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基于小角散射的淀粉样β 42 纤维结构。

Amyloid β 42 fibril structure based on small-angle scattering.

机构信息

Biochemistry and Structural Biology, Lund University, SE-22100 Lund, Sweden;

Division of Physical Chemistry, Lund University, SE-22100 Lund, Sweden.

出版信息

Proc Natl Acad Sci U S A. 2021 Nov 30;118(48). doi: 10.1073/pnas.2112783118.

Abstract

Amyloid fibrils are associated with a number of neurodegenerative diseases, including fibrils of amyloid β42 peptide (Aβ42) in Alzheimer's disease. These fibrils are a source of toxicity to neuronal cells through surface-catalyzed generation of toxic oligomers. Detailed knowledge of the fibril structure may thus facilitate therapeutic development. We use small-angle scattering to provide information on the fibril cross-section dimension and shape for Aβ42 fibrils prepared in aqueous phosphate buffer at pH = 7.4 and pH 8.0 under quiescent conditions at 37 °C from pure recombinant Aβ42 peptide. Fitting the data using a continuum model reveals an elliptical cross-section and a peptide mass-per-unit length compatible with two filaments of two monomers, four monomers per plane. To provide a more detailed atomistic model, the data were fitted using as a starting state a high-resolution structure of the two-monomer arrangement in filaments from solid-state NMR (Protein Data Bank ID 5kk3). First, a twofold symmetric model including residues 11 to 42 of two monomers in the filament was optimized in terms of twist angle and local packing using Rosetta. A two-filament model was then built and optimized through fitting to the scattering data allowing the two N-termini in each filament to take different conformations, with the same conformation in each of the two filaments. This provides an atomistic model of the fibril with twofold rotation symmetry around the fibril axis. Intriguingly, no polydispersity as regards the number of filaments was observed in our system over separate samples, suggesting that the two-filament arrangement represents a free energy minimum for the Aβ42 fibril.

摘要

淀粉样纤维与许多神经退行性疾病有关,包括阿尔茨海默病中的淀粉样β42 肽(Aβ42)纤维。这些纤维通过表面催化产生毒性寡聚物,对神经元细胞造成毒性。因此,详细了解纤维结构可能有助于治疗的开发。我们使用小角散射来提供在 37°C 下在静止条件下于 pH = 7.4 和 pH 8.0 的磷酸缓冲水溶液中由纯重组 Aβ42 肽制备的 Aβ42 纤维的纤维横截面尺寸和形状的信息。使用连续体模型拟合数据表明,在 pH = 7.4 和 pH 8.0 下,在 37°C 下于静止条件下,由纯重组 Aβ42 肽制备的 Aβ42 纤维的横截面为椭圆形,肽单位长度的质量与两个单体的两个纤维,每个平面四个单体兼容。为了提供更详细的原子模型,使用固态 NMR(蛋白质数据库标识符 5kk3)中纤维中两个单体排列的高分辨率结构作为起始状态来拟合数据。首先,使用 Rosetta 优化了包括纤维中两个单体的残基 11 到 42 的二倍对称模型的扭转角和局部包装。然后,通过拟合散射数据构建并优化了双纤维模型,允许每个纤维中的两个 N-末端采取不同的构象,两个纤维中的构象相同。这为纤维的原子模型提供了围绕纤维轴的二倍旋转对称。有趣的是,在我们的系统中,在单独的样品中,对于纤维的数量没有观察到多分散性,这表明双纤维排列代表 Aβ42 纤维的自由能最小值。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e613/8640717/6bbce7926b9a/pnas.202112783fig01.jpg

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