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首页> 外文期刊>Gene: An International Journal Focusing on Gene Cloning and Gene Structure and Function >Effect of acute and chronic eccentric exercise on FOXO1 mRNA expression as fiber type transition factor in rat skeletal muscles
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Effect of acute and chronic eccentric exercise on FOXO1 mRNA expression as fiber type transition factor in rat skeletal muscles

机译:急慢性离心运动对大鼠骨骼肌纤维类型转换因子FOXO1 mRNA表达的影响

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Skeletal muscle is a highly elastic tissue which can respond to various functional demands by altering fiber-type composition. Exercise affects muscle fiber phenotype. One of the transcription factors that induce fiber-type transition is forkhead box O1 (FOXO1). Since eccentric contraction considered an essential part of exercise, so we are interested to see the effects of eccentric exercise (acute/chronic) on FOXO1 as an important factor of fiber-type transition in rat skeletal muscles. Twenty-four Sprague-Dawley rats (190-235 g) were divided to 3 groups of 8 rats: 1) chronic eccentric exercise (CEE), 2) acute eccentric exercise (AEE), and 3) control (C). The exercise groups underwent downhill running protocol. CEE was running on treadmill in 3 days of week for 9 weelcs, that slope and duration gradually managed from -4 degrees to -16 degrees and 15 to 90 min, respectively. AEE group was running with 16 m/min on -16 degrees slope for 3 consecutive days that included 18 sets of 5 min with rest interval of 2 min in between. Soleus and super vastus lateralis (SVL) muscles mRNA were analyzed by real-time RT-PCR. SVL FOXO1 mRNA levels increased by 3.92-fold in the AEE and decreased 0.56-fold in the CEE group and were not significant in soleus muscle. In soleus muscle, myosin heavy chain (MHC) IIa, IIx, and Ilb decreased in the AEE group and MHC Ha and IIx decreased in the CEE group. In SVL muscle, MHC I, IIa, and IIx increased in the AEE group and MHC Ha and IIX increased in the CEE group. In summary, both acute and chronic eccentric exercise could lead to change in FOXO1 mRNA only in fast SVL muscle of rat and so could induce fiber-type transition in both muscles regardless of changes in expression of FOXO1. So, oxidative stress can play important role in change of FOX01. (C) 2016 Elsevier B.V. All rights reserved.
机译:骨骼肌是一种高度弹性的组织,可以通过改变纤维类型组成来响应各种功能需求。运动会影响肌纤维表型。诱导纤维型转变的转录因子之一是叉头盒O1(FOXO1)。由于离心运动被认为是运动的重要组成部分,因此我们有兴趣看到离心运动(急性/慢性)对FOXO1的影响是大鼠骨骼肌纤维型转变的重要因素。将24只Sprague-Dawley大鼠(190-235 g)分为3组,每组8只大鼠:1)慢性离心运动(CEE),2)急性离心运动(AEE),以及3)对照(C)。练习组接受下坡跑步方案。 CEE在跑步机上每周3天运行9次,每次跑步的坡度和持续时间分别从-4度到-16度和从15分钟到90分钟逐渐得到控制。 AEE组连续16天以16 m / min的速度在-16度坡度上跑步,其中包括18组5分钟,其间休息间隔为2分钟。通过实时RT-PCR分析比目鱼肌和外侧股外侧肌(SVL)的mRNA。 SVL FOXO1 mRNA水平在AEE中升高3.92倍,在CEE组中降低0.56倍,而在比目鱼肌中则不明显。在比目鱼肌中,AEE组的肌球蛋白重链(MHC)IIa,IIx和Ilb降低,而CEE组的MHC Ha和IIx降低。在SVL肌肉中,AEE组的MHC I,IIa和IIx升高,而CEE组的MHC Ha和IIX升高。综上所述,急性和慢性离心运动都只能导致大鼠快速SVL肌肉中FOXO1 mRNA的变化,因此无论FOXO1表达如何变化,均可诱导两条肌肉的纤维类型转变。因此,氧化应激可以在FOX01的变化中起重要作用。 (C)2016 Elsevier B.V.保留所有权利。

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