This study examines the isoform-specific effects of short-term hindlimb suspension (HS) on the Na,K-ATPase in rat soleus muscle. Rats were exposed to 24–72 h of HS and we analyzed the consequences on soleus muscle mass and contractile parameters; excitability and the resting membrane potential (RMP) of muscle fibers; the electrogenic activity, protein, and mRNA content of the α1 and α2 Na,K-ATPase; the functional activity and plasma membrane localization of the α2 Na,K-ATPase. Our results indicate that 24–72 h of HS specifically decreases the electrogenic activity of the Na,K-ATPase α2 isozyme and the RMP of soleus muscle fibers. This decrease occurs prior to muscle atrophy or any change in contractile parameters. The α2 mRNA and protein co...
Physical training increases skeletal muscle Na+,K+-ATPase content (NKA) and improves exercise perfor...
AbstractHindlimb skeletal muscles of the rat express two isoforms of the α (αl and α2) and two isofo...
activity of the Na,K-ATPase in rat muscle. The hypothesis that a similar mechanism is present in hu...
License, which permits unrestricted use, distribution, and reproduction in any medium, provided the ...
Changes in ion distribution across skeletal muscle membranes during muscle activity affect excitabil...
Changes in ion distribution across skeletal muscle membranes during muscle activity affect excitabil...
Background: Changes in ion distribution across skeletal muscle membranes during muscle activity affe...
Changes in ion distribution across skeletal muscle membranes during muscle activity affect excitabil...
<div><p>Background</p><p>Changes in ion distribution across skeletal muscle membranes during muscle ...
The Na,K-ATPase plays an important role in adaptation to hypoxia. Prolonged hypoxia results in loss ...
Characterization of expression of, and consequently also the acute exercise effects on, Na+,K+-ATPas...
The Na+,K+-ATPase (NKA) is a key protein involved in the maintenance of skeletal muscle excitability...
We investigated whether depressed muscle Na+-K+-ATPase activity with exercise reflected a loss of Na...
We investigated whether depressed muscle Na+-K+-ATPase activity with exercise reflected a loss of Na...
We investigated whether depressed muscle Na+-K+-ATPase activity with exercise reflected a loss of Na...
Physical training increases skeletal muscle Na+,K+-ATPase content (NKA) and improves exercise perfor...
AbstractHindlimb skeletal muscles of the rat express two isoforms of the α (αl and α2) and two isofo...
activity of the Na,K-ATPase in rat muscle. The hypothesis that a similar mechanism is present in hu...
License, which permits unrestricted use, distribution, and reproduction in any medium, provided the ...
Changes in ion distribution across skeletal muscle membranes during muscle activity affect excitabil...
Changes in ion distribution across skeletal muscle membranes during muscle activity affect excitabil...
Background: Changes in ion distribution across skeletal muscle membranes during muscle activity affe...
Changes in ion distribution across skeletal muscle membranes during muscle activity affect excitabil...
<div><p>Background</p><p>Changes in ion distribution across skeletal muscle membranes during muscle ...
The Na,K-ATPase plays an important role in adaptation to hypoxia. Prolonged hypoxia results in loss ...
Characterization of expression of, and consequently also the acute exercise effects on, Na+,K+-ATPas...
The Na+,K+-ATPase (NKA) is a key protein involved in the maintenance of skeletal muscle excitability...
We investigated whether depressed muscle Na+-K+-ATPase activity with exercise reflected a loss of Na...
We investigated whether depressed muscle Na+-K+-ATPase activity with exercise reflected a loss of Na...
We investigated whether depressed muscle Na+-K+-ATPase activity with exercise reflected a loss of Na...
Physical training increases skeletal muscle Na+,K+-ATPase content (NKA) and improves exercise perfor...
AbstractHindlimb skeletal muscles of the rat express two isoforms of the α (αl and α2) and two isofo...
activity of the Na,K-ATPase in rat muscle. The hypothesis that a similar mechanism is present in hu...