Computational Biomolecular Dynamics Group, Max Planck Institute for Biophysical Chemistry, Göttingen, Germany.
Sci Rep. 2016 Sep 12;6:33156. doi: 10.1038/srep33156.
The formation of well-defined filamentous amyloid structures involves a polydisperse collection of oligomeric states for which relatively little is known in terms of structural organization. Here we use extensive, unbiased explicit solvent molecular dynamics (MD) simulations to investigate the structural and dynamical features of oligomeric aggregates formed by a number of highly amyloidogenic peptides at atomistic resolution on the μs time scale. A consensus approach has been adopted to analyse the simulations in multiple force fields, yielding an in-depth characterization of pre-fibrillar oligomers and their global and local structure properties. A collision cross section analysis revealed structurally heterogeneous aggregate ensembles for the individual oligomeric states that lack a single defined quaternary structure during the pre-nucleation phase. To gain insight into the conformational space sampled in early aggregates, we probed their substructure and found emerging β-sheet subunit layers and a multitude of ordered intermolecular β-structure motifs with growing aggregate size. Among those, anti-parallel out-of-register β-strands compatible with toxic β-barrel oligomers were particularly prevalent already in smaller aggregates and formed prior to ordered fibrillar structure elements. Notably, also distinct fibril-like conformations emerged in the oligomeric state and underscore the notion that pre-nucleated oligomers serve as a critical intermediate step on-pathway to fibrils.
形成定义明确的丝状淀粉样结构涉及多分散的寡聚态集合,就其结构组织而言,人们相对知之甚少。在这里,我们使用广泛的、无偏的显式溶剂分子动力学 (MD) 模拟,在微秒时间尺度上以原子分辨率研究了多种高度淀粉样的肽形成的寡聚体聚集的结构和动力学特征。采用共识方法对多个力场中的模拟进行了分析,对原纤维前寡聚体及其全局和局部结构特性进行了深入的描述。碰撞截面分析表明,在预成核阶段,各个寡聚态的集合具有结构异构性,缺乏单一的定义明确的四级结构。为了深入了解早期聚集体中采样的构象空间,我们探测了它们的亚结构,并发现了新兴的β-折叠亚基层和大量具有增长聚集尺寸的有序分子间β结构模体。在这些结构中,与毒性β-桶寡聚体相容的反平行不对齐β-链特别普遍,即使在较小的聚集体中也已经形成,并在有序的纤维状结构元素之前形成。值得注意的是,寡聚态中也出现了明显的纤维状构象,这强调了预成核寡聚体作为纤维形成途径中的关键中间步骤的概念。