Escola de Educação Física e Esporte, Universidade de São Paulo, São Paulo, SP, Brasil.
Braz J Med Biol Res. 2013 Apr;46(4):343-7. doi: 10.1590/1414-431x20132557. Epub 2013 Apr 19.
The activation of competing intracellular pathways has been proposed to explain the reduced training adaptations after concurrent strength and endurance exercises (CE). The present study investigated the acute effects of CE, strength exercises (SE), and endurance exercises (EE) on phosphorylated/total ratios of selected AMPK and Akt/mTOR/p70(S6K1) pathway proteins in rats. Six animals per exercise group were killed immediately (0 h) and 2 h after each exercise mode. In addition, 6 animals in a non-exercised condition (NE) were killed on the same day and under the same conditions. The levels of AMPK, phospho-Thr(172)AMPK (p-AMPK), Akt, phospho-Ser(473)Akt (p-Akt), p70(S6K1), phospho-Thr(389)-p70(S6K1) (p-p70(S6K1)), mTOR, phospho-Ser(2448)mTOR (p-mTOR), and phospho-Thr(1462)-TSC2 (p-TSC2) expression were evaluated by immunoblotting in total plantaris muscle extracts. The only significant difference detected was an increase (i.e., 87%) in Akt phosphorylated/total ratio in the CE group 2 h after exercise compared to the NE group (P = 0.002). There were no changes in AMPK, TSC2, mTOR, or p70(S6K1) ratios when the exercise modes were compared to the NE condition (P ≥ 0.05). In conclusion, our data suggest that low-intensity and low-volume CE might not blunt the training-induced adaptations, since it did not activate competing intracellular pathways in an acute bout of strength and endurance exercises in rat skeletal muscle.
细胞内竞争途径的激活被认为可以解释在同时进行的力量和耐力训练(CE)后训练适应的减少。本研究旨在探讨 CE、力量训练(SE)和耐力训练(EE)对大鼠选定 AMPK 和 Akt/mTOR/p70(S6K1) 通路蛋白磷酸化/总比值的急性影响。每组运动有 6 只动物,在每种运动方式后立即(0 h)和 2 h 处死。此外,在相同的日子和相同的条件下,6 只未运动的动物(NE)被处死。通过免疫印迹法评估总比目鱼肌提取物中 AMPK、磷酸化 Thr(172)AMPK(p-AMPK)、Akt、磷酸化 Ser(473)Akt(p-Akt)、p70(S6K1)、磷酸化 Thr(389)-p70(S6K1)(p-p70(S6K1))、mTOR、磷酸化 Ser(2448)mTOR(p-mTOR)和磷酸化 Thr(1462)-TSC2(p-TSC2)的表达水平。唯一检测到的显著差异是 CE 组运动后 2 h 时 Akt 磷酸化/总比值增加(即增加 87%),与 NE 组相比(P=0.002)。与 NE 条件相比,当比较运动模式时,AMPK、TSC2、mTOR 或 p70(S6K1)的比值没有变化(P≥0.05)。总之,我们的数据表明,低强度和低容量的 CE 可能不会削弱训练引起的适应,因为它没有在大鼠骨骼肌的一次力量和耐力训练中激活竞争的细胞内途径。