PO-260 Anabolic signalling in individual muscle fibres following resistance exercise in combination with amino acid intake

S. Edman, K. Söderlund, E. Blomstrand
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引用次数: 1

Abstract

Objective Human muscle consists of a mixture of fibres with different contractile and metabolic properties, type I (slow-twitch) and type II (fast-twitch) fibres. Little is known about the effect of anabolic stimuli, in particular nutrition, on the molecular response in the different fibre types. Here, we examine the effect of resistance exercise and essential amino acid (EAA) supplementation on mTOR signalling in individual type I and type II human muscle fibres. Methods Five strength-trained male subjects performed two sessions of leg press exercise (10 x 10 repetition at 62-85 % of 1RM). During exercise and recovery, the subjects ingested an aqueous solution with EAA (290 mg/kg) or flavoured water (placebo). Muscle biopsies were taken from the vastus lateralis before and 90 min after exercise. The biopsies were freeze-dried and single fibres dissected out and weighed (range 0.9 – 8 ug). The fibres were individually homogenized and analysed for proteins in the mTOR pathway using Western blot. Membranes were repeatedly stripped and fibres were identified as type I or type II following incubation with antibodies against the different myosin isoforms. Results Exercise led to a significant increase in mTOR and p70S6k1 phosphorylation and a fall in eEF2 phosphorylation, similar in both fibre types. There was a large variation between individual fibres; some fibres were highly activated whereas others were not activated at all despite the heavy exercise performed. Intake of EAA caused a 2- to 6-fold higher increase in mTOR and p70S6k1 phosphorylation in both type I and type II fibres as compared to intake of placebo, with no difference between the fibre types. The phosphorylation of eEF2 was not affected by intake of EAA. The total expression of p70S6k1 and eEF2 was 145% and 155% higher in type II than in type I fibres (P<0.05), respectively, whereas no difference between the fibre types was observed for mTOR protein. Conclusions The response to heavy resistance exercise regarding mTOR signalling was similar in type I and type II fibres in trained subjects, but with a large variation between single fibres of both types. Furthermore, ingestion of EAA enhanced the effect of resistance exercise on phosphorylation of mTOR and p70S6k1 in both fibre types.  
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PO-260氨基酸摄入与抗阻运动后单个肌纤维的合成代谢信号
人体肌肉由具有不同收缩和代谢特性的纤维混合物组成,I型(慢抽动)和II型(快抽动)纤维。关于合成代谢刺激,特别是营养对不同纤维类型的分子反应的影响,我们所知甚少。在这里,我们研究了抗阻运动和补充必需氨基酸(EAA)对个体I型和II型人体肌纤维mTOR信号传导的影响。方法5名接受力量训练的男性受试者进行2次腿部按压练习(10 × 10次,每次1RM的62% ~ 85%)。在运动和恢复期间,受试者摄入EAA水溶液(290 mg/kg)或调味水(安慰剂)。运动前和运动后90分钟分别对股外侧肌进行肌肉活检。活组织切片冷冻干燥,分离出单个纤维并称重(范围0.9 - 8 ug)。将纤维单独匀浆,并使用Western blot分析mTOR通路中的蛋白质。膜被反复剥离,纤维在针对不同肌球蛋白同型异构体的抗体孵育后被鉴定为I型或II型。结果运动导致mTOR和p70S6k1磷酸化显著增加,eEF2磷酸化显著下降,这两种纤维类型相似。单个纤维之间存在很大差异;一些纤维被高度激活,而另一些则完全没有被激活,尽管进行了大量的运动。与摄入安慰剂相比,摄入EAA导致I型和II型纤维中mTOR和p70S6k1磷酸化增加2至6倍,纤维类型之间没有差异。eEF2的磷酸化不受摄入EAA的影响。p70S6k1和eEF2在II型纤维中的总表达量分别比I型纤维高145%和155% (P<0.05),而mTOR蛋白在纤维类型之间无差异。结论:在训练对象中,I型和II型纤维对mTOR信号的大阻力运动的反应相似,但两种类型的单一纤维之间存在很大差异。此外,摄入EAA增强了阻力运动对两种纤维类型中mTOR和p70S6k1磷酸化的影响。
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