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Oligomerization Alters Binding Affinity Between Amyloid Beta and a Modulator of Peptide Aggregation

机译:齐聚改变淀粉样蛋白β和肽聚集调节剂之间的结合亲和力。

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摘要

The soluble oligomeric form of the amyloid beta (Aβ) peptide is the major causative agent in the molecular pathogenesis of Alzheimer’s disease (AD). We have previously developed a pyrroline-nitroxyl fluorene compound (SLF) that blocks the toxicity of Aβ. Here we introduce the multi-parametric surface plasmon resonance (MP-SPR) approach to quantify SLF binding and effect on the self-association of the peptide via a label-free, real-time approach. Kinetic analysis of SLF binding to Aβ and measurements of layer thickness alterations inform on the mechanism underlying the ability of SLF to inhibit Aβ toxicity and its progression towards larger oligomeric assemblies. Depending on the oligomeric state of Aβ, distinct binding affinities for SLF are revealed. The Aβ monomer and dimer uniquely possess sub-nanomolar affinity for SLF via a non-specific mode of binding. SLF binding is weaker in oligomeric Aβ, which displays an affinity for SLF on the order of 100 μM. To complement these experiments we carried out molecular docking and molecular dynamics simulations to explore how SLF interacts with the Aβ peptide. The MP-SPR results together with in silico modeling provide affinity data for the SLF-Aβ interaction and allow us to develop a new general method for examining protein aggregation.
机译:淀粉样蛋白β(Aβ)肽的可溶性寡聚形式是阿尔茨海默氏病(AD)分子发病机理中的主要诱因。我们之前已经开发了吡咯啉-硝基苯芴化合物(SLF),该化合物可阻断Aβ的毒性。在这里,我们介绍了多参数表面等离振子共振(MP-SPR)方法来量化SLF结合和通过无标记的实时方法对肽的自缔合的影响。 SLF与Aβ结合的动力学分析和层厚度变化的测量结果说明了SLF抑制Aβ毒性的能力及其向更大的寡聚组装体发展的机制。取决于Aβ的寡聚状态,揭示了对SLF的独特结合亲和力。 Aβ单体和二聚体通过非特异性结合方式对SLF具有独特的亚纳摩尔亲和力。 SLF结合在寡聚Aβ中较弱,它对SLF的亲和力约为100μM。为了补充这些实验,我们进行了分子对接和分子动力学模拟,以探索SLF如何与Aβ肽相互作用。 MP-SPR结果与计算机模拟一起提供了SLF-Aβ相互作用的亲和力数据,并使我们能够开发一种检测蛋白质聚集的新通用方法。

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