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糖胺聚糖与淀粉样β纤维相互作用的原子细节。

Atomic Details of the Interactions of Glycosaminoglycans with Amyloid-β Fibrils.

机构信息

Astbury Centre for Structural Molecular Biology, School of Molecular and Cellular Biology, University of Leeds , Leeds LS2 9JT, United Kingdom.

Department of Chemistry, University of Lancaster , Lancaster LA1 4YB, United Kingdom.

出版信息

J Am Chem Soc. 2016 Jul 13;138(27):8328-31. doi: 10.1021/jacs.6b02816. Epub 2016 Jul 5.

Abstract

The amyloid plaques associated with Alzheimer's disease (AD) comprise fibrillar amyloid-β (Aβ) peptides as well as non-protein factors including glycosaminoglycan (GAG) polysaccharides. GAGs affect the kinetics and pathway of Aβ self-assembly and can impede fibril clearance; thus, they may be accessory molecules in AD. Here we report the first high-resolution details of GAG-Aβ fibril interactions from the perspective of the saccharide. Binding analysis indicated that the GAG proxy heparin has a remarkably high affinity for Aβ fibrils with 3-fold cross-sectional symmetry (3Q). Chemical synthesis of a uniformly (13)C-labeled octasaccharide heparin analogue enabled magic-angle spinning solid-state NMR of the GAG bound to 3Q fibrils, and measurements of dynamics revealed a tight complex in which all saccharide residues are restrained without undergoing substantial conformational changes. Intramolecular (13)C-(15)N dipolar dephasing is consistent with close (<5 Å) contact between GAG anomeric position(s) and one or more histidine residues in the fibrils. These data provide a detailed model for the interaction between 3Q-seeded Aβ40 fibrils and a major non-protein component of AD plaques, and they reveal that GAG-amyloid interactions display a range of affinities that critically depend on the precise details of the fibril architecture.

摘要

与阿尔茨海默病(AD)相关的淀粉样斑块包含纤维状淀粉样-β(Aβ)肽以及非蛋白因子,包括糖胺聚糖(GAG)多糖。GAG 会影响 Aβ 自组装的动力学和途径,并阻碍纤维清除;因此,它们可能是 AD 的辅助分子。在这里,我们从糖的角度首次报告了 GAG-Aβ 纤维相互作用的高分辨率细节。结合分析表明,糖胺聚糖代理肝素与具有 3 倍横截面对称性(3Q)的 Aβ 纤维具有极高的亲和力。均一(13)C 标记的八糖肝素类似物的化学合成使 GAG 与 3Q 纤维结合的魔角旋转固态 NMR 成为可能,并且动力学测量显示出一种紧密的复合物,其中所有糖残基都受到限制而不会发生实质性的构象变化。分子内(13)C-(15)N 偶极去相位与 GAG 端基位置(s)与纤维中一个或多个组氨酸残基之间的紧密接触一致。这些数据为 3Q 种子 Aβ40 纤维与 AD 斑块中主要非蛋白成分之间的相互作用提供了详细模型,并揭示 GAG-淀粉样相互作用显示出一系列亲和力,这极大地取决于纤维结构的精确细节。

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