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人工微小内含子介导的脊髓小脑共济失调7型的基因敲低和替代疗法

Knockdown and replacement therapy mediated by artificial mirtrons in spinocerebellar ataxia 7.

作者信息

Curtis Helen J, Seow Yiqi, Wood Matthew J A, Varela Miguel A

机构信息

Department of Physiology, Anatomy and Genetics, University of Oxford, Oxford OX1 3QX, UK.

Nuffield Department of Primary Care Health Sciences, University of Oxford, Oxford OX2 6GG, UK.

出版信息

Nucleic Acids Res. 2017 Jul 27;45(13):7870-7885. doi: 10.1093/nar/gkx483.

Abstract

We evaluate a knockdown-replacement strategy mediated by mirtrons as an alternative to allele-specific silencing using spinocerebellar ataxia 7 (SCA7) as a model. Mirtrons are introns that form pre-microRNA hairpins after splicing, producing RNAi effectors not processed by Drosha. Mirtron mimics may therefore avoid saturation of the canonical processing pathway. This method combines gene silencing mediated by an artificial mirtron with delivery of a functional copy of the gene such that both elements of the therapy are always expressed concurrently, minimizing the potential for undesirable effects and preserving wild-type function. This mutation- and single nucleotide polymorphism-independent method could be crucial in dominant diseases that feature both gain- and loss-of-function pathologies or have a heterogeneous genetic background. Here we develop mirtrons against ataxin 7 with silencing efficacy comparable to shRNAs, and introduce silent mutations into an ataxin 7 transgene such that it is resistant to their effect. We successfully express the transgene and one mirtron together from a single construct. Hence, we show that this method can be used to silence the endogenous allele of ataxin 7 and replace it with an exogenous copy of the gene, highlighting the efficacy and transferability across patient genotypes of this approach.

摘要

我们以脊髓小脑共济失调7型(SCA7)为模型,评估由微小内含子介导的敲低-替换策略,作为等位基因特异性沉默的替代方法。微小内含子是剪接后形成前体微小RNA发夹结构的内含子,可产生不由Drosha加工的RNAi效应物。因此,微小内含子模拟物可能避免经典加工途径的饱和。该方法将人工微小内含子介导的基因沉默与基因功能拷贝的递送相结合,使治疗的两个要素始终同时表达,将不良影响的可能性降至最低,并保留野生型功能。这种与突变和单核苷酸多态性无关的方法,对于兼具功能获得和功能丧失病理特征或具有异质遗传背景的显性疾病可能至关重要。在这里,我们开发了针对ataxin 7的微小内含子,其沉默效率与短发夹RNA相当,并在ataxin 7转基因中引入沉默突变,使其对其效应具有抗性。我们成功地从单个构建体中共同表达转基因和一个微小内含子。因此,我们表明该方法可用于沉默ataxin 7的内源性等位基因,并用该基因的外源性拷贝进行替换,突出了该方法在不同患者基因型中的有效性和可转移性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/be04/5569705/944d2d666fb0/gkx483fig1.jpg

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