Skeletal muscle wasting with disuse atrophy is multi-dimensional: the response and interaction of myonuclei, satellite cells and signaling pathways

被引:145
作者
Brooks, Naomi E. [1 ]
Myburgh, Kathryn H. [2 ]
机构
[1] Univ Stirling, Sch Sport, Hlth & Exercise Sci Res Grp, Stirling FK9 4LA, Scotland
[2] Univ Stellenbosch, Dept Physiol Sci, Muscle Res Grp, ZA-7600 Stellenbosch, South Africa
来源
FRONTIERS IN PHYSIOLOGY | 2014年 / 5卷
关键词
skeletal muscle atrophy; muscle cell signaling; myostatin; MuRF1; MAFbx; IGF1-AKT-mTOR; unloading; resistance exercise; GROWTH-FACTOR-I; MANTLED GROUND-SQUIRRELS; ESSENTIAL AMINO-ACID; RAT SOLEUS; HINDLIMB SUSPENSION; RESISTANCE EXERCISE; PROTEIN-SYNTHESIS; FIBER SIZE; DOMAIN SIZE; STEM-CELLS;
D O I
10.3389/fphys.2014.00099
中图分类号
Q4 [生理学];
学科分类号
071003 ;
摘要
Maintenance of skeletal muscle is essential for health and survival. There are marked losses of skeletal muscle mass as well as strength and physiological function under conditions of low mechanical load, such as space flight, as well as ground based models such as bed rest, immobilization, disuse, and various animal models. Disuse atrophy is caused by mechanical unloading of muscle and this leads to reduced muscle mass without fiber attrition. Skeletal muscle stem cells (satellite cells) and myonuclei are integrally involved in skeletal muscle responses to environmental changes that induce atrophy. Myonuclear domain size is influenced differently in fast and slow twitch muscle, but also by different models of muscle wasting, a factor that is not yet understood. Although the myonuclear domain is 3-dimensional this is rarely considered. Apoptosis as a mechanism for myonuclear loss with atrophy is controversial, whereas cell death of satellite cells has not been considered. Molecular signals such as myostatin/SMAD pathway, MAFbx, and MuRF1 E3 ligases of the ubiquitin proteasome pathway and IGF1-AKT-mTOR pathway are 3 distinctly different contributors to skeletal muscle protein adaptation to disuse. Molecular signaling pathways activated in muscle fibers by disuse are rarely considered within satellite cells themselves despite similar exposure to unloading or low mechanical load. These molecular pathways interact with each other during atrophy and also when various interventions are applied that could alleviate atrophy. Re-applying mechanical load is an obvious method to restore muscle mass, however how nutrient supplementation (e.g., amino acids) may further enhance recovery (or reduce atrophy despite unloading or ageing) is currently of great interest. Satellite cells are particularly responsive to myostatin and to growth factors. Recently, the hibernating squirrel has been identified as an innovative model to study resistance to atrophy.
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页数:14
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