首页> 美国卫生研究院文献>The Journal of Neuroscience >Signaling by insulin-like growth factors in paralyzed skeletal muscle: rapid induction of IGF1 expression in muscle fibers and prevention of interstitial cell proliferation by IGF-BP5 and IGF-BP4
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Signaling by insulin-like growth factors in paralyzed skeletal muscle: rapid induction of IGF1 expression in muscle fibers and prevention of interstitial cell proliferation by IGF-BP5 and IGF-BP4

机译:胰岛素样生长因子在骨骼肌麻痹中的信号转导:快速诱导肌纤维中IGF1表达并通过IGF-BP5和IGF-BP4防止间质细胞增殖

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摘要

In the absence of muscle activity, muscle fibers, muscle interstitial cells, and intramuscular nerves display characteristic reactions presumably aimed at restoring a functioning neuromuscular system and avoiding degenerative events. In partially denervated muscle these include proliferation of interstitial cells, followed by nerve sprouting. The same reactions can be induced in intact muscle by elevation of intramuscular insulin-like growth factor (IGF) levels. To determine whether IGFs may participate in the initiation of restorative reactions in inactivated muscle we analyzed the expression of IGF1 and IGF2 mRNA in botulinum toxin-paralyzed and in denervated rat skeletal muscle, and interfered with the activity of IGFs by locally applying the IGF-binding proteins IGF-BP5 and IGF-BP4. To obtain a resolution of the in situ hybridization signals at the cellular level, a nonradioactive method based on digoxigenin-labeled probes was applied. We found that muscle fiber IGF1 mRNA increased rapidly and transiently in inactivated muscle. The time course of this response was similar to that reported for ACh receptor subunits and myogenins. A similar behavior was observed for the corresponding IGF1 protein. The IGF1 response coincided with the transient muscle interstitial cell proliferation reaction. Local application of recombinant IGF-BP5 or IGF- BP4, which are endogenous and specific extracellular ligands of IGFs, prevented the stimulation of interstitial cell proliferation in paralyzed muscle. Our data demonstrate the elevated production of the growth factor IGF1 among early reactions in electrically inactive skeletal muscle fibers and indicate that muscle IGFs are required for the induction of intramuscular interstitial cell proliferation. These findings support the hypothesis that in the neuromuscular system IGF1 plays an important role in initiating cellular reactions in the vicinity of inactive muscle fibers.
机译:在缺乏肌肉活动的情况下,肌肉纤维,肌肉间质细胞和肌内神经显示出特征性反应,推测是旨在恢复功能正常的神经肌肉系统并避免退行性事件。在部分神经支配的肌肉中,这些包括间质细胞的增殖,然后是神经萌芽。通过提高肌内胰岛素样生长因子(IGF)水平,可以在完整的肌肉中诱发相同的反应。为了确定IGF是否可能参与失活​​肌肉的恢复反应的启动,我们分析了肉毒毒素麻痹的和失神经的大鼠骨骼肌中IGF1和IGF2 mRNA的表达,并通过局部应用IGF结合物干扰了IGF的活性。蛋白IGF-BP5和IGF-BP4。为了获得细胞水平的原位杂交信号的分辨率,应用了基于洋地黄毒苷标记的探针的非放射性方法。我们发现肌肉纤维IGF1 mRNA在失活的肌肉中迅速而短暂地增加。该反应的时间过程与报道的ACh受体亚基和肌生成素相似。对于相应的IGF1蛋白,观察到类似的行为。 IGF1反应与短暂性肌肉间质细胞增殖反应相吻合。作为IGFs的内源性和特异性细胞外配体的重组IGF-BP5或IGF-BP4的局部应用阻止了麻痹性肌肉中间质细胞增殖的刺激。我们的数据表明,在非电活动性骨骼肌纤维的早期反应中,生长因子IGF1的产生增加,并且表明肌肉IGFs是诱导肌内间质细胞增殖所必需的。这些发现支持以下假设:在神经肌肉系统中,IGF1在启动非活动性肌纤维附近的细胞反应中起重要作用。

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