Department of Pathology and Medical Biology, University Medical Centre Groningen, University of Groningen, 9713 RB Groningen, The Netherlands.
Acta Neuropathol. 2010 Oct;120(4):449-60. doi: 10.1007/s00401-010-0717-7. Epub 2010 Jul 16.
Protein aggregation is a major pathological hallmark of many neurodegenerative disorders including polyglutamine diseases. Aggregation of the mutated form of the disease protein ataxin-3 into neuronal nuclear inclusions is well described in the polyglutamine disorder spinocerebellar ataxia type 3 (SCA3 or Machado-Joseph disease), although these inclusions are not thought to be directly pathogenic. Neuropil aggregates have not yet been described in SCA3. We performed a systematic immunohistochemical study of serial thick sections through brains of seven clinically diagnosed and genetically confirmed SCA3 patients. Using antibodies against ataxin-3, p62, ubiquitin, the polyglutamine marker 1C2 as well as TDP-43, we analyzed neuronal localization, composition and distribution of aggregates within SCA3 brains. The analysis revealed widespread axonal aggregates in fiber tracts known to undergo neurodegeneration in SCA3. Similar to neuronal nuclear inclusions, the axonal aggregates were ubiquitinated and immunopositive for the proteasome and autophagy associated shuttle protein p62, indicating involvement of neuronal protein quality control mechanisms. Rare TDP-43 positive axonal inclusions were also observed. Based on the correlation between affected fiber tracts and degenerating neuronal nuclei, we hypothesize that these novel axonal inclusions may be detrimental to axonal transport mechanisms and thereby contribute to degeneration of nerve cells in SCA3.
蛋白质聚集是许多神经退行性疾病的主要病理学特征,包括多聚谷氨酰胺疾病。在多聚谷氨酰胺疾病脊髓小脑共济失调 3 型(SCA3 或 Machado-Joseph 病)中,突变型疾病蛋白 ataxin-3 聚集成神经元核内包涵体的情况得到了很好的描述,尽管这些包涵体被认为不是直接致病的。在 SCA3 中尚未描述神经原纤维聚集物。我们对七个临床诊断和基因证实的 SCA3 患者的大脑进行了厚切片的系统免疫组织化学研究。使用针对 ataxin-3、p62、泛素、多聚谷氨酰胺标记物 1C2 以及 TDP-43 的抗体,我们分析了 SCA3 大脑中聚集物的神经元定位、组成和分布。分析显示,在 SCA3 中经历神经退行性变的纤维束中存在广泛的轴突聚集物。与神经元核内包涵体类似,轴突聚集物被泛素化,并对蛋白酶体和与自噬相关的穿梭蛋白 p62 呈免疫阳性,表明神经元蛋白质量控制机制的参与。还观察到罕见的 TDP-43 阳性轴突包涵体。基于受影响的纤维束与退行性神经元核之间的相关性,我们假设这些新的轴突包涵体可能对轴突运输机制有害,并因此导致 SCA3 中神经细胞的退化。