in the modula...
SummaryAutophagy is a catabolic process that ensures homeostatic cell clearance and is deregulated i...
Autophagy impairment has been implicated in several muscle disorders and in age-related dysfunction....
Skeletal muscle comprises about 40% of body mass and plays an essential role in metabolism and movem...
Autophagy has been implicated as a major factor in the development of a number of diseases of skelet...
Mammalian target of rapamycin (mTOR) is a key regulator of cell growth that associates with raptor a...
Autophagy is a catabolic process that ensures homeostatic cell clearance and is deregulated in a gro...
Poster presented at the 2017 Health Sciences Research Day which was organized and sponsored by the U...
Muscle protein wasting in cancer cachexia is a critical problem. The underlying mechanisms are still...
This review assesses the importance of proteostasis in skeletal muscle maintenance with a specific e...
The proteolytic autophagy system is involved in a major regulatory pathway in dexamethasone (Dex)-in...
BACKGROUND: Skeletal muscle is a plastic tissue that can adapt to different stimuli. It is well est...
Muscle atrophy involves a massive catabolism of intracellular components leading to a significant re...
Muscle atrophy involves a massive catabolism of intracellular components leading to a significant re...
Muscle atrophy involves a massive catabolism of intracellular components leading to a significant re...
Aims: Considerable evidence points to critical roles of intracellular Ca2+ homeostasis in the modula...
SummaryAutophagy is a catabolic process that ensures homeostatic cell clearance and is deregulated i...
Autophagy impairment has been implicated in several muscle disorders and in age-related dysfunction....
Skeletal muscle comprises about 40% of body mass and plays an essential role in metabolism and movem...
Autophagy has been implicated as a major factor in the development of a number of diseases of skelet...
Mammalian target of rapamycin (mTOR) is a key regulator of cell growth that associates with raptor a...
Autophagy is a catabolic process that ensures homeostatic cell clearance and is deregulated in a gro...
Poster presented at the 2017 Health Sciences Research Day which was organized and sponsored by the U...
Muscle protein wasting in cancer cachexia is a critical problem. The underlying mechanisms are still...
This review assesses the importance of proteostasis in skeletal muscle maintenance with a specific e...
The proteolytic autophagy system is involved in a major regulatory pathway in dexamethasone (Dex)-in...
BACKGROUND: Skeletal muscle is a plastic tissue that can adapt to different stimuli. It is well est...