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The Conformational Stability of Nonfibrillar Amyloid-βPeptide Oligomers Critically Depends on the C-Terminal PeptideLength

机译:非原纤维淀粉样蛋白β的构象稳定性肽寡聚体主要取决于C末端肽长度

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摘要

The amyloid-β (Aβ) peptide is one key molecule in the pathogenesis of Alzheimer’s disease. We investigated the conformational stability of a nonfibrillar tetrameric Aβ structure by molecular dynamics (MD) simulations revealing that the stability of the Aβ tetramer depends critically on the C-terminal length. In contrast to the Aβ17–40 tetramer, which proved to be instable, the simulations demonstrate structural integrity of the Aβ17–42 and Aβ17–43 tetramers. These differences in stability can be attributed to an extension of the middle strand of a three-stranded antiparallel β sheet through residues 41–43, only present in the longer Aβ species that aggregate faster and are more neurotoxic. Additional MD simulations demonstrate that this higher stability is also present in the monomers forming the tetramer. In conclusion, our findings suggest the existence of a nonfibrillar oligomer topology that is significantly more stable for the longer Aβ species, thus offering a structural explanation for their higher neurotoxicity.
机译:淀粉样β(Aβ)肽是阿尔茨海默氏病发病机理中的关键分子。我们通过分子动力学(MD)模拟研究了非原纤维四聚体Aβ结构的构象稳定性,揭示了Aβ四聚体的稳定性主要取决于C端长度。与证明是不稳定的Aβ17-40四聚体相反,模拟显示了Aβ17-42和Aβ17-43四聚体的结构完整性。稳定性的这些差异可归因于三链反平行β折叠的中链通过残基41–43延伸,仅存在于较长的Aβ物种中,聚集速度更快,对神经毒性更大。附加的MD模拟表明,形成四聚体的单体中也存在这种较高的稳定性。总之,我们的发现表明存在非原纤维低聚物拓扑结构,该结构对于更长的Aβ物种明显更稳定,因此为它们的更高的神经毒性提供了结构解释。

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