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Enhancement of SMN2 Exon 7 Inclusion by Antisense Oligonucleotides Targeting the Exon

机译:靶向外显子的反义寡核苷酸增强SMN2外显子7的包容性

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摘要

Several strategies have been pursued to increase the extent of exon 7 inclusion during splicing of SMN2 (survival of motor neuron 2) transcripts, for eventual therapeutic use in spinal muscular atrophy (SMA), a genetic neuromuscular disease. Antisense oligonucleotides (ASOs) that target an exon or its flanking splice sites usually promote exon skipping. Here we systematically tested a large number of ASOs with a 2′-O-methoxy-ethyl ribose (MOE) backbone that hybridize to different positions of SMN2 exon 7, and identified several that promote greater exon inclusion, others that promote exon skipping, and still others with complex effects on the accumulation of the two alternatively spliced products. This approach provides positional information about presumptive exonic elements or secondary structures with positive or negative effects on exon inclusion. The ASOs are effective not only in cell-free splicing assays, but also when transfected into cultured cells, where they affect splicing of endogenous SMN transcripts. The ASOs that promote exon 7 inclusion increase full-length SMN protein levels, demonstrating that they do not interfere with mRNA export or translation, despite hybridizing to an exon. Some of the ASOs we identified are sufficiently active to proceed with experiments in SMA mouse models.
机译:已采取了几种策略来增加SMN2(运动神经元2的生存)转录物剪接过程中外显子7包含的程度,以最终用于遗传性神经肌肉疾病脊髓性肌萎缩症(SMA)。靶向外显子或其侧翼剪接位点的反义寡核苷酸(ASO)通常会促进外显子跳跃。在这里,我们系统地测试了许多具有2'-O-甲氧基-乙基核糖(MOE)骨架的ASO,这些骨架与SMN2外显子7的不同位置杂交,确定了几种促进更大的外显子包涵性,其他促进外显子跳跃和还有一些对两个交替拼接的产品的累积产生复杂影响的产品。这种方法提供了关于推测性外显子元件或二级结构对外显子包涵有正面或负面影响的位置信息。 ASO不仅在无细胞剪接测定中有效,而且在转染到培养的细胞中时也有效,它们会影响内源SMN转录物的剪接。促进外显子7包含的ASO会增加全长SMN蛋白水平,表明尽管与外显子杂交,它们也不会干扰mRNA的输出或翻译。我们确定的一些ASO具有足够的活性,可以在SMA小鼠模型中进行实验。

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