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构象兼容性对于α-突触核蛋白的异源聚集至关重要。

Conformational Compatibility Is Essential for Heterologous Aggregation of α-Synuclein.

机构信息

Vrije Universiteit Amsterdam , De Boelelaan 1105, 1081 HV Amsterdam, The Netherlands.

出版信息

ACS Chem Neurosci. 2016 Jun 15;7(6):719-27. doi: 10.1021/acschemneuro.5b00322. Epub 2016 Mar 28.

Abstract

Under aggregation-prone conditions, soluble amyloidogenic protein monomers can self-assemble into fibrils or they can fibrillize on preformed fibrillar seeds (seeded aggregation). Seeded aggregations are known to propagate the morphology of the seeds in the event of cross-seeding. However, not all proteins are known to cross-seed aggregation. Cross-seeding has been proposed to be restricted either because of differences in the protein sequences or because of conformations between the seeds and the soluble monomers. Here, we examine cross-seeding efficiency between three α-synuclein sequences, wild-type, A30P, and A53T, each varying in only one or two amino acids but forming morphologically distinct fibrils. Results from bulk Thioflavin-T measurements, monomer incorporation quantification, single fibril fluorescence microscopy, and atomic force microscopy show that under the given solution conditions conformity between the conformation of seeds and monomers is essential for seed elongation. Moreover, elongation characteristics of the seeds are defined by the type of seed.

摘要

在易于聚集的条件下,可溶性淀粉样蛋白单体可以自组装成纤维,或者在预先形成的纤维状种子上纤维化成纤维(种子引发聚集)。已知种子引发聚集会在交叉接种的情况下传播种子的形态。然而,并非所有蛋白质都被认为可以进行交叉接种。交叉接种可能受到限制,要么是因为蛋白质序列的差异,要么是因为种子和可溶性单体之间的构象差异。在这里,我们研究了三种 α-突触核蛋白序列(野生型、A30P 和 A53T)之间的交叉接种效率,每个序列仅在一个或两个氨基酸上有所不同,但形成形态上明显不同的纤维。来自总体硫黄素 T 测量、单体掺入定量、单纤维荧光显微镜和原子力显微镜的结果表明,在给定的溶液条件下,种子和单体之间构象的一致性对于种子伸长至关重要。此外,种子的伸长特性由种子的类型决定。

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