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Postsymptomatic restoration of SMN rescues the disease phenotype in a mouse model of severe spinal muscular atrophy

机译:SMN的症状后恢复可以挽救严重脊髓性肌萎缩症小鼠模型的疾病表型

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摘要

Spinal muscular atrophy (SMA) is a common neuromuscular disorder in humans. In fact, it is the most frequently inherited cause of infant mortality, being the result of mutations in the survival of motor neuron 1 (SMN1) gene that reduce levels of SMN protein. Restoring levels of SMN protein in individuals with SMA is perceived to be a viable therapeutic option, but the efficacy of such a strategy once symptoms are apparent has not been determined. We have generated mice harboring an inducible Smn rescue allele and used them in a model of SMA to investigate the effects of turning on SMN expression at different time points during the course of the disease. Restoring SMN protein even after disease onset was sufficient to reverse neuromuscular pathology and effect robust rescue of the SMA phenotype. Importantly, our findings also indicated that there was a therapeutic window of opportunity from P4 through P8 defined by the extent of neuromuscular synapse pathology and the ability of motor neurons to respond to SMN induction, following which restoration of the protein to the organism failed to produce therapeutic benefit. Nevertheless, our results suggest that even in severe SMA, timely reinstatement of the SMN protein may halt the progression of the disease and serve as an effective postsymptomatic treatment.
机译:脊髓性肌萎缩症(SMA)是人类常见的神经肌肉疾病。实际上,这是婴儿死亡的最常见遗传原因,是运动神经元1(SMN1)基因存活中突变的结果,这些突变降低了SMN蛋白的水平。恢复患有SMA的个体中SMN蛋白的水平被认为是可行的治疗选择,但是,一旦症状明显,这种策略的功效尚未确定。我们已经生成了具有可诱导的Smn拯救等位基因的小鼠,并将其用于SMA模型中,以研究在疾病过程中不同时间点开启SMN表达的影响。即使在疾病发作后恢复SMN蛋白也足以逆转神经肌肉病理学并有效地拯救SMA表型。重要的是,我们的研究结果还表明,从P4到P8,存在治疗性的机会窗口,具体取决于神经肌肉突触病理的范围和运动神经元对SMN诱导的反应能力,此后蛋白质无法恢复为生物体治疗效益。然而,我们的结果表明,即使在严重的SMA中,SMN蛋白的及时恢复也可能阻止疾病的进展,并可以作为有效的对症治疗。

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