Moriya Nobuki, Miyazaki Mitsunori
Department of Physical Therapy, School of Rehabilitation Sciences, Health Sciences University of Hokkaido , Hokkaido , Japan.
Am J Physiol Regul Integr Comp Physiol. 2018 May 1;314(5):R741-R751. doi: 10.1152/ajpregu.00336.2017. Epub 2018 Feb 14.
Skeletal muscle mass is determined by the net dynamic balance between protein synthesis and degradation. Although the Akt/mechanistic target of rapamycin (mTOR)-dependent pathway plays an important role in promoting protein synthesis and subsequent skeletal muscle hypertrophy, the precise molecular regulation of mTOR activity by the upstream protein kinase Akt is largely unknown. In addition, the activation of satellite cells has been indicated as a key regulator of muscle mass. However, the requirement of satellite cells for load-induced skeletal muscle hypertrophy is still under intense debate. In this study, female germline Akt1 knockout (KO) mice were used to examine whether Akt1 deficiency attenuates load-induced skeletal muscle hypertrophy through suppressing mTOR-dependent signaling and satellite cell proliferation. Akt1 KO mice showed a blunted hypertrophic response of skeletal muscle, with a diminished rate of satellite cell proliferation following mechanical overload. In contrast, Akt1 deficiency did not affect the load-induced activation of mTOR signaling and the subsequent enhanced rate of protein synthesis in skeletal muscle. These observations suggest that the load-induced activation of mTOR signaling occurs independently of Akt1 regulation and that Akt1 plays a critical role in regulating satellite cell proliferation during load-induced muscle hypertrophy.
骨骼肌质量由蛋白质合成与降解之间的净动态平衡决定。尽管依赖Akt/雷帕霉素机制性靶标(mTOR)的信号通路在促进蛋白质合成及随后的骨骼肌肥大过程中发挥重要作用,但上游蛋白激酶Akt对mTOR活性的精确分子调控在很大程度上尚不清楚。此外,卫星细胞的激活已被表明是肌肉质量的关键调节因子。然而,卫星细胞对于负荷诱导的骨骼肌肥大的必要性仍在激烈争论中。在本研究中,利用雌性生殖系Akt1基因敲除(KO)小鼠来检验Akt1缺乏是否通过抑制mTOR依赖性信号传导和卫星细胞增殖来减弱负荷诱导的骨骼肌肥大。Akt1 KO小鼠表现出骨骼肌肥大反应减弱,机械过载后卫星细胞增殖速率降低。相反,Akt1缺乏并不影响负荷诱导的mTOR信号激活以及随后骨骼肌中蛋白质合成速率的提高。这些观察结果表明,负荷诱导的mTOR信号激活独立于Akt1调控发生,且Akt1在负荷诱导的肌肉肥大过程中调节卫星细胞增殖方面起关键作用。