Autophagy induction by trehalose counter-acts cellular prion-infection

自噬 海藻糖 生物 ATG5型 细胞生物学 自噬体 程序性细胞死亡 神经退行性变 细胞内 溶酶体 瘙痒 PI3K/AKT/mTOR通路 蛋白质聚集 TFEB 生物化学 朊蛋白 信号转导 细胞凋亡 疾病 医学 病理
作者
Yasmine Aguib,Andreas Heiseke,Sabine Gilch,Constanze Riemer,Michael Baier,Alexa Ertmer,Hermann Schätzl
出处
期刊:Autophagy [Informa]
卷期号:5 (3): 361-369 被引量:206
标识
DOI:10.4161/auto.5.3.7662
摘要

AbstractPrion diseases are fatal neurodegenerative and infectious disorders for which no therapeutic or prophylactic regimens exist. In search of cellular mechanisms that play a role in prion diseases and have the potential to interfere with accumulation of intracellular pathological prion protein (PrPSc), we investigated the autophagic pathway and one of its recently published inducers, trehalose. Trehalose, an alpha-linked disaccharide, has been shown to accelerate clearance of mutant huntingtin and α-synuclein by activating autophagy, mainly in an mTOR independent manner. Here, we demonstrate that trehalose can significantly reduce PrPSc in a dose- and time-dependent manner while at the same time it induces autophagy in persistently prion-infected neuronal cells. Inhibition of autophagy, either pharmacologically by known autophagy inhibitors like 3-methyladenine, or genetically by siRNA targeting Atg5, counteracted the anti-prion effect of trehalose. Hence, we provide direct experimental evidence that induction of autophagy mediates enhanced cellular degradation of prions. Similar results were obtained with rapamycin, a known inducer of autophagy, and imatinib, which has been shown to activate autophagosome formation. While induction of autophagy resulted in reduction of PrPSc, inhibition of autophagy increased the amounts of cellular PrPSc, suggesting that autophagy is involved in the physiological degradation process of cellular PrPSc. Preliminary in vivo studies with trehalose in intraperitoneally prion-infected mice did not result in prolongation of incubation times, but demonstrated delayed appearance of PrPSc in the spleen. Overall, our study provides the first experimental evidence for the impact of autophagy in yet another type of neurodegenerative disease, namely prion disease.

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