Publication | Closed Access
Hypoxia alters contractile protein homeostasis in L6 myotubes
38
Citations
18
References
2009
Year
Muscle FunctionCytoskeletonRedox BiologyProtein HomeostasisCellular PhysiologyMuscle AtrophyOxidative StressMuscle InjurySkeletal MuscleRedox RegulatorProtein DegradationCell SignalingHealth SciencesMolecular PhysiologyBiochemistryHypoxia (Medicine)Developmental BiologyPhysiologyCatabolismMetabolismMedicine
Since hypoxia might contribute to the development of muscle atrophy, we wished to provide direct evidence linking hypoxia to muscle atrophy. By evaluating protein degradation and synthesis in hypoxic myotubes we found a significant reduction in total protein content. Using functional assays we observed protein degradation elevation in the first 24 h while synthesis was maintained during this period and then significantly decrease at 48 h. These results demonstrate a temporal regulation of protein homeostasis, whereby elevated protein degradation is followed by a reduction in synthesis. These results are comparable to the cellular adaptation seen during development of muscle atrophy.
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