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Myogenic program dysregulation is contributory to disease pathogenesis in spinal muscular atrophy

机译:肌源性程序失调是造成脊髓性肌萎缩症的病因

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摘要

Mutations in the survival motor neuron (SMN1) gene lead to the neuromuscular disease spinal muscular atrophy (SMA). Although SMA is primarily considered as a motor neuron disease, the importance of muscle defects in its pathogenesis has not been fully examined. We use both primary cell culture and two different SMA model mice to demonstrate that reduced levels of Smn lead to a profound disruption in the expression of myogenic genes. This disruption was associated with a decrease in myofiber size and an increase in immature myofibers, suggesting that Smn is crucial for myogenic gene regulation and early muscle development. Histone deacetylase inhibitor trichostatin A treatment of SMA model mice increased myofiber size, myofiber maturity and attenuated the disruption of the myogenic program in these mice. Taken together, our work highlights the important contribution of myogenic program dysregulation to the muscle weakness observed in SMA.
机译:生存运动神经元(SMN1)基因的突变会导致神经肌肉疾病脊髓性肌萎缩症(SMA)。尽管SMA主要被认为是一种运动神经元疾病,但肌肉缺损在其发病机理中的重要性尚未得到充分研究。我们使用原代细胞培养和两种不同的SMA模型小鼠来证明降低的Smn水平导致肌原性基因表达的深刻破坏。这种破坏与肌纤维大小的减少和未成熟肌纤维的增加有关,这表明Smn对肌基因调节和早期肌肉发育至关重要。组蛋白脱乙酰基酶抑制剂曲古抑菌素A对SMA模型小鼠的治疗增加了肌纤维的大小,肌纤维的成熟度,并减轻了这些小鼠的肌成纤维程序的破坏。综上所述,我们的工作突出了肌源性程序失调对SMA中观察到的肌肉无力的重要贡献。

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