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Identification and nanomechanical characterization of the fundamental single-strand protofilaments of amyloid α-synuclein fibrils

机译:淀粉样α-突触核蛋白原纤维的基本单链原丝的鉴定和纳米力学表征

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摘要

The formation and spreading of amyloid aggregates from the presynaptic protein α-synuclein in the brain play central roles in the pathogenesis of Parkinson’s disease. Here, we use high-resolution atomic force microscopy to investigate the early oligomerization events of α-synuclein with single monomer angstrom resolution. We identify, visualize, and characterize directly the smallest elementary unit in the hierarchical assembly of amyloid fibrils, termed here single-strand protofilaments. We show that protofilaments form from the direct molecular assembly of unfolded monomeric α-synuclein polypeptide chains. To unravel protofilaments’ internal structure and elastic properties, we manipulated nanomechanically these species by atomic force spectroscopy. The single-molecule scale identification and characterization of the fundamental unit of amyloid assemblies provide insights into early events underlying their formation and shed light on opportunities for therapeutic intervention at the early stages of aberrant protein self-assembly.
机译:突触前蛋白α-突触核蛋白在大脑中淀粉样蛋白聚集物的形成和扩散在帕金森氏病的发病机理中起着重要作用。在这里,我们使用高分辨率原子力显微镜研究具有单单体埃分辨率的α-突触核蛋白的早期低聚事件。我们确定,可视化和直接表征淀粉状蛋白原纤维的分层组装中的最小基本单元,在此称为单链原丝。我们显示原丝从未折叠的单体α-突触核蛋白多肽链的直接分子组装形成。为了揭示原型丝的内部结构和弹性特性,我们通过原子力光谱法对这些物种进行了纳米机械操作。淀粉样蛋白组装基本单元的单分子规模鉴定和表征提供了洞悉其形成的早期事件的见解,并阐明了异常蛋白质自组装早期阶段的治疗干预机会。

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