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Deactivation of TBP contributes to SCA17 pathogenesis

机译:TBP失活有助于SCA17发病

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Spinocerebellar ataxia type 17 (SCA17) is an autosomal dominant cerebellar ataxia caused by the expansion of polyglutamine (polyQ) within the TATA box-binding protein (TBP). Previous studies have shown that polyQ-expanded TBP forms neurotoxic aggregates and alters downstream genes. However, how expanded polyQ tracts affect the function of TBP and the link between dysfunctional TBP and SCA17 is not clearly understood. In this study, we generated novel Drosophila models for SCA17 that recapitulate pathological features such as aggregate formation, mobility defects and premature death. In addition to forming neurotoxic aggregates, we determined that polyQ-expanded TBP reduces its own intrinsic DNA-binding and transcription abilities. Dysfunctional TBP also disrupts normal TBP function. Furthermore, heterozygous dTbp amorph mutant flies exhibited SCA17-like phenotypes and flies expressing polyQ-expanded TBP exhibited enhanced retinal degeneration, suggesting that loss of TBP function may contribute to SCA17 pathogenesis. We further determined that the downregulation of TBP activity enhances retinal degeneration in SCA3 and Huntington's disease fly models, indicating that the deactivation of TBP is likely to play a common role in polyQ-induced neurodegeneration.
机译:17型脊髓小脑共济失调(SCA17)是常染色体显性遗传性小脑共济失调,由TATA盒结合蛋白(TBP)中的聚谷氨酰胺(polyQ)扩展引起。先前的研究表明,polyQ扩展的TBP形成神经毒性聚集体并改变下游基因。但是,还不清楚如何扩展polyQ束影响TBP的功能以及功能失调的TBP和SCA17之间的联系。在这项研究中,我们为SCA17生成了新的果蝇模型,概括了诸如聚集物形成,流动性缺陷和过早死亡等病理特征。除了形成神经毒性聚集体外,我们还确定,polyQ扩展的TBP会降低其自身的内在DNA结合和转录能力。功能失调的TBP还破坏正常的TBP功能。此外,杂合的dTbp无定形突变体果蝇表现出SCA17样表型,而表达polyQ扩展的TBP的果蝇表现出增强的视网膜变性,这表明TBP功能的丧失可能与SCA17发病有关。我们进一步确定,TBP活性的下调会增强SCA3和亨廷顿舞蹈病模型中的视网膜变性,这表明TBP的失活很可能在polyQ诱导的神经变性中起常见作用。

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