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共济失调-3 蛋白修饰作为脊髓小脑共济失调 3 型的治疗策略:去除含有 CAG 的外显子。

Ataxin-3 protein modification as a treatment strategy for spinocerebellar ataxia type 3: removal of the CAG containing exon.

机构信息

Department of Human Genetics, Leiden University Medical Center, The Netherlands.

出版信息

Neurobiol Dis. 2013 Oct;58:49-56. doi: 10.1016/j.nbd.2013.04.019. Epub 2013 May 6.

Abstract

Spinocerebellar ataxia type 3 is caused by a polyglutamine expansion in the ataxin-3 protein, resulting in gain of toxic function of the mutant protein. The expanded glutamine stretch in the protein is the result of a CAG triplet repeat expansion in the penultimate exon of the ATXN3 gene. Several gene silencing approaches to reduce mutant ataxin-3 toxicity in this disease aim to lower ataxin-3 protein levels, but since this protein is involved in deubiquitination and proteasomal protein degradation, its long-term silencing might not be desirable. Here, we propose a novel protein modification approach to reduce mutant ataxin-3 toxicity by removing the toxic polyglutamine repeat from the ataxin-3 protein through antisense oligonucleotide-mediated exon skipping while maintaining important wild type functions of the protein. In vitro studies showed that exon skipping did not negatively impact the ubiquitin binding capacity of ataxin-3. Our in vivo studies showed no toxic properties of the novel truncated ataxin-3 protein. These results suggest that exon skipping may be a novel therapeutic approach to reduce polyglutamine-induced toxicity in spinocerebellar ataxia type 3.

摘要

脊髓小脑共济失调 3 型是由 ataxin-3 蛋白中的多聚谷氨酰胺扩展引起的,导致突变蛋白获得毒性功能。该蛋白中扩展的谷氨酰胺延伸是 ATXN3 基因倒数第二个外显子中 CAG 三核苷酸重复扩展的结果。几种基因沉默方法旨在降低该疾病中突变的 ataxin-3 毒性,目的是降低 ataxin-3 蛋白水平,但由于该蛋白参与去泛素化和蛋白酶体蛋白降解,其长期沉默可能不是理想的。在这里,我们提出了一种通过反义寡核苷酸介导的外显子跳跃从 ataxin-3 蛋白中去除毒性聚谷氨酰胺重复来降低突变 ataxin-3 毒性的新型蛋白质修饰方法,同时保持蛋白的重要野生型功能。体外研究表明,外显子跳跃不会对 ataxin-3 的泛素结合能力产生负面影响。我们的体内研究表明,新型截断的 ataxin-3 蛋白没有毒性。这些结果表明,外显子跳跃可能是一种减少脊髓小脑共济失调 3 型中聚谷氨酰胺诱导毒性的新型治疗方法。

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