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外源性α-突触核蛋白诱发的帕金蛋白下调促进神经元细胞线粒体功能障碍。对帕金森病病理学的启示。

Exogenous Alpha-Synuclein Evoked Parkin Downregulation Promotes Mitochondrial Dysfunction in Neuronal Cells. Implications for Parkinson's Disease Pathology.

作者信息

Wilkaniec Anna, Lenkiewicz Anna M, Babiec Lidia, Murawska Emilia, Jęśko Henryk M, Cieślik Magdalena, Culmsee Carsten, Adamczyk Agata

机构信息

Department of Cellular Signalling, Mossakowski Medical Research Centre (PAN), Polish Academy of Sciences, Warsaw, Poland.

Institute of Pharmacology and Clinical Pharmacy, Philipps-University of Marburg, Marburg, Germany.

出版信息

Front Aging Neurosci. 2021 Feb 24;13:591475. doi: 10.3389/fnagi.2021.591475. eCollection 2021.

Abstract

Aberrant secretion and accumulation of α-synuclein (α-Syn) as well as the loss of parkin function are associated with the pathogenesis of Parkinson's disease (PD). Our previous study suggested a functional interaction between those two proteins, showing that the extracellular α-Syn evoked post-translational modifications of parkin, leading to its autoubiquitination and degradation. While parkin plays an important role in mitochondrial biogenesis and turnover, including mitochondrial fission/fusion as well as mitophagy, the involvement of parkin deregulation in α-Syn-induced mitochondrial damage is largely unknown. In the present study, we demonstrated that treatment with exogenous α-Syn triggers mitochondrial dysfunction, reflected by the depolarization of the mitochondrial membrane, elevated synthesis of the mitochondrial superoxide anion, and a decrease in cellular ATP level. At the same time, we observed a protective effect of parkin overexpression on α-Syn-induced mitochondrial dysfunction. α-Syn-dependent disturbances of mitophagy were also shown to be directly related to reduced parkin levels in mitochondria and decreased ubiquitination of mitochondrial proteins. Also, α-Syn impaired mitochondrial biosynthesis due to the parkin-dependent reduction of PGC-1α protein levels. Finally, loss of parkin function as a result of α-Syn treatment induced an overall breakdown of mitochondrial homeostasis that led to the accumulation of abnormal mitochondria. These findings may thus provide the first compelling evidence for the direct association of α-Syn-mediated parkin depletion to impaired mitochondrial function in PD. We suggest that improvement of parkin function may serve as a novel therapeutic strategy to prevent mitochondrial impairment and neurodegeneration in PD (thereby slowing the progression of the disease).

摘要

α-突触核蛋白(α-Syn)的异常分泌和积累以及帕金蛋白功能的丧失与帕金森病(PD)的发病机制相关。我们之前的研究表明这两种蛋白之间存在功能相互作用,结果显示细胞外α-Syn会引起帕金蛋白的翻译后修饰,导致其自身泛素化和降解。虽然帕金蛋白在包括线粒体分裂/融合以及线粒体自噬在内的线粒体生物合成和周转中发挥重要作用,但帕金蛋白失调在α-Syn诱导的线粒体损伤中的作用在很大程度上尚不清楚。在本研究中,我们证明用外源性α-Syn处理会引发线粒体功能障碍,表现为线粒体膜去极化、线粒体超氧阴离子合成增加以及细胞ATP水平降低。同时,我们观察到帕金蛋白过表达对α-Syn诱导的线粒体功能障碍具有保护作用。α-Syn依赖的线粒体自噬紊乱也被证明与线粒体中帕金蛋白水平降低以及线粒体蛋白泛素化减少直接相关。此外,由于帕金蛋白依赖的PGC-1α蛋白水平降低,α-Syn损害了线粒体生物合成。最后,α-Syn处理导致的帕金蛋白功能丧失引起线粒体稳态的全面破坏,导致异常线粒体的积累。因此,这些发现可能首次为α-Syn介导的帕金蛋白耗竭与PD中线粒体功能受损的直接关联提供了有力证据。我们认为改善帕金蛋白功能可能是一种预防PD中线粒体损伤和神经退行性变(从而减缓疾病进展)的新治疗策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/01fa/7943853/29d715b80b72/fnagi-13-591475-g0001.jpg

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