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首页> 外文期刊>Nature Chemistry >Ion mobility-mass spectrometry reveals a conformational conversion from random assembly to p-sheet in amyloid fibril formation
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Ion mobility-mass spectrometry reveals a conformational conversion from random assembly to p-sheet in amyloid fibril formation

机译:离子淌度质谱分析显示淀粉样蛋白原纤维形成过程中从随机组装到p-折叠的构象转换

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摘要

Amyloid cascades that lead to peptide β-sheet fibrils and plaques are central to many important diseases. Recently, intermediate assemblies of these cascades were identified as the toxic agents that interact with cellular machinery. The location and cause of the transformation from a natively unstructured assembly to the p-sheet oligomers found in all fibrils is important in understanding disease onset and the development of therapeutic agents. Largely, research on this early oligomeric region was unsuccessful because all the traditional techniques measure only the average oligomer properties of the ensemble. We utilized ion-mobility methods to deduce the peptide self-assembly mechanism and examined a series of amyloid-forming peptides clipped from larger peptides or proteins associated with disease. We provide unambiguous evidence for structural transitions in each of these fibril-forming peptide systems and establish the potential of this method for the development of therapeutic agents and drug evaluation.
机译:导致肽β-折叠原纤维和噬菌斑的淀粉样蛋白级联是许多重要疾病的关键。最近,这些级联的中间组件被确定为与细胞机器相互作用的有毒物质。在所有原纤维中发现的从天然非结构化装配体向p-sheet低聚物转化的位置和原因,对于理解疾病的发作和治疗剂的开发都很重要。在很大程度上,对该早期低聚区域的研究没有成功,因为所有传统技术都仅测量该集合体的平均低聚物性质。我们利用离子迁移方法推导了肽的自组装机制,并研究了一系列从较大的肽或与疾病相关的蛋白质中截取的淀粉样形成肽。我们提供了这些原纤维形成肽系统中每个结构转变的明确证据,并确定了该方法在治疗剂开发和药物评估中的潜力。

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