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Solvent and mutation effects on the nucleation of amyloid β-protein folding

机译:溶剂和突变对淀粉样β蛋白折叠成核作用的影响

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摘要

Experimental evidence suggests that the folding and aggregation of the amyloid β-protein (Aβ) into oligomers is a key pathogenetic event in Alzheimer's disease. Inhibiting the pathologic folding and oligomerization of Aβ could be effective in the prevention and treatment of Alzheimer's disease. Here, using all-atom molecular dynamics simulations in explicit solvent, we probe the initial stages of folding of a decapeptide segment of Aβ,Aβ21–30, shown experimentally to nucleate the folding process. In addition, we examine the folding of a homologous decapeptide containing an amino acid substitution linked to hereditary cerebral hemorrhage with amyloidosis–Dutch type, [Gln-22]Aβ21–30. We find that: (i) when the decapeptide is in water, hydrophobic interactions and transient salt bridges between Lys-28 and either Glu-22 or Asp-23 are important in the formation of a loop in the Val-24–Lys-28 region of the wild-type decapeptide; (ii) in the presence of salt ions, salt bridges play a more prominent role in the stabilization of the loop; (iii) in water with a reduced density, the decapeptide forms a helix, indicating the sensitivity of folding to different aqueous environments; and (iv) the “Dutch” peptide in water, in contrast to the wild-type peptide, fails to form a long-lived Val-24–Lys-28 loop, suggesting that loop stability is a critical factor in determining whether Aβ folds into pathologic structures.
机译:实验证据表明,淀粉样β蛋白(Aβ)折叠和聚集为低聚物是阿尔茨海默氏病的关键致病事件。抑制Aβ的病理性折叠和寡聚可能有效预防和治疗阿尔茨海默氏病。在这里,使用显式溶剂中的全原子分子动力学模拟,我们探索了Aβ,Aβ21–30十肽片段折叠的初始阶段,实验显示了该过程的成核过程。此外,我们检查了具有氨基酸取代的同源十肽的折叠,该氨基酸与患有淀粉样变性-荷兰型[Gln-22]Aβ21-30的遗传性脑出血有关。我们发现:(i)当十肽在水中时,Lys-28与Glu-22或Asp-23之间的疏水相互作用和短暂的盐桥对Val-24-Lys-28中环的形成很重要。野生型十肽的区域; (ii)在存在盐离子的情况下,盐桥在稳定环中起着更为重要的作用; (iii)在密度降低的水中,十肽形成螺旋,表明折叠对不同水性环境的敏感性; (iv)与野生型肽相比,水中的“荷兰”肽无法形成长寿命的Val-24-Lys-28环,这表明环稳定性是决定Aβ是否折叠的关键因素进入病理结构。

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