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Dynamics of Metastable β-hairpin Structures in the Folding Nucleus of Amyloid β-Protein

机译:淀粉样蛋白β-蛋白折叠核中亚稳β-发夹结构的动态

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摘要

The amyloid β-protein (Aβ), which is present predominately as a 40- or 42-residue peptide, is postulated to play a seminal role in the pathogenesis of Alzheimer's disease (AD). Folding of the Aβ21–30 decapeptide region is a critical step in the aggregation of Aβ. We report results of constant temperature all-atom molecular dynamics simulations in explicit water of the dynamics of monomeric Aβ21–30 and its Dutch [Glu22Gln], Arctic [Glu22Gly], and Iowa [Asp23Asn] isoforms that are associated with familial forms of cerebral amyloid angiopathy and AD. The simulations revealed a variety of loop conformers that exhibited a hydrogen bond network involving the Asp23 and Ser26 amino acids. A population of conformers, not part of the loop population, was found to form metastable β-hairpin structures with the highest probability in the Iowa mutant. At least three β-hairpin structures were found that differed in their hydrogen bonding register, average number of backbone hydrogen bonds, and lifetimes. Analysis revealed that the Dutch mutant had the longest β-hairpin lifetime (≥500ns), closely followed by the Iowa mutant (≈500ns). Aβ21–30 and the Arctic mutant had significantly lower lifetimes (≈200ns). Hydrophobic packing of side chains was responsible for enhanced β-hairpin lifetimes in the Dutch and Iowa mutants, whereas lifetimes in Aβ21–30 and its Arctic mutant were influenced by the backbone hydrogen bonding. The data suggest that prolonged β-hairpin lifetimes may impact peptide pathogenicity in vivo.
机译:主要作为40-或42-残基肽主要存在的淀粉样蛋白β-蛋白(Aβ)被假设在阿尔茨海默病的发病机制中发挥着精明作用(AD)。 Aβ21-30疏远肽区域的折叠是Aβ聚集的关键步骤。我们报告单体Aβ21-30的动态的明确水中恒温全原子分子动力学模拟结果及其荷兰湿[glu22gly]和iowa [asp23asn]同种型,与家族性形式的脑淀粉样蛋白相关联血管病和广告。该模拟揭示了各种环状符合子,其表现出涉及ASP23和Ser26氨基酸的氢键网络。发现群体,而不是环群的一部分,发现形成具有Iowa突变体中具有最高概率的亚稳β-发夹结构。发现至少三种β-发夹结构,其氢键封寄存器不同,骨架氢键的平均数量和寿命不同。分析表明,荷兰突变体具有最长的β-发夹寿命(≥500ns),紧随其后的IOWA突变体(≈500ns)。 Aβ21-30和北极突变体具有显着降低的寿命(≈200ns)。侧链的疏水填料负责荷兰和爱荷华州和爱荷华州突变体的增强β-发夹寿命,而Aβ21-30的寿命及其北极突变体受到骨干氢键的影响。数据表明,延长的β-发夹寿命可能会影响体内肽致病性。

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