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设计的糖肽模拟物可破坏介导淀粉样β肽聚集的蛋白质-蛋白质相互作用并恢复神经母细胞瘤细胞活力。

Designed Glycopeptidomimetics Disrupt Protein-Protein Interactions Mediating Amyloid β-Peptide Aggregation and Restore Neuroblastoma Cell Viability.

机构信息

Molécules Fluorées et Chimie Médicinale, BioCIS, Univ. Paris-Sud, CNRS, Université Paris Saclay , 5 rue Jean-Baptiste Clément, 92296 Châtenay-Malabry Cedex, France.

Protéines et Nanotechnologies en Sciences Séparatives, Institut Galien Paris-Sud, Univ. Paris-Sud, CNRS, Université Paris Saclay , 5 rue Jean-Baptiste Clément, 92296 Châtenay-Malabry Cedex, France.

出版信息

J Med Chem. 2016 Mar 10;59(5):2025-40. doi: 10.1021/acs.jmedchem.5b01629. Epub 2016 Feb 4.

Abstract

How anti-Alzheimer's drug candidates that reduce amyloid 1-42 peptide fibrillization interact with the most neurotoxic species is far from being understood. We report herein the capacity of sugar-based peptidomimetics to inhibit both Aβ1-42 early oligomerization and fibrillization. A wide range of bio- and physicochemical techniques, such as a new capillary electrophoresis method, nuclear magnetic resonance, and surface plasmon resonance, were used to identify how these new molecules can delay the aggregation of Aβ1-42. We demonstrate that these molecules interact with soluble oligomers in order to maintain the presence of nontoxic monomers and to prevent fibrillization. These compounds totally suppress the toxicity of Aβ1-42 toward SH-SY5Y neuroblastoma cells, even at substoichiometric concentrations. Furthermore, demonstration that the best molecule combines hydrophobic moieties, hydrogen bond donors and acceptors, ammonium groups, and a hydrophilic β-sheet breaker element provides valuable insight for the future structure-based design of inhibitors of Aβ1-42 aggregation.

摘要

目前,人们对于能够降低淀粉样蛋白 1-42 肽纤维形成的抗阿尔茨海默病候选药物与最具神经毒性的物质相互作用的机制还知之甚少。本文报道了基于糖的肽模拟物抑制 Aβ1-42 早期寡聚化和纤维形成的能力。我们使用了一系列广泛的生物和物理化学技术,如毛细管电泳新方法、核磁共振和表面等离子体共振,来确定这些新分子如何延缓 Aβ1-42 的聚集。我们证明,这些分子与可溶性低聚物相互作用,以维持无毒单体的存在并防止纤维形成。这些化合物完全抑制了 Aβ1-42 对 SH-SY5Y 神经母细胞瘤细胞的毒性,即使在亚化学计量浓度下也是如此。此外,证明最佳分子结合了疏水部分、氢键供体和受体、铵基团和亲水性 β-折叠破坏元素,为基于结构的 Aβ1-42 聚集抑制剂的未来设计提供了有价值的见解。

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