This study investigated effects of prolonged submaximal exercise on Na+-K+-ATPase mRNA and protein expression, maximal activity, and content in human skeletal muscle. We also investigated the effects on mRNA expression of the transcription initiator gene, RNA polymerase II (RNAP II), and key genes involved in protein translation, eukaryotic initiation factor-4E (eIF-4E) and 4E-binding protein 1 (4E-BP1). Eleven subjects (6 men, 5 women) cycled at 75.5% (SD 4.8%) peak O2 uptake and continued until fatigue. A vastus lateralis muscle biopsy was taken at rest, fatigue, and 3 and 24 h postexercise. We analyzed muscle for Na+-K+-ATPase α1, α2, α3, β1, β2, and β3, as well for RNAP II, eIF-4E, and 4E-BP1 mRNA expres...
This laboratory has shown that exercise in humans impairs skeletal muscle Na+,K+-ATPase maximal in v...
The Na+,K+-ATPase (NKA) is a key protein involved in the maintenance of skeletal muscle excitability...
Prolonged exhaustive submaximal exercise in humans induces marked\ud metabolic changes, but little i...
Characterization of expression of, and consequently also the acute exercise effects on, Na+,K+-ATPas...
The Na+-K+-ATPase enzyme is vital in skeletal muscle function. We investigated the effects of acute ...
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...
Acute endurance exercise induces transcriptional and translational responses of the Na+,K+-ATPase is...
AIM - This study investigated the effects of endurance training status and sex differences on skelet...
Aim: This study investigated the effects of endurance training status and sex differences on skeleta...
This study investigated whether fatiguing dynamic exercise depresses maximal in vitro Na+-K+-ATPase ...
Physical training increases skeletal muscle Na+,K+-ATPase content (NKA) and improves exercise perfor...
This study investigated the effects of endurance training status and sex differences on skeletal mus...
Physical inactivity is a global health risk that can be addressed through application of exercise tr...
This thesis examines the effects of acute and chronic exercise, electrical stimulation and explores ...
This laboratory has shown that exercise in humans impairs skeletal muscle Na+,K+-ATPase maximal in v...
The Na+,K+-ATPase (NKA) is a key protein involved in the maintenance of skeletal muscle excitability...
Prolonged exhaustive submaximal exercise in humans induces marked\ud metabolic changes, but little i...
Characterization of expression of, and consequently also the acute exercise effects on, Na+,K+-ATPas...
The Na+-K+-ATPase enzyme is vital in skeletal muscle function. We investigated the effects of acute ...
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...
Acute endurance exercise induces transcriptional and translational responses of the Na+,K+-ATPase is...
AIM - This study investigated the effects of endurance training status and sex differences on skelet...
Aim: This study investigated the effects of endurance training status and sex differences on skeleta...
This study investigated whether fatiguing dynamic exercise depresses maximal in vitro Na+-K+-ATPase ...
Physical training increases skeletal muscle Na+,K+-ATPase content (NKA) and improves exercise perfor...
This study investigated the effects of endurance training status and sex differences on skeletal mus...
Physical inactivity is a global health risk that can be addressed through application of exercise tr...
This thesis examines the effects of acute and chronic exercise, electrical stimulation and explores ...
This laboratory has shown that exercise in humans impairs skeletal muscle Na+,K+-ATPase maximal in v...
The Na+,K+-ATPase (NKA) is a key protein involved in the maintenance of skeletal muscle excitability...
Prolonged exhaustive submaximal exercise in humans induces marked\ud metabolic changes, but little i...