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Aβ(M1–40) and Wild-Type Aβ40 Self-Assemble into Oligomers with Distinct Quaternary Structures

机译:Aβ(M1–40)和野生型Aβ40自组装为具有不同四级结构的低聚物

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摘要

Amyloid-β oligomers (AβOs) self-assemble into polymorphic species with diverse biological activities that are implicated causally to Alzheimer’s disease (AD). Synaptotoxicity of AβO species is dependent on their quaternary structure, however, low-abundance and environmental sensitivity of AβOs in vivo have impeded a thorough assessment of structure–function relationships. We developed a simple biochemical assay to quantify the relative abundance and morphology of cross-linked AβOs. We compared oligomers derived from synthetic Aβ40 (wild-type (WT) Aβ40) and a recombinant source, called Aβ(M1–40). Both peptides assemble into oligomers with common sizes and morphology, however, the predominant quaternary structures of Aβ(M1–40) oligomeric states were more diverse in terms of dispersity and morphology. We identified self-assembly conditions that stabilize high-molecular weight oligomers of Aβ(M1–40) with apparent molecular weights greater than 36 kDa. Given that mixtures of AβOs derived from both peptides have been shown to be potent neurotoxins that disrupt long-term potentiation, we anticipate that the diverse quaternary structures reported for Aβ(M1–40) oligomers using the assays reported here will facilitate research efforts aimed at isolating and identifying common toxic species that contribute to synaptic dysfunction.
机译:淀粉样蛋白-β低聚物(AβOs)自组装成具有多种生物活性的多态性物种,这与阿尔茨海默氏病(AD)有因果关系。 AβO种类的突触毒性取决于它们的四级结构,但是,体内AβO的低丰度和环境敏感性阻碍了对结构与功能关系的彻底评估。我们开发了一种简单的生化分析方法来量化交联的AβOs的相对丰度和形态。我们比较了源自合成Aβ40(野生型(WT)Aβ40)和称为Aβ(M1-4)的重组来源的寡聚物。两种肽都组装成具有相同大小和形态的寡聚体,但是,Aβ(M1–40)寡聚态的主要四元结构在分散性和形态上更加多样化。我们确定了自组装条件,该条件稳定了表观分子量大于36 kDa的Aβ(M1-4)的高分子低聚物。鉴于已证明衍生自两种肽的AβO混合物是强效的神经毒素,可破坏长期增强作用,因此我们预期,使用此处报告的测定方法报告的Aβ(M1-40)低聚物的不同四级结构将有助于针对分离和鉴定导致突触功能障碍的常见毒性物质。

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