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不同的合成 Aβ 朊病毒株在双转基因小鼠中产生不同的淀粉样沉积物。

Distinct synthetic Aβ prion strains producing different amyloid deposits in bigenic mice.

机构信息

Institute for Neurodegenerative Diseases,Departments of Neurology and.

Institute for Neurodegenerative Diseases.

出版信息

Proc Natl Acad Sci U S A. 2014 Jul 15;111(28):10329-34. doi: 10.1073/pnas.1408968111. Epub 2014 Jun 30.

Abstract

An increasing number of studies continue to show that the amyloid β (Aβ) peptide adopts an alternative conformation and acquires transmissibility; hence, it becomes a prion. Here, we report on the attributes of two strains of Aβ prions formed from synthetic Aβ peptides composed of either 40 or 42 residues. Modifying the conditions for Aβ polymerization increased both the protease resistance and prion infectivity compared with an earlier study. Approximately 150 d after intracerebral inoculation, both synthetic Aβ40 and Aβ42 prions produced a sustained rise in the bioluminescence imaging signal in the brains of bigenic Tg(APP23:Gfap-luc) mice, indicative of astrocytic gliosis. Pathological investigations showed that synthetic Aβ40 prions produced amyloid plaques containing both Aβ40 and Aβ42 in the brains of inoculated bigenic mice, whereas synthetic Aβ42 prions stimulated the formation of smaller, more numerous plaques composed predominantly of Aβ42. Synthetic Aβ40 preparations consisted of long straight fibrils; in contrast, the Aβ42 fibrils were much shorter. Addition of 3.47 mM (0.1%) SDS to the polymerization reaction produced Aβ42 fibrils that were indistinguishable from Aβ40 fibrils produced in the absence or presence of SDS. Moreover, the Aβ amyloid plaques in the brains of bigenic mice inoculated with Aβ42 prions prepared in the presence of SDS were similar to those found in mice that received Aβ40 prions. From these results, we conclude that the composition of Aβ plaques depends on the conformation of the inoculated Aβ polymers, and thus, these inocula represent distinct synthetic Aβ prion strains.

摘要

越来越多的研究继续表明,淀粉样β(Aβ)肽采用替代构象并获得可传播性;因此,它成为一种朊病毒。在这里,我们报告了两种由合成 Aβ 肽组成的 Aβ 朊病毒的特性,这些肽由 40 或 42 个残基组成。与早期研究相比,改变 Aβ 聚合的条件会增加蛋白酶抗性和朊病毒感染力。在脑内接种后约 150 天,两种合成 Aβ40 和 Aβ42 朊病毒均在双基因 Tg(APP23:Gfap-luc)小鼠的大脑中产生持续的生物发光成像信号升高,表明星形胶质细胞胶质增生。病理研究表明,合成 Aβ40 朊病毒在接种双基因小鼠的大脑中产生了含有 Aβ40 和 Aβ42 的淀粉样斑块,而合成 Aβ42 朊病毒刺激了主要由 Aβ42 组成的更小、更多数量的斑块的形成。合成 Aβ40 制剂由长直纤维组成;相比之下,Aβ42 纤维短得多。在聚合反应中添加 3.47 mM(0.1%)SDS 可产生与在不存在或存在 SDS 时产生的 Aβ40 纤维无区别的 Aβ42 纤维。此外,在存在 SDS 的情况下制备的 Aβ42 朊病毒接种的双基因小鼠大脑中的 Aβ 淀粉样斑块与接受 Aβ40 朊病毒接种的小鼠中发现的斑块相似。根据这些结果,我们得出结论,Aβ 斑块的组成取决于接种的 Aβ 聚合物的构象,因此,这些接种物代表不同的合成 Aβ 朊病毒株。

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