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Mutant CAG Repeats Effectively Targeted by RNA Interference in SCA7 Cells

机译:RNA干扰在SCA7细胞中有效靶向突变的CAG重复。

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摘要

Spinocerebellar ataxia type 7 (SCA7) is a human neurodegenerative polyglutamine (polyQ) disease caused by a CAG repeat expansion in the open reading frame of the ATXN7 gene. The allele-selective silencing of mutant transcripts using a repeat-targeting strategy has previously been used for several polyQ diseases. Herein, we demonstrate that the selective targeting of a repeat tract in a mutant ATXN7 transcript by RNA interference is a feasible approach and results in an efficient decrease of mutant ataxin-7 protein in patient-derived cells. Oligonucleotides (ONs) containing specific base substitutions cause the downregulation of the ATXN7 mutant allele together with the upregulation of its normal allele. The A2 ON shows high allele selectivity at a broad range of concentrations and also restores UCHL1 expression, which is downregulated in SCA7.
机译:脊髓小脑共济失调7型(SCA7)是由ATXN7基因开放阅读框中的CAG重复扩增引起的人神经退行性聚谷氨酰胺(polyQ)疾病。使用重复靶向策略的突变体转录本的等位基因选择性沉默先前已用于多种polyQ疾病。在本文中,我们证明了通过RNA干扰选择性靶向突变ATXN7转录本中的重复序列是一种可行的方法,并导致患者来源的细胞中突变紫杉素7蛋白的有效降低。包含特定碱基取代的寡核苷酸(ON)导致ATXN7突变体等位基因的下调以及其正常等位基因的上调。 A2 ON在很宽的浓度范围内均显示出高等位基因选择性,并且还恢复了在SCA7中下调的UCHL1表达。

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