Skeletal muscle atrophy is a consequence of muscle inactivity resulting from denervation, unloading and immobility. It accompanies many chronic disease states and also occurs as a pathophysiologic consequence of normal aging. In all these conditions, ubiquitin-dependent proteolysis is a key regulator of the loss of muscle mass, and ubiquitin ligases confer specificity to this process by interacting with, and linking ubiquitin moieties to target substrates through protein:protein interaction domains. Our previous work suggested that the ubiquitin-protein ligase Nedd4-1 is a potential mediator of skeletal muscle atrophy associated with inactivity (denervation, unloading and immobility). Here we generated a novel tool, the Nedd4-1 skeletal mus...
Background/Aims: Muscle disuse can lead to muscle atrophy and impaired skeletal muscle function. How...
Abstract Background Denervation triggers numerous molecular responses in skeletal muscle, including ...
Limb girdle muscular dystrophy 2H is caused by mutations in the gene encoding the E3 ubiquitin ligas...
Skeletal muscle atrophy is a consequence of muscle inactivity resulting from denervation, unloading ...
Skeletal muscle (SM) atrophy complicates many illnesses, diminishing quality of life and increasing ...
Skeletal muscle (SM) atrophy complicates many illnesses, diminishing quality of life and increasing ...
Skeletal muscle atrophy occurs both as a natural consequence of muscle disuse and aging, and as a pa...
<div><p>It is well known that the ubiquitin-proteasome system is activated in response to skeletal m...
It is well known that the ubiquitin-proteasome system is activated in response to skeletal muscle wa...
<p><i>Nedd4-1</i> SMS-KO and littermate <i>Myo<sup>Cre</sup>;Nedd4-1<sup>+/+</sup></i> control mice ...
Skeletal muscle atrophy occurs in a variety of clinical settings, including disuse atrophy and dener...
SummaryMaintenance of skeletal muscle structure and function requires innervation by motor neurons, ...
Loss of neuronal stimulation enhances protein breakdown and reduces protein synthesis, causing rapid...
International audienceDenervation of skeletal muscle is a debilitating consequence of injury of the ...
Skeletal muscle wasting can be a fatal complication of many diseases, such as cancer, AIDS and neuro...
Background/Aims: Muscle disuse can lead to muscle atrophy and impaired skeletal muscle function. How...
Abstract Background Denervation triggers numerous molecular responses in skeletal muscle, including ...
Limb girdle muscular dystrophy 2H is caused by mutations in the gene encoding the E3 ubiquitin ligas...
Skeletal muscle atrophy is a consequence of muscle inactivity resulting from denervation, unloading ...
Skeletal muscle (SM) atrophy complicates many illnesses, diminishing quality of life and increasing ...
Skeletal muscle (SM) atrophy complicates many illnesses, diminishing quality of life and increasing ...
Skeletal muscle atrophy occurs both as a natural consequence of muscle disuse and aging, and as a pa...
<div><p>It is well known that the ubiquitin-proteasome system is activated in response to skeletal m...
It is well known that the ubiquitin-proteasome system is activated in response to skeletal muscle wa...
<p><i>Nedd4-1</i> SMS-KO and littermate <i>Myo<sup>Cre</sup>;Nedd4-1<sup>+/+</sup></i> control mice ...
Skeletal muscle atrophy occurs in a variety of clinical settings, including disuse atrophy and dener...
SummaryMaintenance of skeletal muscle structure and function requires innervation by motor neurons, ...
Loss of neuronal stimulation enhances protein breakdown and reduces protein synthesis, causing rapid...
International audienceDenervation of skeletal muscle is a debilitating consequence of injury of the ...
Skeletal muscle wasting can be a fatal complication of many diseases, such as cancer, AIDS and neuro...
Background/Aims: Muscle disuse can lead to muscle atrophy and impaired skeletal muscle function. How...
Abstract Background Denervation triggers numerous molecular responses in skeletal muscle, including ...
Limb girdle muscular dystrophy 2H is caused by mutations in the gene encoding the E3 ubiquitin ligas...