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Alzheimer Aβ peptide interactions with lipid membranes Fibrils, oligomers and polymorphic amyloid channels

机译:阿尔茨海默病Aβ肽与脂质膜的相互作用纤维,寡聚物和多态淀粉样蛋白通道

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Fibrillar aggregates of misfolded amyloid proteins are involved in a variety of diseases such as Alzheimer disease (AD), type 2 diabetes, Parkinson, Huntington and prion-related diseases. In the case of AD amyloid β (Aβ) peptides, the toxicity of amyloid oligomers and larger fibrillar aggregates is related to perturbing the biological function of the adjacent cellular membrane. We used atomistic molecular dynamics (MD) simulations of Aβ9–40 fibrillar oligomers modeled as protofilament segments, including lipid bilayers and explicit water molecules, to probe the first steps in the mechanism of Aβ-membrane interactions. Our study identified the electrostatic interaction between charged peptide residues and the lipid headgroups as the principal driving force that can modulate the further penetration of the C-termini of amyloid fibrils or fibrillar oligomers into the hydrophobic region of lipid membranes. These findings advance our understanding of the detailed molecular mechanisms and the effects related to Aβ-membrane interactions, and suggest a polymorphic structural character of amyloid ion channels embedded in lipid bilayers. While inter-peptide hydrogen bonds leading to the formation of β-strands may still play a stabilizing role in amyloid channel structures, these may also present a significant helical content in peptide regions (e.g., termini) that are subject to direct interactions with lipids rather than with neighboring Aβ peptides.
机译:错误折叠的淀粉样蛋白的纤维状聚集体涉及多种疾病,例如阿尔茨海默氏病(AD),2型糖尿病,帕金森氏症,亨廷顿氏症和病毒相关疾病。对于AD淀粉样蛋白β(Aβ)肽,淀粉样蛋白低聚物和较大的原纤维聚集体的毒性与扰动相邻细胞膜的生物学功能有关。我们使用原子序动力学模拟的Aβ9–40原纤维段(包括脂质双层和显性水分子)建模的Aβ9–40纤维状低聚物,以探究Aβ膜相互作用机理的第一步。我们的研究确定带电的肽残基和脂质头基团之间的静电相互作用是主要的驱动力,可以调节淀粉样原纤维或原纤维寡聚物的C末端进一步渗透到脂质膜的疏水区域。这些发现提高了我们对详细的分子机制和与Aβ-膜相互作用有关的影响的理解,并暗示了嵌入脂质双层中的淀粉样蛋白离子通道的多态结构特征。尽管导致β链形成的肽间氢键可能仍在淀粉样蛋白通道结构中起稳定作用,但它们也可能在肽区(例如,末端)中呈现明显的螺旋含量,这些螺旋区与脂质直接相互作用,而不是邻近的Aβ肽。

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