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Defects in neuromuscular junction remodelling in the Smn~(2B/-) mouse model of spinal muscular atrophy

机译:Smn〜(2B /-)脊髓性肌萎缩症小鼠模型中神经肌肉接头重塑的缺陷

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摘要

Spinal muscular atrophy (SMA) is a devastating childhood motor neuron disease caused by mutations and deletions within the survival motor neuron 1 {SMN1) gene. Although other tissues may be involved, motor neurons remain primary pathological targets, with loss of neuromuscular junctions (NMJs) representing an early and significant event in pathogenesis. Although defects in axonal outgrowth and pathfinding have been observed in cell culture and in lower organisms upon Smn depletion, developmental defects in mouse models have been less obvious. Here, we have employed the Smn~(2B/-) mouse model to investigate NMJ remodelling during SMA pathology, induced reinnervation, and paralysis. We show that whilst NMJs are capable of remodelling during pathogenesis, there is a marked reduction in paralysis-induced remodelling and in the nerve-directed re-organisation of acetylcholine receptors. This reduction in remodelling potential could not be attributed to a decreased rate of axonal growth. Finally, we have identified a loss of terminal Schwann cells which could contribute to the defects in remodelling/maintenance observed. Our work demonstrates that there are specific defects in NMJ remodelling in an intermediate SMA mouse model, which could contribute to or underlie pathogenesis in SMA. The development of strategies that can promote the remodelling potential of NMJs may therefore be of significant benefit to SMA patients.
机译:脊髓性肌萎缩症(SMA)是一种毁灭性的童年运动神经元疾病,由存活运动神经元1(SMN1)基因内的突变和缺失引起。尽管可能涉及其他组织,但运动神经元仍是主要的病理学靶标,神经肌肉接头(NMJ)的丧失代表了发病机理中的早期和重要事件。尽管在Smn耗尽后,在细胞培养和低等生物中观察到了轴突生长和寻路的缺陷,但小鼠模型中的发育缺陷却不那么明显。在这里,我们采用了Smn〜(2B /-)小鼠模型来研究SMA病理,诱导的神经支配和麻痹过程中NMJ的重塑。我们显示,虽然NMJs能够在发病机理中进行重塑,但在麻痹引起的重塑和乙酰胆碱受体的神经定向重整方面有明显的减少。重塑潜力的降低不能归因于轴突生长速率的降低。最后,我们已经确定了末端雪旺细胞的丢失,这可能是造成重构/维护缺陷的原因。我们的工作表明,在中间SMA小鼠模型中NMJ重塑中存在特定缺陷,这可能会导致或成为SMA的发病机理。因此,开发能够促进NMJ重塑潜能的策略可能对SMA患者有重大益处。

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