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Impaired overload-induced muscle growth is associated with diminished translational signalling in aged rat fast-twitch skeletal muscle

机译:超负荷诱导的肌肉生长受损与衰老的大鼠快速抽搐骨骼肌的翻译信号减弱相关

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摘要

Impaired overload-induced protein synthesis and growth in aged fast-twitch skeletal muscle may result from diminished responsiveness of signalling intermediates controlling protein translation. Yet, potential age-related signalling decrements have never been examined in direct parallel with impaired overload-induced muscle growth in any model. To this end, we used Western blotting to examine the contents and phosphorylation states of mammalian target of rapamycin (mTOR) and its downstream translational signalling intermediates, 70 kDa ribosomal protein S6 kinase (S6k), ribosomal protein S6 (rpS6), eukaryotic elongation factor 2 (eEF2), and eukaryotic initiation factor 4E-binding protein 1 (4E-BP1), in conjunction with impaired growth in 1 week overloaded fast-twitch plantaris muscles (via unilateral gastrocnemius ablation) of old (O; 30 months) versus young adult (YA; 8 months) male Fischer344 × Brown Norway rats. The significantly (P ≤ 0.05) diminished growth (assessed by total muscle protein content) in overloaded O muscles (5.6 ± 1.7 versus 19.3 ± 2.9% in YA) was accompanied by significant impairments in the phosphorylation states of mTOR (Ser2448), S6k (impaired at the mTOR-specific Thr389 residue but not at Thr421/Ser424), rpS6 (Ser235/236) and 4E-BP1 (gel shift), as well as deficits in total eEF2 accretion. Moreover, in overloaded muscles across both age groups, phospho-S6k at Thr389 (but not at Thr421/Ser424), 4E-BP1 phosphorylation status, and total eEF2 accretion were all positively correlated with percentage muscle hypertrophy, and negatively correlated with the phosphorylation (Thr172) of 5′-AMP-activated protein kinase (AMPK; which inhibits translational signalling and protein synthesis in young muscle at rest). As previously published by ourselves, AMPK was hyperphosphorylated in O versus YA muscles used in the current investigation. The present results provide solid evidence that impaired overload-induced growth in aged fast-twitch muscle may partly result from multiple-level decrements in signalling pathway(s) controlling protein translation, and also provide an initial indication that AMPK hyperactivation with age may potentially lie upstream of these decrements.
机译:衰老的快速抽搐骨骼肌中超负荷诱导的蛋白质合成和生长受损可能是由于控制蛋白质翻译的信号传递中间产物的响应能力降低所致。但是,从未在任何模型中与超负荷引起的肌肉生长受损直接平行地检查与年龄相关的潜在信号传导减少。为此,我们使用蛋白质印迹法检查了雷帕霉素(mTOR)及其下游翻译信号传导中间产物,70 kDa核糖体蛋白S6激酶(S6k),核糖体蛋白S6(rpS6),真核生物延伸因子的哺乳动物靶标的含量和磷酸化状态2(eEF2)和真核起始因子4E结合蛋白1(4E-BP1),与旧的(O; 30个月)较年轻的快速抽搐months肌(通过单侧腓肠肌消融)在1周内的生长受损有关成年(YA; 8个月)雄性Fischer344×褐挪威大鼠。过载的O肌肉的显着(P≤0.05)生长减慢(通过总肌肉蛋白含量评估)(YA为5.6±1.7对19.3±2.9%),同时mTOR(Ser2448),S6k(在mTOR特异性Thr389残基受损,但在Thr421 / Ser424受损,而rpS6(Ser235 / 236)和4E-BP1(凝胶位移)受损,以及总eEF2积聚不足。此外,在两个年龄段的肌肉超负荷中,Thr389处的磷酸化S6k(而不是Thr421 / Ser424处),4E-BP1磷酸化状态和总eEF2增生均与肌肉肥大百分比呈正相关,而与磷酸化呈负相关( 5'-AMP激活的蛋白激酶(AMPK;抑制静止年轻肌肉中的翻译信号传导和蛋白合成)的Thr172)。正如我们自己先前所发表的那样,当前研究中使用的AMPK与YA肌肉中的AMPK磷酸化程度较高。本研究结果提供了有力的证据,表明衰老的快速抽搐肌肉中超负荷引起的生长受损可能部分是由于控制蛋白质翻译的信号通路多级递减造成的,并且还初步表明随着年龄的增长,AMPK过度活化可能存在这些减量的上游。

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