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α-突触核蛋白的类脂纤维的 3D 结构。

The 3D structure of lipidic fibrils of α-synuclein.

机构信息

Institute of Biological Information Processing (IBI-7: Structural Biochemistry) and JuStruct: Jülich Center for Structural Biology, Forschungszentrum Jülich, Jülich, Germany.

Department of NMR-Based Structural Biology, Max Planck Institute for Multidisciplinary Sciences, Göttingen, Germany.

出版信息

Nat Commun. 2022 Nov 10;13(1):6810. doi: 10.1038/s41467-022-34552-7.

Abstract

α-synuclein misfolding and aggregation into fibrils is a common feature of α-synucleinopathies, such as Parkinson's disease, in which α-synuclein fibrils are a characteristic hallmark of neuronal inclusions called Lewy bodies. Studies on the composition of Lewy bodies extracted postmortem from brain tissue of Parkinson's patients revealed that lipids and membranous organelles are also a significant component. Interactions between α-synuclein and lipids have been previously identified as relevant for Parkinson's disease pathology, however molecular insights into their interactions have remained elusive. Here we present cryo-electron microscopy structures of six α-synuclein fibrils in complex with lipids, revealing specific lipid-fibril interactions. We observe that phospholipids promote an alternative protofilament fold, mediate an unusual arrangement of protofilaments, and fill the central cavities of the fibrils. Together with our previous studies, these structures also indicate a mechanism for fibril-induced lipid extraction, which is likely to be involved in the development of α-synucleinopathies. Specifically, one potential mechanism for the cellular toxicity is the disruption of intracellular vesicles mediated by fibrils and oligomers, and therefore the modulation of these interactions may provide a promising strategy for future therapeutic interventions.

摘要

α-突触核蛋白错误折叠并聚集形成纤维是 α-突触核蛋白病的共同特征,如帕金森病,其中 α-突触核蛋白纤维是称为路易体的神经元内含物的特征标志。对帕金森病患者死后脑组织中提取的路易体的组成研究表明,脂质和膜细胞器也是重要组成部分。α-突触核蛋白与脂质之间的相互作用先前被认为与帕金森病病理学相关,但它们相互作用的分子机制仍然难以捉摸。在这里,我们展示了与脂质复合的六种 α-突触核蛋白纤维的冷冻电子显微镜结构,揭示了特定的脂质-纤维相互作用。我们观察到磷脂促进了替代原纤维折叠,介导了原纤维的异常排列,并填充了纤维的中心腔。结合我们之前的研究,这些结构还表明了纤维诱导的脂质提取的机制,这可能与 α-突触核蛋白病的发展有关。具体来说,一种潜在的细胞毒性机制是纤维和低聚物介导的细胞内囊泡的破坏,因此调节这些相互作用可能为未来的治疗干预提供有希望的策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ddbd/9649780/450d4c1a117d/41467_2022_34552_Fig1_HTML.jpg

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