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纤维状α-突触核蛋白毒性取决于功能性溶酶体。

Fibrillar α-synuclein toxicity depends on functional lysosomes.

作者信息

Guiney Stephanie J, Adlard Paul A, Lei Peng, Mawal Celeste H, Bush Ashley I, Finkelstein David I, Ayton Scott

机构信息

Melbourne Dementia Research Centre, Parkville, Victoria, Australia; Florey Institute of Neuroscience and Mental Health, Parkville, Victoria, Australia; University of Melbourne, Parkville, Victoria Australia.

Melbourne Dementia Research Centre, Parkville, Victoria, Australia; Florey Institute of Neuroscience and Mental Health, Parkville, Victoria, Australia; University of Melbourne, Parkville, Victoria Australia; Department of Neurology and State Key Laboratory of Biotherapy, West China Hospital, Sichuan University/Collaborative Center for Biotherapy, Chengdu, China.

出版信息

J Biol Chem. 2020 Dec 18;295(51):17497-17513. doi: 10.1074/jbc.RA120.013428.

Abstract

Neurodegeneration in Parkinson's disease (PD) can be recapitulated in animals by administration of α-synuclein preformed fibrils (PFFs) into the brain. However, the mechanism by which these PFFs induce toxicity is unknown. Iron is implicated in PD pathophysiology, so we investigated whether α-synuclein PFFs induce ferroptosis, an iron-dependent cell death pathway. A range of ferroptosis inhibitors were added to a striatal neuron-derived cell line (STHdhQ7/7 cells), a dopaminergic neuron-derived cell line (SN4741 cells), and WT primary cortical neurons, all of which had been intoxicated with α-synuclein PFFs. Viability was not recovered by these inhibitors except for liproxstatin-1, a best-in-class ferroptosis inhibitor, when used at high doses. High-dose liproxstatin-1 visibly enlarged the area of a cell that contained acidic vesicles and elevated the expression of several proteins associated with the autophagy-lysosomal pathway similarly to the known lysosomal inhibitors, chloroquine and bafilomycin A1. Consistent with high-dose liproxstatin-1 protecting via a lysosomal mechanism, we further de-monstrated that loss of viability induced by α-synuclein PFFs was attenuated by chloroquine and bafilomycin A1 as well as the lysosomal cysteine protease inhibitors, leupeptin, E-64D, and Ca-074-Me, but not other autophagy or lysosomal enzyme inhibitors. We confirmed using immunofluorescence microscopy that heparin prevented uptake of α-synuclein PFFs into cells but that chloroquine did not stop α-synuclein uptake into lysosomes despite impairing lysosomal function and inhibiting α-synuclein toxicity. Together, these data suggested that α-synuclein PFFs are toxic in functional lysosomes in vitro. Therapeutic strategies that prevent α-synuclein fibril uptake into lysosomes may be of benefit in PD.

摘要

通过向大脑注射α-突触核蛋白原纤维(PFFs),帕金森病(PD)中的神经退行性变可在动物中重现。然而,这些PFFs诱导毒性的机制尚不清楚。铁与PD病理生理学有关,因此我们研究了α-突触核蛋白PFFs是否诱导铁死亡,这是一种铁依赖性细胞死亡途径。一系列铁死亡抑制剂被添加到纹状体神经元衍生细胞系(STHdhQ7/7细胞)、多巴胺能神经元衍生细胞系(SN4741细胞)和野生型原代皮质神经元中,所有这些细胞均已被α-突触核蛋白PFFs毒害。除了脂氧素他汀-1(一种一流的铁死亡抑制剂,高剂量使用时)外,这些抑制剂均未恢复细胞活力。高剂量脂氧素他汀-1明显扩大了含有酸性囊泡的细胞面积,并提高了几种与自噬-溶酶体途径相关蛋白质的表达,这与已知的溶酶体抑制剂氯喹和巴弗洛霉素A1类似。与高剂量脂氧素他汀-1通过溶酶体机制发挥保护作用一致,我们进一步证明,氯喹、巴弗洛霉素A1以及溶酶体半胱氨酸蛋白酶抑制剂亮抑酶肽、E-64D和Ca-074-Me可减轻α-突触核蛋白PFFs诱导的细胞活力丧失,但其他自噬或溶酶体酶抑制剂则不能。我们使用免疫荧光显微镜证实,肝素可阻止α-突触核蛋白PFFs进入细胞,但氯喹尽管损害了溶酶体功能并抑制了α-突触核蛋白毒性,却不能阻止α-突触核蛋白进入溶酶体。总之,这些数据表明α-突触核蛋白PFFs在体外功能性溶酶体中具有毒性。防止α-突触核蛋白纤维进入溶酶体的治疗策略可能对PD有益。

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