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Myostatin Induces DNA Damage in Skeletal Muscle of Streptozotocin-induced Type 1 Diabetic Mice

机译:Myostatin诱导链脲佐菌素诱导的1型糖尿病小鼠骨骼肌中的DNA损伤。

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摘要

One of the features of uncontrolled type 1 diabetes is oxidative stress that induces DNA damage and cell death. Skeletal muscle atrophy is also considerable in type 1 diabetes, however, the signaling mechanisms that induce oxidative stress culminating in muscle atrophy are not fully known. Here, we show that in Streptozotocin-induced diabetic wild type mice, hypo-phosphorylation of Akt, resulted in activation of Foxa2 transcription factor in the muscle. Foxa2 transcriptionally up-regulated Myostatin, contributing to exaggerated oxidative stress leading to DNA damage via p63/REDD1 pathway in skeletal muscle of Streptozotocin-treated wild type mice. In Myostatin−/− mice however, Streptozotocin treatment did not reduce Akt phosphorylation despite reduced IRS-1 signaling. Moreover, Foxa2 levels remained unaltered in Myostatin−/− mice, while levels of p63/REDD1 were higher compared with wild type mice. Consistent with these results, relatively less DNA damage and muscle atrophy was observed in Myostatin−/− muscle in response to Streptozotocin treatment. Taken together, our results for the first time show the role of Foxa2 in Myostatin regulation in skeletal muscle in diabetic mice. Altogether, these results demonstrate the mechanism by which Myostatin contributes to DNA damage in skeletal muscle of the diabetic mice that would lead to myofiber degeneration.
机译:不受控制的1型糖尿病的特征之一是氧化应激,可诱导DNA损伤和细胞死亡。骨骼肌萎缩在1型糖尿病中也很重要,但是,诱导氧化应激最终导致肌肉萎缩的信号传导机制尚不完全清楚。在这里,我们显示在链脲佐菌素诱导的糖尿病野生型小鼠中,Akt的磷酸化不足,导致肌肉中Foxa2转录因子的激活。 Foxa2转录上调了Myostatin,导致过大的氧化应激导致经链脲佐菌素处理的野生型小鼠骨骼肌中的p63 / REDD1途径引起DNA损伤。然而,在Myostatin -/-小鼠中,尽管IRS-1信号转导减少,链脲佐菌素处理仍未降低Akt磷酸化。此外,Myostatin -/-小鼠中Foxa2的水平保持不变,而p63 / REDD1的水平则高于野生型小鼠。与这些结果一致,在对链脲佐菌素的治疗中,Myostatin -/-肌肉中观察到相对较少的DNA损伤和肌肉萎缩。两者合计,我们的结果首次显示Foxa2在糖尿病小鼠骨骼肌Myostatin调节中的作用。总而言之,这些结果证明了肌生长抑制素通过这种机制导致糖尿病小鼠骨骼肌中DNA损伤,从而导致肌纤维变性。

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