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首页> 外文期刊>Scientific reports. >A rationally designed bicyclic peptide remodels Aβ42 aggregation in vitro and reduces its toxicity in a worm model of Alzheimer’s disease
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A rationally designed bicyclic peptide remodels Aβ42 aggregation in vitro and reduces its toxicity in a worm model of Alzheimer’s disease

机译:理性设计的双环肽在体外重塑Aβ42聚集并降低了阿尔茨海默病的蠕虫模型中的毒性

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摘要

Bicyclic peptides have great therapeutic potential since they can bridge the gap between small molecules and antibodies by combining a low molecular weight of about 2?kDa with an antibody-like binding specificity. Here we apply a recently developed in silico rational design strategy to produce a bicyclic peptide to target the C-terminal region (residues 31–42) of the 42-residue form of the amyloid β peptide (Aβ42), a protein fragment whose aggregation into amyloid plaques is linked with Alzheimer’s disease. We show that this bicyclic peptide is able to remodel the aggregation process of Aβ42 in vitro and to reduce its associated toxicity in vivo in a C. elegans worm model expressing Aβ42. These results provide an initial example of a computational approach to design bicyclic peptides to target specific epitopes on disordered proteins.
机译:双环肽具有很大的治疗潜力,因为它们可以通过组合具有约2μk的低分子量与抗体结合特异性的低分子量来弥合小分子和抗体之间的间隙。在这里,我们在硅合理设计策略中应用最近开发的双环肽以靶向淀粉样蛋白β肽(Aβ42)的42-残基形式的C末端区域(残留物31-42),其聚集在一起淀粉样蛋白斑块与阿尔茨海默病联系。我们表明,这种双环肽能够在体外重塑Aβ42的聚集过程,并在表达Aβ42的C.秀丽隐虫模型中减少其体内相关的毒性。这些结果提供了设计双环肽以靶向无序蛋白质的特定表位的计算方法的初始示例。

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