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抗淀粉样变自组装环状 D,L-α-肽结构的体外和机制研究。

In vitro and mechanistic studies of an antiamyloidogenic self-assembled cyclic D,L-α-peptide architecture.

机构信息

Department of Chemistry, Bar-Ilan University, Ramat-Gan 5290, Israel.

出版信息

J Am Chem Soc. 2013 Mar 6;135(9):3474-84. doi: 10.1021/ja310064v. Epub 2013 Feb 19.

DOI:10.1021/ja310064v
PMID:23360549
Abstract

Misfolding of the Aβ protein and its subsequent aggregation into toxic oligomers are related to Alzheimer's disease. Although peptides of various sequences can self-assemble into amyloid structures, these structures share common three-dimensional features that may promote their cross-reaction. Given the significant similarities between amyloids and the architecture of self-assembled cyclic D,L-α-peptide, we hypothesized that the latter may bind and stabilize a nontoxic form of Aβ, thereby preventing its aggregation into toxic forms. By screening a focused library of six-residue cyclic D,L-α-peptides and optimizing the activity of a lead peptide, we found one cyclic D,L-α-peptide (CP-2) that interacts strongly with Aβ and inhibits its aggregation. In transmission electron microscopy, optimized thioflavin T and cell survival assays, CP-2 inhibits the formation of Aβ aggregates, entirely disassembles preformed aggregated and fibrillar Aβ, and protects rat pheochromocytoma PC12 cells from Aβ toxicity, without inducing any toxicity by itself. Using various immunoassays, circular dichroism spectroscopy, photoinduced cross-linking of unmodified proteins (PICUP) combined with SDS/PAGE, and NMR, we probed the mechanisms underlying CP-2's antiamyloidogenic activity. NMR spectroscopy indicates that CP-2 interacts with Aβ through its self-assembled conformation and induces weak secondary structure in Aβ. Upon coincubation, CP-2 changes the aggregation pathway of Aβ and alters its oligomer distribution by stabilizing small oligomers (1-3 mers). Our results support studies suggesting that toxic early oligomeric states of Aβ may be composed of antiparallel β-peptide structures and that the interaction of Aβ with CP-2 promotes formation of more benign parallel β-structures. Further studies will show whether these kinds of abiotic cyclic D,L-α-peptides are also beneficial as an intervention in related in vivo models.

摘要

β淀粉样蛋白的错误折叠及其随后聚集形成毒性寡聚物与阿尔茨海默病有关。尽管各种序列的肽都可以自组装成淀粉样结构,但这些结构具有共同的三维特征,可能促进它们的交叉反应。鉴于淀粉样蛋白与自组装的环状 D,L-α-肽的结构具有显著的相似性,我们假设后者可能结合并稳定非毒性形式的 Aβ,从而防止其聚集形成毒性形式。通过筛选一个包含六个残基的环状 D,L-α-肽的聚焦文库并优化一个先导肽的活性,我们发现了一种与 Aβ强烈相互作用并抑制其聚集的环状 D,L-α-肽(CP-2)。在透射电子显微镜、优化的硫黄素 T 和细胞存活测定中,CP-2 抑制 Aβ 聚集物的形成,完全拆散预先形成的聚集物和纤维状 Aβ,并保护大鼠嗜铬细胞瘤 PC12 细胞免受 Aβ 毒性,而本身不会引起任何毒性。使用各种免疫测定、圆二色性光谱、未修饰蛋白质的光诱导交联(PICUP)与 SDS/PAGE 结合以及 NMR,我们研究了 CP-2 抗淀粉样形成活性的机制。NMR 光谱表明,CP-2 通过其自组装构象与 Aβ相互作用,并诱导 Aβ 产生较弱的二级结构。共孵育时,CP-2 改变 Aβ 的聚集途径,并通过稳定小寡聚物(1-3 聚体)改变其寡聚物分布。我们的结果支持了一些研究,表明 Aβ 的毒性早期寡聚态可能由反平行 β-肽结构组成,并且 Aβ 与 CP-2 的相互作用促进了更良性的平行 β-结构的形成。进一步的研究将表明,这些非生物环状 D,L-α-肽是否也有益于相关体内模型的干预。

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