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Direct observation of minimum-sized amyloid fibrils using solution NMR spectroscopy

机译:使用溶液NMR光谱法直接观察最小尺寸的淀粉样蛋白原纤维

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摘要

It is challenging to investigate the structure and dynamics of amyloid fibrils at the residue and atomic resolution because of their high molecular weight and heterogeneous properties. Here, we used solution nuclear magnetic resonance (NMR) spectroscopy to characterize the conformation and flexibility of amyloid fibrils of β2-microglobulin (β2m), for which direct observation of solution NMR could not be made. Ultrasonication led to fragmentation producing a solution of minimum-sized fibrils with a molecular weight of around 6 MDa. In 1H-15N heteronuclear single-quantum correlation measurements, five signals, derived from N-terminal residues (i.e., Ile1, Gln2, Arg3, Thr4, and Lys6), were newly detected. Signal strength decreased with the distance from the N-terminal end. Capping experiments with the unlabeled β2m monomer indicated that the signals originated from molecules located inside the fibrils. Ultrasonication makes the residues with moderate flexibility observable by reducing size of the fibrils. Thus, solution NMR measurements of ultrasonicated fibrils will be promising for studying the structure and dynamics of fibrils.
机译:由于淀粉状蛋白原纤维的高分子量和异质性,在残基和原子分辨率下研究其结构和动力学具有挑战性。在这里,我们使用溶液核磁共振(NMR)光谱来表征β2-微球蛋白(β2m)的淀粉样蛋白原纤维的构象和柔韧性,因此无法直接观察溶液NMR。超声导致碎裂,产生最小尺寸的原纤维溶液,分子量约为6 MDa。在 1 H- 15 N异核单量子相关测量中,从N末端残基(即Ile1,Gln2,Arg3,Thr4和Lys6)衍生出五个信号,是新发现的。信号强度随着距N端距离的增加而降低。用未标记的β2m单体进行的封端实验表明,信号源自原纤维内部的分子。超声处理可通过减小原纤维的大小来观察到具有中等柔韧性的残留物。因此,超声原纤维的溶液NMR测量将有望用于研究原纤维的结构和动力学。

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