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阿尔茨海默病淀粉样β肽单体聚集体在水溶液中的胶束状结构及其对 Aβ聚集的影响。

Micelle-like architecture of the monomer ensemble of Alzheimer's amyloid-β peptide in aqueous solution and its implications for Aβ aggregation.

机构信息

Department of Biochemistry, University of Zurich, Winterthurerstrasse 190, CH-8057 Zurich, Switzerland.

出版信息

J Mol Biol. 2010 Oct 15;403(1):148-165. doi: 10.1016/j.jmb.2010.08.003. Epub 2010 Aug 13.

Abstract

Aggregation of amyloid-β (Aβ) peptide, a 39- to 43-residue fragment of the amyloid precursor protein, is associated with Alzheimer's disease, the most common form of dementia in the elderly population. Several experimental studies have tried to characterize the atomic details of amyloid fibrils, which are the final product of Aβ aggregation. Much less is known about species forming during the early stages of aggregation, in particular about the monomeric state of the Aβ peptide that may be viewed as the product of the very first step in the hypothesized amyloid cascade. Here, the equilibrium ensembles of monomeric Aβ alloforms Aβ(1-40) and Aβ(1-42) are investigated by Monte Carlo simulations using an atomistic force field and implicit solvent model that have been shown previously to correctly reproduce the ensemble properties of other intrinsically disordered polypeptides. Our simulation results indicate that at physiological temperatures, both alloforms of Aβ assume a largely collapsed globular structure. Conformations feature a fluid hydrophobic core formed, on average, by contacts both within and between the two segments comprising residues 12-21 and 24-40/42, respectively. Furthermore, the 11 N-terminal residues are completely unstructured, and all charged side chains, in particular those of Glu22 and Asp23, remain exposed to solvent. Taken together, these observations indicate a micelle-like† architecture at the monomer level whose implications for oligomerization, as well as fibril formation and elongation, are discussed. We establish quantitatively the intrinsic disorder of Aβ and find the propensity to form regular secondary structure to be low but sequence specific. In the presence of a global and unspecific bias for backbone conformations to populate the β-basin, the β-sheet propensity along the sequence is consistent with the arrangement of the monomer within the fibril, as derived from solid-state NMR data. These observations indicate that the primary sequence partially encodes fibril structure, but that fibril elongation must be thought of as a templated assembly step.

摘要

淀粉样蛋白-β(Aβ)肽的聚集,是淀粉样前体蛋白的 39-43 个残基片段,与阿尔茨海默病有关,这是老年人中最常见的痴呆形式。有几项实验研究试图描述淀粉样纤维的原子细节,淀粉样纤维是 Aβ聚集的最终产物。关于在聚集早期形成的物种,人们了解得要少得多,特别是关于 Aβ肽的单体状态,它可能被视为假设的淀粉样蛋白级联假说的第一步的产物。在这里,使用一种原子力场和隐式溶剂模型,通过蒙特卡罗模拟研究了单体 Aβ同种型 Aβ(1-40)和 Aβ(1-42)的平衡集合体,该模型先前已被证明可以正确再现其他固有无序多肽的集合体性质。我们的模拟结果表明,在生理温度下,两种 Aβ同种型都假定为很大程度上坍塌的球状结构。构象特征为平均由包含残基 12-21 和 24-40/42 的两个片段内和之间的接触形成的流体疏水性核心。此外,11 个 N 端残基完全无结构,并且所有带电侧链,特别是 Glu22 和 Asp23 的侧链,仍然暴露于溶剂中。总之,这些观察结果表明在单体水平上存在胶束样结构,其对寡聚化以及纤维形成和伸长的影响进行了讨论。我们定量地确定了 Aβ的固有无序性,并发现形成规则二级结构的倾向较低,但具有序列特异性。在存在使骨架构象倾向于填充β-盆地的全局和非特异性偏置的情况下,序列中β-页片的倾向与从固态 NMR 数据得出的纤维内单体的排列一致。这些观察结果表明,一级序列部分编码纤维结构,但纤维伸长必须被视为模板组装步骤。

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