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在纤维形成过程中积累的囊泡破坏α-突触核蛋白寡聚物的低分辨率结构。

Low-resolution structure of a vesicle disrupting α-synuclein oligomer that accumulates during fibrillation.

机构信息

Department of Medicinal Chemistry, Faculty of Pharmaceutical Sciences, University of Copenhagen, Universitetsparken 2, 2100 Copenhagen, Denmark.

出版信息

Proc Natl Acad Sci U S A. 2011 Feb 22;108(8):3246-51. doi: 10.1073/pnas.1013225108. Epub 2011 Feb 7.

Abstract

One of the major hallmarks of Parkinson disease is aggregation of the protein α-synuclein (αSN). Aggregate cytotoxicity has been linked to an oligomeric species formed at early stages in the aggregation process. Here we follow the fibrillation process of αSN in solution over time using small angle X-ray scattering and resolve four major coexisting species in the fibrillation process, namely monomer, dimer, fibril and an oligomer. By ab initio modeling to fit the data, we obtain a low-resolution structure of a symmetrical and slender αSN fibril in solution, consisting of a repeating unit with a maximal distance of 900 Å and a diameter of ∼180 Å. The same approach shows the oligomer to be shaped like a wreath, with a central channel and with dimensions corresponding to the width of the fibril. The structure, accumulation and decay of this oligomer is consistent with an on-pathway role for the oligomer in the fibrillation process. We propose an oligomer-driven αSN fibril formation mechanism, where the fibril is built from the oligomers. The wreath-shaped structure of the oligomer highlights its potential cytotoxicity by simple membrane permeabilization. This is confirmed by the ability of the purified oligomer to disrupt liposomes. Our results provide the first structural description in solution of a potentially cytotoxic oligomer, which accumulates during the fibrillation of αSN.

摘要

帕金森病的主要特征之一是蛋白α-突触核蛋白(αSN)的聚集。聚集的细胞毒性与聚集过程早期形成的寡聚体有关。在这里,我们使用小角度 X 射线散射随时间跟踪αSN 在溶液中的纤维化过程,并在纤维化过程中解析出四种主要共存的物质,即单体、二聚体、纤维和寡聚体。通过从头建模拟合数据,我们获得了溶液中一种对称且细长的αSN 纤维的低分辨率结构,由一个重复单元组成,最大距离为 900 Å,直径约为 180 Å。同样的方法表明,寡聚体呈花环状,具有中央通道,尺寸与纤维的宽度相对应。这种寡聚体的结构、积累和衰减与寡聚体在纤维化过程中的途径作用一致。我们提出了一种寡聚体驱动的αSN 纤维形成机制,其中纤维由寡聚体构建而成。寡聚体的环状结构通过简单的膜通透性来突出其潜在的细胞毒性。这一点通过纯化的寡聚体破坏脂质体的能力得到了证实。我们的结果提供了溶液中潜在细胞毒性寡聚体的第一个结构描述,该寡聚体在αSN 的纤维化过程中积累。

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