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Antisense oligonucleotide-mediated exon skipping as a strategy to reduce proteolytic cleavage of ataxin-3

机译:反义寡核苷酸介导的外显子跳跃作为减少紫杉素3蛋白水解裂解的策略

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Spinocerebellar ataxia type-3 (SCA3) is a neurodegenerative disorder caused by a polyglutamine repeat expansion in the ataxin-3 protein. Cleavage of mutant ataxin-3 by proteolytic enzymes yields ataxin-3 fragments containing the polyglutamine stretch. These shorter ataxin-3 fragments are thought to be involved in SCA3 pathogenesis due to their increased cellular toxicity and their involvement in formation of the characteristic neuronal aggregates. As a strategy to prevent formation of toxic cleavage fragments, we investigated an antisense oligonucleotide-mediated modification of the ataxin-3 pre-mRNA through exon skipping of exon 8 and 9, resulting in the removal of a central 88 amino acid region of the ataxin-3 protein. This removed protein region contains several predicted cleavage sites and two ubiquitin-interacting motifs. In contrast to unmodified mutant ataxin-3, the internally truncated ataxin-3 protein did not give rise to potentially toxic cleavage fragments when incubated with caspases. In vitro experiments did not show cellular toxicity of the modified ataxin-3 protein. However, the modified protein was incapable of binding poly-ubiquitin chains, which may interfere with its normal deubiquitinating function. Low exon skipping efficiencies combined with reduction in important ataxin-3 protein functions suggest that skipping of exon 8 and 9 is not a viable therapeutic option for SCA3.
机译:脊髓小脑性共济失调3型(SCA3)是由ataxin-3蛋白中的聚谷氨酰胺重复扩增引起的神经退行性疾病。蛋白水解酶对突变型共青霉素3的切割产生了含有多谷氨酰胺片段的共青霉素3片段。由于它们的增加的细胞毒性和它们参与特征性神经元聚集体的形成,因此认为这些较短的共青霉素-3片段与SCA3的发病有关。作为防止毒性裂解片段形成的策略,我们研究了通过外显子8和9外显子跳过的反义寡核苷酸介导的ataxin-3 pre-mRNA修饰,从而导致了ataxin中央88个氨基酸区域的去除-3蛋白。该去除的蛋白质区域包含几个预测的切割位点和两个与泛素相互作用的基序。与未修饰的突变型共青素3相比,内部缺失的共青素3蛋白在与胱天蛋白酶一起孵育时不会产生潜在的毒性裂解片段。体外实验未显示修饰的紫杉素3蛋白的细胞毒性。但是,修饰的蛋白不能结合聚泛素链,这可能会干扰其正常的泛素化功能。低外显子跳跃效率与重要的抗紫杉素3蛋白功能降低相结合,表明外显子8和9的跳跃不是SCA3的可行治疗选择。

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