Prifti Matthew V, Libohova Kozeta, Harris Autumn L, Tsou Wei-Ling, Todi Sokol V
Department of Pharmacology, School of Medicine, Wayne State University, Detroit, MI, United States.
Maximizing Access to Research Careers Program, Wayne State University, Detroit, MI, United States.
Front Neurosci. 2023 Jan 17;16:1112688. doi: 10.3389/fnins.2022.1112688. eCollection 2022.
Spinocerebellar Ataxia Type 3 (SCA3) is a member of the family of polyglutamine (polyQ) diseases that are caused by anomalous CAG triplet repeat expansions in several genes. SCA3 results from abnormal polyQ expansion in the deubiquitinase (DUB), ataxin-3 (Atxn3). To understand the role of the different domains of mutant Atxn3 on its pathogenicity, with the hope that they can be explored for therapeutic interventions, we have systematically studied their individual and collective effects on its toxicity. One such domain is ubiquitin-binding site 1 (UbS1) on the catalytic domain of Atxn3; UbS1 is necessary for the enzymatic activity of Atxn3. Here, we investigated the importance of UbS1 on the toxicity of pathogenic Atxn3. We generated transgenic lines that express polyQ-expanded Atxn3 with and without a functional UbS1. We found that mutating UbS1 markedly exacerbates the toxicity of pathogenic Atxn3. Additional studies indicated that UbS1 regulates the toxicity of Atxn3 not by affecting its aggregation or sub-cellular localization, but by impacting its role in ubiquitin processing. Our findings provide additional insights into the role of Atxn3's domains in the pathogenicity of SCA3.
脊髓小脑共济失调3型(SCA3)是多聚谷氨酰胺(polyQ)疾病家族的一员,这类疾病由多个基因中异常的CAG三联体重复扩增引起。SCA3是由去泛素化酶(DUB)ataxin-3(Atxn3)中异常的多聚谷氨酰胺扩增导致的。为了了解突变型Atxn3不同结构域在其致病性中的作用,希望能以此探索治疗干预方法,我们系统地研究了它们对其毒性的单独和共同影响。其中一个这样的结构域是Atxn3催化结构域上的泛素结合位点1(UbS1);UbS1对Atxn3的酶活性是必需的。在此,我们研究了UbS1对致病性Atxn3毒性的重要性。我们构建了表达有和没有功能性UbS1的多聚谷氨酰胺扩增型Atxn3的转基因品系。我们发现突变UbS1会显著加剧致病性Atxn3的毒性。进一步的研究表明,UbS1调节Atxn3的毒性不是通过影响其聚集或亚细胞定位,而是通过影响其在泛素加工中的作用。我们的研究结果为Atxn3结构域在SCA3致病性中的作用提供了更多见解。