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Elevated nuclear Foxo1 suppresses excitability of skeletal muscle fibers

机译:高核Foxo1抑制骨骼肌纤维的兴奋性

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摘要

Forkhead box O 1 (Foxo1) controls the expression of proteins that carry out processes leading to skeletal muscle atrophy, making Foxo1 of therapeutic interest in conditions of muscle wasting. The transcription of Foxo1-regulated proteins is dependent on the translocation of Foxo1 to the nucleus, which can be repressed by insulin-like growth factor-1 (IGF-1) treatment. The role of Foxo1 in muscle atrophy has been explored at length, but whether Foxo1 nuclear activity affects skeletal muscle excitation-contraction (EC) coupling has not yet been examined. Here, we use cultured adult mouse skeletal muscle fibers to investigate the effects of Foxo1 overexpression on EC coupling. Fibers expressing Foxo1-green fluorescent protein (GFP) exhibit an inability to contract, impaired propagation of action potentials, and ablation of calcium transients in response to electrical stimulation compared with fibers expressing GFP alone. Evaluation of the transverse (T)-tubule system morphology, the membranous system involved in the radial propagation of the action potential, revealed an intact T-tubule network in fibers overexpressing Foxo1-GFP. Interestingly, long-term IGF-1 treatment of Foxo1-GFP fibers, which maintains Foxo1-GFP outside the nucleus, prevented the loss of normal calcium transients, indicating that Foxo1 translocation and the atrogenes it regulates affect the expression of proteins involved in the generation and/or propagation of action potentials. A reduction in the sodium channel Nav1.4 expression in fibers overexpressing Foxo1-GFP was also observed in the absence of IGF-1. We conclude that increased nuclear activity of Foxo1 prevents the normal muscle responses to electrical stimulation and that this indicates a novel capability of Foxo1 to disable the functional activity of skeletal muscle.
机译:叉头箱O 1(Foxo1)控制执行导致骨骼肌萎缩的过程的蛋白质的表达,使Foxo1在肌肉消瘦的情况下具有治疗意义。 Foxo1调节蛋白的转录取决于Foxo1向核的转运,该转运可被胰岛素样生长因子1(IGF-1)处理抑制。已经详细探讨了Foxo1在肌肉萎缩中的作用,但尚未研究Foxo1核活性是否影响骨骼肌兴奋收缩(EC)耦合。在这里,我们使用培养的成年小鼠骨骼肌纤维来调查Foxo1过表达对EC耦合的影响。与仅表达GFP的纤维相比,表达Foxo1-绿色荧光蛋白(GFP)的纤维在电刺激下显示出无法收缩,受损的动作电位传播和钙瞬变消融。对横向(T)-小管系统形态,参与动作电位的径向传播的膜系统的评估显示,在过表达Foxo1-GFP的纤维中完整的T-小管网络。有趣的是,Foxo1-GFP纤维的长期IGF-1处理将Foxo1-GFP保持在细胞核外,阻止了正常钙瞬变的丧失,这表明Foxo1易位及其调节的星形胶质基因影响了这一世代所涉及蛋白质的表达。和/或动作电位的传播。在没有IGF-1的情况下,也观察到过表达Foxo1-GFP的纤维中钠通道Nav1.4表达的减少。我们得出结论,Foxo1的核活性增加会阻止正常的肌肉对电刺激的反应,这表明Foxo1具有禁用骨骼肌功能活性的新能力。

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