Interdisciplinary Research Center on Biology and Chemistry, Shanghai Institute of Organic Chemistry , Chinese Academy of Sciences , Shanghai 201210 , China.
Biomacromolecules. 2019 May 13;20(5):2015-2023. doi: 10.1021/acs.biomac.9b00218. Epub 2019 Apr 25.
Because of their association with debilitating diseases and their potential applications in developing novel bionanomaterials, highly ordered amyloid fibrils have recently received considerable attention. While many studies have thus far focused on amyloid fibrils made with short peptides containing just one steric zipper-forming segment of native amyloid proteins, the self-assembly of proteins containing multiple steric zipper-forming segments has been rarely explored. Here we develop a strategy to create four block polypeptides, each containing 16 repeats of a zipper-forming segment from four different amyloid morphological classes. All four block polypeptides self-assemble into fibrils that display the cross-β structure characteristic of amyloids. These amyloid-spider silk block polypeptides displayed fast self-assembly kinetics, and their fibrils exhibited high thermal stability. These novel synthetic amyloids provide insights into the self-assembly of proteins containing multiple zipper-forming segments, and our approach of creating block polypeptide fibrils could be used to expand the capability of amyloid-based bionanomaterials.
由于它们与衰弱性疾病有关,并且在开发新型生物纳米材料方面具有潜在应用,高度有序的淀粉样纤维最近受到了相当大的关注。尽管到目前为止,许多研究都集中在由含有仅一个天然淀粉样蛋白构象拉链形成片段的短肽制成的淀粉样纤维上,但含有多个构象拉链形成片段的蛋白质的自组装却很少被探索。在这里,我们开发了一种策略来创建四个嵌段多肽,每个多肽都包含来自四个不同淀粉样形态类别的构象拉链形成片段的 16 个重复。所有四个嵌段多肽都自组装成具有淀粉样特征的交叉-β结构的纤维。这些淀粉样蜘蛛丝嵌段多肽表现出快速的自组装动力学,其纤维表现出高热稳定性。这些新型合成淀粉样物为含有多个构象拉链形成片段的蛋白质的自组装提供了新的见解,我们创建嵌段多肽纤维的方法可以用于扩展基于淀粉样的生物纳米材料的能力。