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首页> 外文期刊>Molecular therapy: the journal of the American Society of Gene Therapy >Spinal muscular atrophy: SMN2 pre-mRNA splicing corrected by a U7 snRNA derivative carrying a splicing enhancer sequence.
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Spinal muscular atrophy: SMN2 pre-mRNA splicing corrected by a U7 snRNA derivative carrying a splicing enhancer sequence.

机译:脊髓性肌萎缩症:SMN2前mRNA剪接被带有剪接增强子序列的U7 snRNA衍生物纠正。

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摘要

Spinal muscular atrophy (SMA) is a lethal hereditary disease caused by homozygous deletion/inactivation of the survival of motoneuron 1 (SMN1) gene. The nearby SMN2 gene, despite its identical coding capacity, is only an incomplete substitute, because a single nucleotide difference impairs the inclusion of its seventh exon in the messenger RNA (mRNA). This splicing defect can be corrected (transiently) by specially designed oligonucleotides. Here we have developed a more permanent correction strategy based on bifunctional U7 small nuclear RNAs (snRNAs). These carry both an antisense sequence that allows specific binding to exon 7 and a splicing enhancer sequence that will improve the recognition of the targeted exon. When expression cassettes for these RNAs are stably introduced into cells, the U7 snRNAs become incorporated into small nuclear ribonucleoprotein (snRNP) particles that will induce a durable splicing correction. We have optimized this strategy to the point that virtually all SMN2 pre-mRNA becomes correctly spliced. In fibroblasts from an SMA patient, this approach induces a prolonged restoration of SMN protein and ensures its correct localization to discrete nuclear foci (gems).
机译:脊髓性肌萎缩症(SMA)是一种致死性遗传性疾病,由运动神经元1(SMN1)基因的纯合子缺失/失活引起。尽管附近的SMN2基因具有相同的编码能力,但它只是一个不完全的替代品,因为单个核苷酸差异会破坏其第七外显子在信使RNA(mRNA)中的包含。可以通过特殊设计的寡核苷酸(暂时)纠正这种剪接缺陷。在这里,我们基于双功能U7小核RNA(snRNA)开发了更永久的校正策略。这些携带既允许与外显子7特异性结合的反义序列,又具有将增强对靶外显子的识别的剪接增强子序列。当将这些RNA的表达盒稳定地引入细胞后,U7 snRNA就会整合到小的核糖核蛋白(snRNP)颗粒中,从而引起持久的剪接校正。我们已经对该策略进行了优化,以至于几乎所有SMN2 pre-mRNA都可以正确剪接。在来自SMA患者的成纤维细胞中,这种方法诱导了SMN蛋白的长时间恢复,并确保其正确定位于离散的核灶(宝石)。

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