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IGF-1 potentiates sensory innervation signalling by modulating the mitochondrial fission/fusion balance

机译:IGF-1通过调节线粒体裂变/融合平衡来增强感觉神经支配信号

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摘要

Restoring the contractile function of long-term denervated skeletal muscle (SKM) cells is difficult due to the long period of denervation, which causes a loss of contractility. Although sensory innervation is considered a promising protective approach, its effect is still restricted. In this study, we introduced insulin-like growth factor-1 (IGF-1) as an efficient protective agent and observed that IGF-1 potentiated the effects of sensory protection by preventing denervated muscle atrophy and improving the condition of denervated muscle cells in vivo and in vitro. IGF-1-induced Akt phosphorylation suppressed the mitochondrial outer-membrane protein Mul1 expression, which is a key step on preserving contractile property of sensory innervated SKM cells. Mul1 overexpression interfered with the balance between mitochondrial fusion and fission and was a key node for blocking the effects of IGF-1 that preserved the contractility of sensory-innervated SKM cells. Activation of AMP-activated protein kinase α (AMPKα), a mitochondrial downstream target, could block the effects of IGF-1. These data provide novel evidence that might be applied when searching for new approaches to improve the functional condition of long-term denervated SKM cells by increasing sensory protection using the IGF-1 signalling system to modulate the balance between mitochondrial fusion and fission.
机译:由于长期失神经,很难恢复长期失神经的骨骼肌(SKM)细胞的收缩功能,这会导致收缩力的丧失。尽管感觉神经支配被认为是一种有前途的保护方法,但其作用仍然受到限制。在这项研究中,我们引入了胰岛素样生长因子-1(IGF-1)作为有效的保护剂,并观察到IGF-1通过防止神经支配的肌肉萎缩和改善体内神经支配的神经细胞的状况来增强感觉保护的作用。和体外。 IGF-1诱导的Akt磷酸化抑制了线粒体外膜蛋白Mul1的表达,这是保持感觉神经支配的SKM细胞收缩特性的关键步骤。 Mul1的过表达干扰线粒体融合与裂变之间的平衡,是阻止IGF-1的作用的关键节点,IGF-1的作用是保留感觉神经支配的SKM细胞的收缩性。线粒体下游靶标AMP活化的蛋白激酶α(AMPKα)的激活可以阻断IGF-1的作用。这些数据提供了新颖的证据,这些证据可能在寻找新的途径以通过使用IGF-1信号系统调节线粒体融合与裂变之间的平衡来增强感觉保护作用来改善长期失神经化SKM细胞的功能状况时应用。

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