Department of Basic and Clinical Neuroscience, King's College London, 125 Coldharbour Lane, SE5 9NU London, United Kingdom.
Department of Basic and Clinical Neuroscience, King's College London, 125 Coldharbour Lane, SE5 9NU London, United Kingdom; Institut du Cerveau et de la Moelle épinière (ICM), 47, bd de l'hôpital, F-75013 Paris, France.
J Mol Biol. 2020 Apr 3;432(8):2692-2713. doi: 10.1016/j.jmb.2020.02.018. Epub 2020 Feb 29.
Amyotrophic lateral sclerosis (ALS) and frontotemporal dementia (FTD) constitute aggressive neurodegenerative pathologies that lead to the progressive degeneration of upper and lower motor neurons and of neocortical areas, respectively. In the past decade, the identification of several genes that cause these disorders indicated that the two diseases overlap in a multifaceted spectrum of conditions. The autophagy-lysosome system has been identified as a main intersection for the onset and progression of neurodegeneration in ALS/FTD. Genetic evidence has revealed that several genes with a mechanistic role at different stages of the autophagy process are mutated in patients with ALS/FTD. Moreover, the three main proteins aggregating in ALS/FTD, including in sporadic cases, are also targeted by autophagy and affect this process. Here, we examine the varied dysfunctions and degrees of involvement of the autophagy-lysosome system that have been discovered in ALS/FTD. We argue that these findings shed light on the pathological mechanisms in the ALS/FTD spectrum and conclude that they have important consequences both for treatment options and for the basic biomolecular understanding of how this process intersects with RNA metabolism, the other major cellular process reported to be dysfunctional in part of the ALS/FTD spectrum.
肌萎缩侧索硬化症(ALS)和额颞叶痴呆(FTD)构成了侵袭性神经退行性疾病,分别导致上运动神经元和新皮层区域的进行性退化。在过去的十年中,几个导致这些疾病的基因的鉴定表明,这两种疾病在多方面的条件下重叠。自噬溶酶体系统已被确定为 ALS/FTD 神经退行性发生和进展的主要交汇点。遗传证据表明,在自噬过程的不同阶段具有机制作用的几个基因在 ALS/FTD 患者中发生突变。此外,在 ALS/FTD 中聚集的三种主要蛋白质,包括散发性病例,也被自噬靶向并影响这一过程。在这里,我们检查了在 ALS/FTD 中发现的自噬溶酶体系统的各种功能障碍和参与程度。我们认为这些发现阐明了 ALS/FTD 谱中的病理机制,并得出结论,它们对治疗选择和对这一过程与 RNA 代谢交叉的基本生物分子理解都有重要意义,RNA 代谢是 ALS/FTD 谱中部分报告功能失调的另一个主要细胞过程。