Unilateral denervation is widely used for studies investigating mechanisms of muscle atrophy. The "contralateral-innervated muscle" is a commonly used experimental control in denervation studies. It is not clear whether denervation unilaterally alters the proteolytic system in the contralateral-innervated muscles. Therefore, the objectives of this rapid report are 1) to determine whether unilateral denervation has an effect on the proteolytic system in contralateral-innervated control muscles and 2) to identify the changes in proteasome properties in denervated muscles after 7- and 14-day tibial nerve transection with either the contralateral-innervated muscles or intact muscles from nonsurgical mice used as the experimental control. In the...
Deletion of muscle RING finger 1 (MuRF1), an E3 ubiquitin ligase, leads to sparing of muscle mass fo...
Denervation deeply affects muscle structure and function, the alterations being different in slow an...
Evidence indicates that the trophic influences of motor nerves on skeletal muscle are mediated both ...
It is well known that the ubiquitin-proteasome system is activated in response to skeletal muscle wa...
<div><p>It is well known that the ubiquitin-proteasome system is activated in response to skeletal m...
The standard 26S proteasome is responsible for the majority of myofibrillar protein degradation lead...
We have undertaken a systematic study of the progression of atrophy following denervation in mouse ...
It is well known that the ubiquitin-proteasome system is activated in response to skeletal muscle wa...
The standard 26S proteasome is responsible for the majority of myofibrillar protein degradation lead...
This study was undertaken to further elucidate the relative contributions of activity and myotrophic...
The literature has provided ample evidence that neural influence is responsible for the regulation a...
Skeletal muscle denervation leads to an increase of proteolytic activity, which is also favoured by ...
<p>Quantitative real-time RT-PCR for myosin subtypes of the gastrocnemius muscle in the denervated (...
Following one month of denervation, a skeletal muscle loses 62% of its mass and 95% of its maximum f...
Skeletal muscle atrophy caused by denervation is a serious consequence of neuropathic disease, espec...
Deletion of muscle RING finger 1 (MuRF1), an E3 ubiquitin ligase, leads to sparing of muscle mass fo...
Denervation deeply affects muscle structure and function, the alterations being different in slow an...
Evidence indicates that the trophic influences of motor nerves on skeletal muscle are mediated both ...
It is well known that the ubiquitin-proteasome system is activated in response to skeletal muscle wa...
<div><p>It is well known that the ubiquitin-proteasome system is activated in response to skeletal m...
The standard 26S proteasome is responsible for the majority of myofibrillar protein degradation lead...
We have undertaken a systematic study of the progression of atrophy following denervation in mouse ...
It is well known that the ubiquitin-proteasome system is activated in response to skeletal muscle wa...
The standard 26S proteasome is responsible for the majority of myofibrillar protein degradation lead...
This study was undertaken to further elucidate the relative contributions of activity and myotrophic...
The literature has provided ample evidence that neural influence is responsible for the regulation a...
Skeletal muscle denervation leads to an increase of proteolytic activity, which is also favoured by ...
<p>Quantitative real-time RT-PCR for myosin subtypes of the gastrocnemius muscle in the denervated (...
Following one month of denervation, a skeletal muscle loses 62% of its mass and 95% of its maximum f...
Skeletal muscle atrophy caused by denervation is a serious consequence of neuropathic disease, espec...
Deletion of muscle RING finger 1 (MuRF1), an E3 ubiquitin ligase, leads to sparing of muscle mass fo...
Denervation deeply affects muscle structure and function, the alterations being different in slow an...
Evidence indicates that the trophic influences of motor nerves on skeletal muscle are mediated both ...