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多聚谷氨酰胺纹状体内质网应激诱导自噬体降解的研究进展

Neurodegeneration by polyglutamine Atrophin is not rescued by induction of autophagy.

机构信息

Dulbecco Telethon Institute and Division of Neuroscience, DIBIT-San Raffaele Scientific Institute, Via Olgettina 58, Milan I-20132, Italy.

出版信息

Cell Death Differ. 2010 Oct;17(10):1577-87. doi: 10.1038/cdd.2010.31. Epub 2010 Mar 26.

Abstract

Polyglutamine pathologies are neurodegenerative diseases that manifest both general polyglutamine toxicity and mutant protein-specific effects. Dentatorubral-pallidoluysian Atrophy (DRPLA) is one of these disorders caused by mutations in the Atrophin-1 protein. We have generated several models for DRPLA in Drosophila and analysed the mechanisms of cellular and organism toxicity. Our genetic and ultrastructural analysis of neurodegeneration suggests that autophagy may have a role in cellular degeneration when polyglutamine proteins are overexpressed in neuronal and glial cells. Clearance of autophagic organelles is blocked at the lysosomal level after correct fusion between autophagosomes and lysosomes. This leads to accumulation of autofluorescent pigments and proteinaceous residues usually degraded by the autophagy-lysosome system. Under these circumstances, further pharmacological and genetic induction of autophagy does not rescue neurodegeneration by polyglutamine Atrophins, in contrast to many other neurodegenerative conditions. Our data thus provide a crucial insight into the specific mechanism of a polyglutamine disease and reveal important differences in the role of autophagy with respect to other diseases of the same family.

摘要

多聚谷氨酰胺病是神经退行性疾病,表现为普遍的多聚谷氨酰胺毒性和突变蛋白的特异性效应。齿状核红核苍白球路易体萎缩症(DRPLA)是由 Atrophin-1 蛋白突变引起的此类疾病之一。我们在果蝇中生成了几种 DRPLA 模型,并分析了细胞毒性和机体毒性的机制。我们对神经退行性变的遗传和超微结构分析表明,当神经元和神经胶质细胞中过度表达多聚谷氨酰胺蛋白时,自噬可能在细胞退化中发挥作用。自噬体与溶酶体正确融合后,溶酶体水平的自噬体细胞器清除被阻断。这导致自噬体 - 溶酶体系统通常降解的自发荧光颜料和蛋白残留物的积累。在这种情况下,多聚谷氨酰胺 Atrophins 通过药理学和遗传学进一步诱导自噬不能挽救神经退行性变,与许多其他神经退行性疾病相反。因此,我们的数据为多聚谷氨酰胺疾病的特定机制提供了重要的见解,并揭示了自噬在同一家族的其他疾病中的作用的重要差异。

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