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Ataxin-3 protein and RNA toxicity in spinocerebellar ataxia type 3: Current insights and emerging therapeutic strategies

机译:3型脊髓小脑共济失调中的Ataxin-3蛋白和RNA毒性:当前的见解和新兴的治疗策略

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摘要

Ataxin-3 is a ubiquitously expressed deubiqutinating enzyme with important functions in the proteasomal protein degradation pathway and regulation of transcription. The C-terminus of the ataxin-3 protein contains a polyglutamine (PolyQ) region that, when mutationally expanded to over 52 glutamines, causes the neurodegenerative disease spinocerebellar ataxia 3 (SCA3). In spite of extensive research, the molecular mechanisms underlying the cellular toxicity resulting from mutant ataxin-3 remain elusive and no preventive treatment is currently available. It has become clear over the last decade that the hallmark intracellular ataxin-3 aggregates are likely not the main toxic entity in SCA3. Instead, the soluble PolyQ containing fragments arising from proteolytic cleavage of ataxin-3 by caspases and calpains are now regarded to be of greater influence in pathogenesis. In addition, recent evidence suggests potential involvement of a RNA toxicity component in SCA3 and other PolyQ expansion disorders, increasing the pathogenic complexity. Herein, we review the functioning of ataxin-3 and the involvement of known protein and RNA toxicity mechanisms of mutant ataxin-3 that have been discovered, as well as future opportunities for therapeutic intervention.
机译:Ataxin-3是一种普遍表达的去泛素化酶,在蛋白酶体蛋白降解途径和转录调控中具有重要功能。 Ataxin-3蛋白的C端包含一个聚谷氨酰胺(PolyQ)区,当突变扩展到52个以上谷氨酰胺时,会导致神经退行性疾病脊髓小脑共济失调3(SCA3)。尽管进行了广泛的研究,但由突变型共青霉素3引起的细胞毒性的分子机制仍然难以捉摸,目前尚无预防性治疗方法。在过去的十年中,已经明显的标志性细胞内共青素3聚集体可能不是SCA3中的主要毒性实体。取而代之的是,现在认为由胱天蛋白酶和钙蛋白酶的蛋白水解性切割紫杉素-3而产生的含有可溶性PolyQ的片段在发病机理中具有更大的影响。此外,最近的证据表明,RNA毒性成分可能与SCA3和其他PolyQ扩展疾病有关,从而增加了致病性。在这里,我们审查了紫杉醇3的功能和突变的紫杉醇3的已知蛋白和RNA毒性机制的参与,以及治疗干预的未来机会。

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