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PMID: 27453479 已发表 · ppublish 英语

Accumulated α-synuclein affects the progression of GM2 gangliosidoses.

Experimental neurology ·第 284 卷 ·第 Pt A 期 ·0000-00-00

Suzuki Kyoko, Yamaguchi Akira, Yamanaka Shoji, Kanzaki Seiichi, Kawashima Masato, Togo Takashi, Katsuse Omi, Koumitsu Noriko, Aoki Naoya, Iseki Eizo, Kosaka Kenji, Yamaguchi Kayoko, Hashimoto Makoto, Aoki Ichiro, Hirayasu Yoshio

摘要

The accumulation of α-synuclein (ASyn) has been observed in several lysosomal storage diseases (LSDs) but it remains unclear if ASyn accumulation contributes to LSD pathology. ASyn also accumulates in the neurons of Sandhoff disease (SD) patients and SD model mice (Hexb-/- ASyn+/+ mice). SD is a lysosomal storage disorder caused by the absence of a functional β-subunit on the β-hexosaminidase A and B enzymes, which leads to the accumulation of ganglioside in the central nervous system. Here, we explored the role of accumulated ASyn in the progression of Hexb-/- mice by creating a Hexb-/- ASyn-/- double-knockout mice. Our results show that Hexb-/- ASyn-/- mice demonstrated active microglia levels and less dopaminergic neuron loss, without altering the neuronal storage of ganglioside. The autophagy and ubiquitin proteasome pathways are defective in the neurons of Hexb-/- ASyn+/+ mice. In ultrastructural physiological studies, the mitochondria structures look degenerated and dysfunctional. As a result, expression of manganese superoxide dismutase 2 are reduced, and reactive oxygen species-mediated oxidative damage in the neurons of Hexb-/- ASyn+/+ mice. Interestingly, these dysfunctions improved in Hexb-/- ASyn-/- mice. But any clinical improvement were hardly observed in Hexb-/- ASyn-/- mice. Taken together, these findings suggest that ASyn accumulation plays an important role in the pathogenesis of neuropathy in SD and other LSDs, and is therefore a target for novel therapies.

关键词
Alpha-synuclein Autophagy GM2 gangliosidoses Manganese superoxide dismutase 2 Reactive oxygen species Sandhoff disease
文献信息
期刊
Experimental neurology
期刊简称
Exp Neurol
发表日期
0000-00-00
收录日期
2016-09-23
更新日期
2016-09-23
语言
英语
国家/地区
United States
NLM ID
0370712
分析服务
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