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Repressors of mTORC1 act to blunt the anabolic response to feeding in the soleus muscle of a cast‐immobilized mouse hindlimb

机译:mTORC1阻遏物的作用是钝化饲喂固定在小鼠后肢的比目鱼肌中的合成代谢反应

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摘要

We recently reported results showing that cast immobilization of a rat hindlimb rapidly leads to development of anabolic resistance as demonstrated by failure of oral leucine administration to activate the mechanistic target of rapamycin complex 1 (mTORC1) and stimulate protein synthesis in the soleus muscle. The goal of this study was to assess the possible contribution of several mTORC1 regulatory proteins to the development of anabolic resistance. To accomplish this, 14‐week‐old male C57BL/6 mice (n = 21) were subjected to unilateral cast immobilization of the hindlimb for either 1 or 3 days, and the immobilized limb was compared to its contralateral control. The mass of the soleus muscle was decreased in the immobilized compared to the non‐immobilized limb within 72‐h in association with diminished protein synthesis. In agreement with our previous report, a 24‐h casting period was sufficient to induce anabolic resistance, as demonstrated by blunted re‐feeding‐induced activation of mTORC1. Moreover, resistance of mTORC1 activation was associated not only with upregulated expression of REDD1, but also with altered expression of other mTORC1 regulatory proteins, that is, Sestrin1 and DEP domain‐containing mTOR interacting protein (DEPTOR). In addition, re‐feeding‐induced phosphorylation of DEPTOR was significantly impaired in the immobilized compared to the non‐immobilized limb. This work builds upon previous discoveries by our laboratory to elucidate the blunted mTORC1 response to stimuli during disuse of skeletal muscle induced by cast immobilization while highlighting new potential therapeutic targets for future countermeasures against muscle atrophy.
机译:我们最近报道的结果表明,大鼠后肢的石膏固定很快导致了合成代谢抗性的发展,口服亮氨酸给药未能激活雷帕霉素复合物1(mTORC1)的机械目标并刺激比目鱼肌合成蛋白质失败。这项研究的目的是评估几种mTORC1调节蛋白对合成代谢抗性发展的可能贡献。为此,对14周龄的雄性C57BL / 6小鼠(n = 21)进行了单侧后肢固定石膏固定1或3天,并将固定的肢体与其对侧对照进行了比较。与未固定的肢体相比,固定的比目鱼肌质量在72小时内下降,这与蛋白质合成减少有关。与我们之前的报告一致,24 h的铸造期足以诱导合成代谢抗性,如钝化补料诱导的mTORC1激活所证明。此外,mTORC1激活的抗性不仅与REDD1的表达上调有关,而且与其他mTORC1调节蛋白,即含有Sestrin1和DEP域的mTOR相互作用蛋白(DEPTOR)的表达改变有关。此外,与未固定肢体相比,固定后肢的再喂养诱导的DEPTOR磷酸化显着受损。这项工作是建立在我们实验室先前的发现基础上的,目的是阐明在固定石膏引起的骨骼肌废用过程中,mTORC1对刺激的钝化反应,同时着重指出了新的潜在治疗靶标,以应对未来的肌肉萎缩对策。

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