Pires Ricardo H, Saraiva Maria J, Damas Ana M, Kellermayer Miklós S Z
Department of Biophysics and Radiation Biology, Semmelweis University, Budapest, Hungary.
Institute for Molecular and Cell Biology (IBMC), Porto, Portugal.
J Mol Recognit. 2017 Mar;30(3). doi: 10.1002/jmr.2587. Epub 2016 Nov 3.
Toxicity in amyloidogenic protein misfolding disorders is thought to involve intermediate states of aggregation associated with the formation of amyloid fibrils. Despite their relevance, the heterogeneity and transience of these oligomers have placed great barriers in our understanding of their structural properties. Among amyloid intermediates, annular oligomers or annular protofibrils have raised considerable interest because they may contribute to a mechanism of cellular toxicity via membrane permeation. Here we investigated, by using AFM force spectroscopy, the structural detail of amyloid annular oligomers from transthyretin (TTR), a protein involved in systemic and neurodegenerative amyloidogenic disorders. Manipulation was performed in situ, in the absence of molecular handles and using persistence length-fit values to select relevant curves. Force curves reveal the presence of dimers in TTR annular oligomers that unfold via a series of structural intermediates. This is in contrast with the manipulation of native TTR that was more often manipulated over length scales compatible with a TTR monomer and without unfolding intermediates. Imaging and force spectroscopy data suggest that dimers are formed by the assembly of monomers in a head-to-head orientation with a nonnative interface along their β-strands. Furthermore, these dimers stack through nonnative contacts that may enhance the stability of the misfolded structure.
淀粉样蛋白错误折叠疾病中的毒性被认为涉及与淀粉样纤维形成相关的聚集中间状态。尽管这些寡聚体具有相关性,但其异质性和短暂性给我们理解其结构特性带来了巨大障碍。在淀粉样中间体中,环状寡聚体或环状原纤维引起了相当大的兴趣,因为它们可能通过膜渗透促成细胞毒性机制。在这里,我们使用原子力显微镜力谱研究了转甲状腺素蛋白(TTR)形成的淀粉样环状寡聚体的结构细节,TTR是一种与全身性和神经退行性淀粉样蛋白生成疾病有关的蛋白质。操作是在原位进行的,无需分子手柄,并使用持久长度拟合值来选择相关曲线。力曲线揭示了TTR环状寡聚体中存在二聚体,它们通过一系列结构中间体展开。这与天然TTR的操作形成对比,天然TTR在与TTR单体兼容的长度尺度上更容易被操作,且没有展开中间体。成像和力谱数据表明,二聚体是由单体以头对头方向组装而成,沿其β链具有非天然界面。此外,这些二聚体通过非天然接触堆叠,这可能增强错误折叠结构的稳定性。