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Molecular Dynamics Simulations of Amyloid β-Peptide (1-42): Tetramer Formation and Membrane Interactions

机译:淀粉样β-肽(1-42)的分子动力学模拟:四聚体形成和膜相互作用

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摘要

The aggregation cascade and peptide-membrane interactions of the amyloid β-peptide (Aβ) have been implicated as toxic events in the development and progression of Alzheimer’s disease. Aβ42 forms oligomers and ultimately plaques, and it has been hypothesized that these oligomeric species are the main toxic species contributing to neuronal cell death. To better understand oligomerization events and subsequent oligomer-membrane interactions of Aβ42, we performed atomistic molecular-dynamics (MD) simulations to characterize both interpeptide interactions and perturbation of model membranes by the peptides. MD simulations were utilized to first show the formation of a tetramer unit by four separate Aβ42 peptides. Aβ42 tetramers adopted an oblate ellipsoid shape and showed a significant increase in β-strand formation in the final tetramer unit relative to the monomers, indicative of on-pathway events for fibril formation. The Aβ42 tetramer unit that formed in the initial simulations was used in subsequent MD simulations in the presence of a pure POPC or cholesterol-rich raft model membrane. Tetramer-membrane simulations resulted in elongation of the tetramer in the presence of both model membranes, with tetramer-raft interactions giving rise to the rearrangement of key hydrophobic regions in the tetramer and the formation of a more rod-like structure indicative of a fibril-seeding aggregate. Membrane perturbation by the tetramer was manifested in the form of more ordered, rigid membranes, with the pure POPC being affected to a greater extent than the raft membrane. These results provide critical atomistic insight into the aggregation pathway of Aβ42 and a putative toxic mechanism in the pathogenesis of Alzheimer’s disease.
机译:淀粉样蛋白β肽(Aβ)的聚集级联反应和肽膜相互作用被认为是阿尔茨海默氏病发展和进程中的毒性事件。 Aβ42形成寡聚物并最终形成噬菌斑,并且已经假设这些寡聚物种是导致神经元细胞死亡的主要毒性物种。为了更好地理解Aβ42的低聚事件和随后的低聚物-膜相互作用,我们进行了原子分子动力学(MD)模拟,以表征肽之间的相互作用和肽对模型膜的干扰。 MD模拟被用来首先显示由四个分开的Aβ42肽形成的四聚体单元。 Aβ42四聚体呈扁椭圆形,相对于单体而言,最终四聚体单元中的β链形成显着增加,表明原纤维形成的传播过程。在纯POPC或富含胆固醇的筏模型膜的存在下,初始模拟中形成的Aβ42四聚体单元用于随后的MD模拟中。四聚体膜模拟导致两种模型膜均存在时四聚体伸长,四聚体-筏相互作用引起四聚体中关键疏水区域的重排,并形成更棒状的结构,表明原纤维播种骨料。四聚体对膜的扰动表现为更有序的刚性膜,纯POPC的影响比筏膜更大。这些结果为Aβ42的聚集途径提供了关键的原子洞察力,并为阿尔茨海默氏病的发病机理提供了可能的毒性机制。

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