首页> 外文期刊>Neuromuscular disorders: NMD >Ultrastructural changes in diaphragm neuromuscular junctions in a severe mouse model for Spinal Muscular Atrophy and their prevention by bifunctional U7 snRNA correcting SMN2 splicing.
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Ultrastructural changes in diaphragm neuromuscular junctions in a severe mouse model for Spinal Muscular Atrophy and their prevention by bifunctional U7 snRNA correcting SMN2 splicing.

机译:在严重的脊髓型肌萎缩症小鼠模型中,diaphragm肌神经肌肉接头的超微结构变化及其通过校正SMN2剪接的双功能U7 snRNA来预防。

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摘要

In Spinal Muscular Atrophy (SMA), the SMN1 gene is deleted or inactivated. Because of a splicing problem, the second copy gene, SMN2, generates insufficient amounts of functional SMN protein, leading to the death of spinal cord motoneurons. For a "severe" mouse SMA model (Smn -/-, hSMN2 +/+; with affected pups dying at 5-7 days), which most closely mimicks the genetic set-up in human SMA patients, we characterise SMA-related ultrastructural changes in neuromuscular junctions (NMJs) of two striated muscles with discrete functions. In the diaphragm, but not the soleus muscle of 4-days old SMA mice, mitochondria on both sides of the NMJs degenerate, and perisynaptic Schwann cells as well as endoneurial fibroblasts show striking changes in morphology. Importantly, NMJs of SMA mice in which a modified U7 snRNA corrects SMN2 splicing and delays or prevents SMA symptoms are normal. This ultrastructural study reveals novel features of NMJ alterations - in particular the involvement of perisynaptic Schwann cells - that may be relevant for human SMA pathogenesis.
机译:在脊髓性肌萎缩症(SMA)中,SMN1基因被删除或失活。由于存在剪接问题,第二个复制基因SMN2生成的功能性SMN蛋白数量不足,导致脊髓运动神经元死亡。对于“重度”小鼠SMA模型(Smn-/-,hSMN2 + / +;受影响的幼犬死于5-7天),该模型最能模仿人类SMA患者的遗传结构,我们表征了SMA相关的超微结构具有离散功能的两个横纹肌的神经肌肉接头(NMJ)的变化。在四日龄SMA小鼠的the肌而非比目鱼肌中,NMJ两侧的线粒体变性,突触周围的雪旺氏细胞以及神经内膜成纤维细胞的形态发生了显着变化。重要的是,SMA小鼠的NMJ(经修饰的U7 snRNA可纠正SMN2剪接并延迟或预防SMA症状)是正常的。这项超微结构研究揭示了NMJ改变的新特征-特别是突触周围雪旺氏细胞的参与-可能与人类SMA的发病机制有关。

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