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Effects of chronic Akt/mTOR inhibition by rapamycin on mechanical overload-induced hypertrophy and myosin heavy chain transition in masseter muscle

机译:雷帕霉素对Akt / mTOR的慢性抑制作用对咬肌中机械性超负荷引起的肥大和肌球蛋白重链转变的影响

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To examine the effects of the Akt/mammalian target of rapamycin (mTOR) pathway on masseter muscle hypertrophy and myosin heavy chain (MHC) transition in response to mechanical overload, we analyzed the effects of bite-opening (BO) on the hypertrophy and MHC composition of masseter muscle of BO-rats treated or not treated with rapamycin (RAPA), a selective mTOR inhibitor. The masseter muscle weight in BO-rats was significantly greater than that in controls, and this increase was attenuated by RAPA treatment. Expression of slow-twitch MHC isoforms was significantly increased in BO-rats with/without RAPA treatment, compared with controls, but the magnitude of the increase was much smaller in RAPA-treated BO-rats. Phosphorylation of p44/42 MAPK (ERK1/2), which preserves fast-twitch MHC isoforms in skeletal muscle, was significantly decreased in BO-rats, but the decrease was abrogated by RAPA treatment. Calcineurin signaling is known to be important for masseter muscle hypertrophy and fast-to-slow MHC isoform transition, but expression of known calcineurin activity modulators was unaffected by RAPA treatment. Taken together, these results indicate that the Akt/mTOR pathway is involved in both development of masseter muscle hypertrophy and fast-to-slow MHC isoform transition in response to mechanical overload with inhibition of the ERK1/2 pathway and operates independently of the calcineurin pathway.
机译:若要检查雷帕霉素的Akt /哺乳动物靶点(mTOR)对咬肌肌肉肥大和响应机械负荷的肌球蛋白重链(MHC)转变的影响,我们分析了咬合开放(BO)对肥大和MHC的影响雷帕霉素(RAPA)(一种选择性mTOR抑制剂)治疗或未治疗的BO-大鼠咬肌的组成。 BO-大鼠的咬肌重量显着大于对照组,并且这种增加通过RAPA处理得以减弱。与对照组相比,接受/不接受RAPA处理的BO-大鼠中慢抽动MHC亚型的表达显着增加,但是在RAPA处理的BO-大鼠中,这种增加的幅度要小得多。在BO-大鼠中,p44 / 42 MAPK(ERK1 / 2)的磷酸化在骨骼肌中保留了快速抽动的MHC亚型,但其磷酸化水平显着下降,但RAPA处理则消除了该下降。已知钙调神经磷酸酶信号对于咬肌增生和MHC异构体快速变慢很重要,但RAPA处理不会影响已知的钙调神经磷酸酶活性调节剂的表达。综上所述,这些结果表明,Akt / mTOR通路参与了咬肌增生的形成和MHC亚型快速变慢的转变,这是由于对ERK1 / 2通路的抑制导致机械超负荷,并且与钙调神经磷酸酶通路无关。

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