Antzutkin Oleg N, Leapman Richard D, Balbach John J, Tycko Robert
Division of Chemistry, Luleå University of Technology, Luleå, Sweden.
Biochemistry. 2002 Dec 24;41(51):15436-50. doi: 10.1021/bi0204185.
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.
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。