首页> 外文期刊>Journal of Turbulence >IGF-1 Attenuates Hypoxia-Induced Atrophy but Inhibits Myoglobin Expression in C2C12 Skeletal Muscle Myotubes
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IGF-1 Attenuates Hypoxia-Induced Atrophy but Inhibits Myoglobin Expression in C2C12 Skeletal Muscle Myotubes

机译:IGF-1衰减缺氧诱导的萎缩,但抑制在C2C12骨骼肌myotubes中的肌红蛋白表达

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摘要

Chronic hypoxia is associated with muscle wasting and decreased oxidative capacity. By contrast, training under hypoxia may enhance hypertrophy and increase oxidative capacity as well as oxygen transport to the mitochondria, by increasing myoglobin (Mb) expression. The latter may be a feasible strategy to prevent atrophy under hypoxia and enhance an eventual hypertrophic response to anabolic stimulation. Mb expression may be further enhanced by lipid supplementation. We investigated individual and combined effects of hypoxia, insulin-like growth factor (IGF)-1 and lipids, in mouse skeletal muscle C2C12 myotubes. Differentiated C2C12 myotubes were cultured for 24 h under 20%, 5% and 2% oxygen with or without IGF-1 and/or lipid treatment. In culture under 20% oxygen, IGF-1 induced 51% hypertrophy. Hypertrophy was only 32% under 5% and abrogated under 2% oxygen. This was not explained by changes in expression of genes involved in contractile protein synthesis or degradation, suggesting a reduced rate of translation rather than of transcription. Myoglobin mRNA expression increased by 75% under 5% O-2 but decreased by 50% upon IGF-1 treatment under 20% O-2, compared to control. Inhibition of mammalian target of rapamycin (mTOR) activation using rapamycin restored Mb mRNA expression to control levels. Lipid supplementation had no effect on Mb gene expression. Thus, IGF-1-induced anabolic signaling can be a strategy to improve muscle size under mild hypoxia, but lowers Mb gene expression.
机译:慢性缺氧与肌肉浪费和氧化能力下降有关。相比之下,通过增加肌球蛋白(MB)表达,缺氧下的培训可能增强肥大并增加对线粒体的氧化能力和氧气输送。后者可能是一种可行的策略,可防止缺氧下的萎缩,并增强对合成代谢刺激的最终肥大反应。通过脂质补充,可以进一步增强MB表达。我们调查了缺氧,胰岛素样生长因子(IGF)-1和脂质的个体和综合影响,在小鼠骨骼肌C2C12 myotubes中。将分化的C 2 Cl 2 24小时培养24小时,在20%,5%和2%氧中,或没有IGF-1和/或脂质处理。在20%氧的培养中,IGF-1诱导51%的肥大。肥大仅为32%以下5%,氧气下降2%。这不是通过参与收缩蛋白合成或降解的基因表达的变化来解释,表明翻译率降低而不是转录。与对照相比,Myoglobin mRNA表达在5%O-2下提高75%,但在20%O-2下的IGF-1处理下减少了50%。使用雷帕霉素恢复MB mRNA表达对对照水平的雷帕霉素(MTOR)活化乳乳酰键靶标的抑制作用。脂质补充对MB基因表达没有影响。因此,IGF-1诱导的代谢信号可以是改善缺氧下的肌肉大小的策略,但降低了MB基因表达。

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  • 来源
    《Journal of Turbulence》 |2017年第9期|共15页
  • 作者单位

    Vrije Univ Amsterdam Dept Human Movement Sci Fac Behav &

    Movement Sci Lab Myol Amsterdam Movement Sci De Boelelaan 1108 NL-1081 HZ Amsterdam Netherlands;

    Vrije Univ Amsterdam Dept Human Movement Sci Fac Behav &

    Movement Sci Lab Myol Amsterdam Movement Sci De Boelelaan 1108 NL-1081 HZ Amsterdam Netherlands;

    Vrije Univ Amsterdam Dept Human Movement Sci Fac Behav &

    Movement Sci Lab Myol Amsterdam Movement Sci De Boelelaan 1108 NL-1081 HZ Amsterdam Netherlands;

    Vrije Univ Amsterdam Dept Human Movement Sci Fac Behav &

    Movement Sci Lab Myol Amsterdam Movement Sci De Boelelaan 1108 NL-1081 HZ Amsterdam Netherlands;

    Vrije Univ Amsterdam Dept Human Movement Sci Fac Behav &

    Movement Sci Lab Myol Amsterdam Movement Sci De Boelelaan 1108 NL-1081 HZ Amsterdam Netherlands;

    Vrije Univ Amsterdam Dept Human Movement Sci Fac Behav &

    Movement Sci Lab Myol Amsterdam Movement Sci De Boelelaan 1108 NL-1081 HZ Amsterdam Netherlands;

    Vrije Univ Amsterdam Med Ctr Dept Physiol Amsterdam Cardiovasc Sci De Boelelaan 1108 NL-1081 HZ Amsterdam Netherlands;

    Vrije Univ Amsterdam Med Ctr Dept Physiol Amsterdam Cardiovasc Sci De Boelelaan 1108 NL-1081 HZ Amsterdam Netherlands;

    Vrije Univ Amsterdam Dept Human Movement Sci Fac Behav &

    Movement Sci Lab Myol Amsterdam Movement Sci De Boelelaan 1108 NL-1081 HZ Amsterdam Netherlands;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 流体力学;
  • 关键词

    hypoxia; myoglobin; hypertrophy; anabolic signaling; C2C12; fatty acid; mTOR; mitochondrial biosynthesis; succinate dehydrogenase; myogenic regulatory factors; VEGF;

    机译:缺氧;myoglobin;肥大;合成代谢信号;c2c12;脂肪酸;mtor;线粒体生物合成;琥珀酸乙酯脱氢酶;肌遗传监管因素;VEGF;

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