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首页> 外文期刊>Brain pathology >Spinal muscular atrophy: present state.
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Spinal muscular atrophy: present state.

机译:脊髓性肌萎缩症:目前状态。

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摘要

Spinal muscular atrophy (SMA) is a hereditary neurodegenerative disease caused by homozygous deletions or mutations in the SMN1 gene on Chr.5q13. SMA spans from severe Werdnig-Hoffmann disease (SMA 1) to relatively benign Kugelberg-Welander disease (SMA 3). Onset before birth possibly aggravates the clinical course, because immature motoneurons do not show compensatory sprouting and collateral reinnervation, and motor units in SMA 1, in contrast to those in SMA 3, are not enlarged. Genetic evidence indicates that SMN2, a gene 99% identical to SMN1, can attenuate SMA severity: in patients, more SMN2 copies and higher SMN protein levels are correlated with milder SMA. There is evidence that SMN plays a role in motoneuron RNA metabolism, but it has also been linked to apoptosis. Several mouse models with motoneuron disease have been successfully treated with neurotrophic factors. None of these models is, however, homologous to SMA. Recently, genetic mouse models of SMA have been created by introducing human SMN2 transgenes into Smn knockout mice or by targeting the Smn gene knockout to neurons. These mice not only provide important insights into the pathogenesis of SMA but are also crucial for testing new therapeutic strategies. These include SMN gene transfer, molecules capable to up-regulate SMN expression and trophic or antiapoptotic factors.
机译:脊髓性肌萎缩症(SMA)是由Chr.5q13上SMN1基因的纯合缺失或突变引起的遗传性神经退行性疾病。 SMA的范围从严重的Werdnig-Hoffmann病(SMA 1)到相对良性的Kugelberg-Welander病(SMA 3)。出生前发作可能会加重临床病程,因为未成熟的运动神经元不显示代偿性发芽和附带的神经支配,与SMA 3相比,SMA 1中的运动单位不会扩大。遗传证据表明,与SMN1具有99%相同性的基因SMN2可以减轻SMA的严重程度:在患者中,更多的SMN2拷贝和更高的SMN蛋白水平与较轻的SMA相关。有证据表明SMN在运动神经元RNA代谢中起作用,但它也与细胞凋亡有关。已经用神经营养因子成功治疗了几种带有运动神经元疾病的小鼠模型。但是,这些模型都不与SMA同源。最近,通过将人SMN2转基因导入Smn基因敲除小鼠或将Smn基因基因敲除靶向神经元,创建了SMA的遗传小鼠模型。这些小鼠不仅提供了有关SMA发病机理的重要见解,而且对于测试新的治疗策略也至关重要。这些包括SMN基因转移,能够上调SMN表达的分子以及营养或抗凋亡因子。

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