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Differential induction of muscle atrophy pathways in two mouse models of spinal muscular atrophy

机译:在两种脊髓性肌肉萎缩模型中的肌肉萎缩途径的差异诱导

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摘要

Motor neuron loss and neurogenic atrophy are hallmarks of spinal muscular atrophy (SMA), a leading genetic cause of infant deaths. Previous studies have focused on deciphering disease pathogenesis in motor neurons. However, a systematic evaluation of atrophy pathways in muscles is lacking. Here, we show that these pathways are differentially activated depending on severity of disease in two different SMA model mice. Although proteasomal degradation is induced in skeletal muscle of both models, autophagosomal degradation is present only in Smn2B/− mice but not in the more severe Smn−/−; SMN2 mice. Expression of FoxO transcription factors, which regulate both proteasomal and autophagosomal degradation, is elevated in Smn2B/− muscle. Remarkably, administration of trichostatin A reversed all molecular changes associated with atrophy. Cardiac muscle also exhibits differential induction of atrophy between Smn2B/− and Smn−/−; SMN2 mice, albeit in the opposite direction to that of skeletal muscle. Altogether, our work highlights the importance of cautious analysis of different mouse models of SMA as distinct patterns of atrophy induction are at play depending on disease severity. We also revealed that one of the beneficial impacts of trichostatin A on SMA model mice is via attenuation of muscle atrophy through reduction of FoxO expression to normal levels.
机译:运动神经元丢失和神经源性萎缩是脊髓性肌萎缩症(SMA)的标志,后者是婴儿死亡的主要原因。先前的研究集中在解密运动神经元的疾病发病机理。但是,缺乏对肌肉萎缩途径的系统评价。在这里,我们显示了根据两种不同的SMA模型小鼠的疾病严重程度,这些途径被不同地激活。尽管两种模型的骨骼肌均诱导蛋白酶体降解,但自噬体降解仅在Smn 2B /-小鼠中存在,而在更严重的Smn -/-中则不存在。 SMN2小鼠。调节蛋白酶体和自噬体降解的FoxO转录因子的表达在Smn 2B /-肌肉中升高。值得注意的是,曲古抑菌素A的使用可以逆转与萎缩相关的所有分子变化。心肌还表现出Smn 2B /-和Smn -/-之间的萎缩差异。 SMN2小鼠,尽管与骨骼肌的方向相反。总而言之,我们的工作强调了对不同的SMA小鼠模型进行谨慎分析的重要性,因为取决于疾病的严重程度,不同的萎缩诱导模式在起作用。我们还揭示了曲古抑菌素A对SMA模型小鼠的有益影响之一是通过将FoxO表达降低至正常水平来减轻肌肉萎缩。

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