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基于电子显微镜和固态核磁共振技术对阿尔茨海默病β-淀粉样蛋白原纤维的超分子结构限制

Supramolecular structural constraints on Alzheimer's beta-amyloid fibrils from electron microscopy and solid-state nuclear magnetic resonance.

作者信息

Antzutkin Oleg N, Leapman Richard D, Balbach John J, Tycko Robert

机构信息

Division of Chemistry, Luleå University of Technology, Luleå, Sweden.

出版信息

Biochemistry. 2002 Dec 24;41(51):15436-50. doi: 10.1021/bi0204185.

Abstract

We describe electron microscopy (EM), scanning transmission electron microscopy (STEM), and solid-state nuclear magnetic resonance (NMR) measurements on amyloid fibrils formed by the 42-residue beta-amyloid peptide associated with Alzheimer's disease (Abeta(1)(-)(42)) and by residues 10-35 of the full-length peptide (Abeta(10)(-)(35)). These measurements place constraints on the supramolecular structure of the amyloid fibrils, especially the type of beta-sheets present in the characteristic amyloid cross-beta structural motif and the assembly of these beta-sheets into a fibril. EM images of negatively stained Abeta(10)(-)(35) fibrils and measurements of fibril mass per length (MPL) by STEM show a strong dependence of fibril morphology and MPL on pH. Abeta(10)(-)(35) fibrils formed at pH 3.7 are single "protofilaments" with MPL equal to twice the value expected for a single cross-beta layer. Abeta(10)(-)(35) fibrils formed at pH 7.4 are apparently pairs of protofilaments or higher order bundles. EM and STEM data for Abeta(1)(-)(42) fibrils indicate that protofilaments with MPL equal to twice the value expected for a single cross-beta layer are also formed by Abeta(1)(-)(42) and that these protofilaments exist singly and in pairs at pH 7.4. Solid-state NMR measurements of intermolecular distances in Abeta(10)(-)(35) fibrils, using multiple-quantum (13)C NMR, (13)C-(13)C dipolar recoupling, and (15)N-(13)C dipolar recoupling techniques, support the in-register parallel beta-sheet organization previously established by Lynn, Meredith, Botto, and co-workers [Benzinger et al. (1998) Proc. Natl. Acad. Sci. U.S.A. 95, 13407-13412; Benzinger et al. (2000) Biochemistry 39, 3491-3499] and show that this beta-sheet organization is present at pH 3.7 as well as pH 7.4 despite the differences in fibril morphology and MPL. Solid-state NMR measurements of intermolecular distances in Abeta(1)(-)(42) fibrils, which represent the first NMR data on Abeta(1)(-)(42) fibrils, also indicate an in-register parallel beta-sheet organization. These results, along with previously reported data on Abeta(1)(-)(40) fibrils, suggest that the supramolecular structures of Abeta(10)(-)(35), Abeta(1)(-)(40), and Abeta(1)(-)(42) fibrils are quite similar. A schematic structural model of these fibrils, consistent with known experimental EM, STEM, and solid-state NMR data, is presented.

摘要

我们描述了对由与阿尔茨海默病相关的42个残基的β-淀粉样肽(Aβ(1-42))以及全长肽的10 - 35位残基(Aβ(10-35))形成的淀粉样纤维进行的电子显微镜(EM)、扫描透射电子显微镜(STEM)和固态核磁共振(NMR)测量。这些测量对淀粉样纤维的超分子结构施加了限制,特别是特征性淀粉样交叉β结构基序中存在的β折叠类型以及这些β折叠组装成纤维的方式。负染的Aβ(10-35)纤维的EM图像以及通过STEM对纤维单位长度质量(MPL)的测量表明,纤维形态和MPL对pH有强烈依赖性。在pH 3.7形成的Aβ(10-35)纤维是单个“原纤维”,其MPL等于单个交叉β层预期值的两倍。在pH 7.4形成的Aβ(10-35)纤维显然是原纤维对或更高阶的束。Aβ(1-42)纤维的EM和STEM数据表明,MPL等于单个交叉β层预期值两倍的原纤维也由Aβ(1-42)形成,并且这些原纤维在pH 7.4时单独存在和成对对存在。使用多量子(13)C NMR、(13)C - (13)C偶极重耦合和(15)N - (13)C偶极重耦合技术对Aβ(10-35)纤维中分子间距离进行的固态NMR测量,支持了Lynn、Meredith、Botto及其同事先前建立的同向平行β折叠结构组织[Benzinger等人(1998年)《美国国家科学院院刊》95,13407 - 13412;Benzinger等人(2000年)《生物化学》39,3491 - 3499],并表明尽管纤维形态和MPL存在差异,但这种β折叠结构组织在pH 3.7以及pH 7.4时均存在。对Aβ(1-42)纤维中分子间距离进行的固态NMR测量(这是关于Aβ(1-42)纤维的首个NMR数据)也表明存在同向平行β折叠结构组织。这些结果与先前报道的关于Aβ(1-40)纤维的数据一起,表明Aβ(10-35)、Aβ(1-40)和Aβ(1-42)纤维的超分子结构非常相似。本文给出了与已知的实验EM、STEM和固态NMR数据一致的这些纤维的示意性结构模型。

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