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帕金森病中α-突触核蛋白病的起始和进展。

Initiation and progression of α-synuclein pathology in Parkinson's disease.

机构信息

Nuffield Department of Clinical Neurosciences, University of Oxford, Oxford, UK.

Kavli Institute for Nanoscience Discovery, University of Oxford, Oxford, UK.

出版信息

Cell Mol Life Sci. 2022 Mar 26;79(4):210. doi: 10.1007/s00018-022-04240-2.

Abstract

α-Synuclein aggregation is a critical molecular process that underpins the pathogenesis of Parkinson's disease. Aggregates may originate at synaptic terminals as a consequence of aberrant interactions between α-synuclein and lipids or evasion of proteostatic defences. The nature of these interactions is likely to influence the emergence of conformers or strains that in turn could explain the clinical heterogeneity of Parkinson's disease and related α-synucleinopathies. For neurodegeneration to occur, α-synuclein assemblies need to exhibit seeding competency, i.e. ability to template further aggregation, and toxicity which is at least partly mediated by interference with synaptic vesicle or organelle homeostasis. Given the dynamic and reversible conformational plasticity of α-synuclein, it is possible that seeding competency and cellular toxicity are mediated by assemblies of different structure or size along this continuum. It is currently unknown which α-synuclein assemblies are the most relevant to the human condition but recent advances in the cryo-electron microscopic characterisation of brain-derived fibrils and their assessment in stem cell derived and animal models are likely to facilitate the development of precision therapies or biomarkers. This review summarises the main principles of α-synuclein aggregate initiation and propagation in model systems, and their relevance to clinical translation.

摘要

α-突触核蛋白聚集是帕金森病发病机制的关键分子过程。聚集物可能起源于突触末端,是由于 α-突触核蛋白与脂质之间的异常相互作用或逃避蛋白质稳态防御的结果。这些相互作用的性质可能会影响构象或菌株的出现,反过来又可以解释帕金森病和相关 α-突触核蛋白病的临床异质性。为了发生神经退行性变,α-突触核蛋白组装需要表现出成核能力,即能够模板进一步的聚集,并且毒性至少部分是通过干扰突触小泡或细胞器动态平衡来介导的。鉴于 α-突触核蛋白的动态和可逆构象可塑性,成核能力和细胞毒性可能是由沿该连续体的不同结构或大小的组装介导的。目前尚不清楚哪些 α-突触核蛋白组装与人类状况最相关,但最近在冷冻电子显微镜对脑源性纤维的特性描述及其在干细胞衍生和动物模型中的评估方面的进展,可能有助于开发精准治疗或生物标志物。这篇综述总结了模型系统中 α-突触核蛋白聚集物起始和传播的主要原则及其与临床转化的相关性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fa13/11072768/0cc6b7b1c327/18_2022_4240_Fig1_HTML.jpg

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