突变型和野生型报告等位基因的RNA干扰对等位基因特异性基因沉默的评估。

Yusuke Ohnishi, Katsushi Tokunaga, Kiyotoshi Kaneko, Hirohiko Hohjoh
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引用次数: 0

摘要

通过RNA干扰(RNAi)进行等位基因特异性基因沉默对于特异性抑制与疾病相关的等位基因的表达具有治疗作用。为了实现这种等位基因特异性RNAi (ASPRNAi),设计和评估赋予ASP-RNAi的小干扰RNA (siRNA)双链是至关重要的,但也是困难的。在这里,我们使用两个报告等位基因编码Photinus和Renilla荧光素酶基因,并在其3'-非翻译区携带突变型和野生型等位基因序列,展示了ASP-RNAi对抗与家族性阿尔茨海默病相关的瑞典型和伦敦型淀粉样前体蛋白(APP)变异。我们通过将报告基因和siRNA双链共转染到培养的人细胞中,研究了在杂合条件下,siRNA双链对突变等位基因在等位基因特异性基因沉默和对野生型等位基因的脱靶沉默中的作用。一致地,确定赋予ASP-RNAi的siRNA双链也抑制了真正突变体APP的表达以及表达全长瑞典型和野生型APP等位基因的Cos-7细胞中β淀粉样蛋白40或42肽的产生。目前的数据表明,具有报告等位基因的系统可能允许对具有ASP-RNAi功能的siRNA双链进行临床前评估,从而有助于设计和选择最合适的siRNA双链。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Assessment of allele-specific gene silencing by RNA interference with mutant and wild-type reporter alleles.

Assessment of allele-specific gene silencing by RNA interference with mutant and wild-type reporter alleles.

Assessment of allele-specific gene silencing by RNA interference with mutant and wild-type reporter alleles.

Assessment of allele-specific gene silencing by RNA interference with mutant and wild-type reporter alleles.

Allele-specific gene silencing by RNA interference (RNAi) is therapeutically useful for specifically suppressing the expression of alleles associated with disease. To realize such allele-specific RNAi (ASPRNAi), the design and assessment of small interfering RNA (siRNA) duplexes conferring ASP-RNAi is vital, but is also difficult. Here, we show ASP-RNAi against the Swedish- and London-type amyloid precursor protein (APP) variants related to familial Alzheimer's disease using two reporter alleles encoding the Photinus and Renilla luciferase genes and carrying mutant and wild-type allelic sequences in their 3'-untranslated regions. We examined the effects of siRNA duplexes against the mutant alleles in allele-specific gene silencing and off-target silencing against the wild-type allele under heterozygous conditions, which were generated by cotransfecting the reporter alleles and siRNA duplexes into cultured human cells. Consistently, the siRNA duplexes determined to confer ASP-RNAi also inhibited the expression of the bona fide mutant APP and the production of either amyloid beta 40- or 42-peptide in Cos-7 cells expressing both the full-length Swedish- and wild-type APP alleles. The present data suggest that the system with reporter alleles may permit the preclinical assessment of siRNA duplexes conferring ASP-RNAi, and thus contribute to the design and selection of the most suitable of such siRNA duplexes.

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