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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Dynamics of Metastable β-Hairpin Structures in the Folding Nucleus of Amyloid β-Protein
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Dynamics of Metastable β-Hairpin Structures in the Folding Nucleus of Amyloid β-Protein

机译:淀粉样蛋白折叠核中亚稳态β-发夹结构的动力学

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摘要

The amyloid yff-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 Aβ_(21-30) 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 Aβ_(21-30) 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 (>500 ns), closely followed by the Iowa mutant (≈500 ns). Aβ_(21-30) and the Arctic mutant had significantly lower lifetimes (≈200 ns). Hydrophobic packing of side chains was responsible for enhanced β-hairpin lifetimes in the Dutch and Iowa mutants, whereas lifetimes in Aβ_(21-30) 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:淀粉样蛋白yff蛋白(Aβ)主要以40或42个残基的肽存在,被认为在阿尔茨海默氏病(AD)的发病机理中起着重要作用。 Aβ_(21-30)十肽区域的折叠是Aβ聚集的关键步骤。我们报告了与单体形式有关的单体Aβ_(21-30)及其荷兰[Glu22Gln],北极[Glu22Gly]和爱荷华州[Asp23Asn]亚型动力学的显性水中恒温全原子分子动力学模拟的结果脑淀粉样血管病和AD。模拟显示了各种环状构象异构体,这些构象异构体表现出涉及Asp23和Ser26氨基酸的氢键网络。发现在爱荷华州突变体中,一群顺应性而不是loop族的一部分形成亚稳的β-发夹结构。发现至少三个β-发夹结构在其氢键配位,主链氢键的平均数和寿命方面不同。分析表明,荷兰突变体的β-发夹寿命最长(> 500 ns),紧随其后的是爱荷华州突变体(≈500ns)。 Aβ_(21-30)和北极突变体的寿命显着降低(≈200ns)。在荷兰和爱荷华州的突变体中,侧链的疏水堆积可延长β-发夹的寿命,而Aβ_(21-30)及其北极突变体的寿命则受主链氢键的影响。数据表明,延长的β-发夹寿命可能会影响体内肽的致病性。

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