Interdisciplinary Nanoscience Center (iNANO), Gustav Wieds 14, Building 1590, Aarhus C., Denmark.
Nanoscale. 2015 May 7;7(17):7745-52. doi: 10.1039/c4nr05109b.
Amyloid and amyloid-like fibrils represent a generic class of highly ordered nanostructures that are implicated in some of the most fatal neurodegenerative diseases. On the other hand, amyloids, by possessing outstanding mechanical robustness, have also been successfully employed as functional biomaterials. For these reasons, physical and chemical factors driving fibril self-assembly and morphology are extensively studied - among these parameters, the secondary structures and the pH have been revealed to be crucial, since a variation in pH changes the fibril morphology and net chirality during protein aggregation. It is important to quantify the mechanical properties of these fibrils in order to help the design of effective strategies for treating diseases related to the presence of amyloid fibrils. In this work, we show that by changing pH the mechanical properties of amyloid-like fibrils vary as well. In particular, we reveal that these mechanical properties are strongly related to the content of secondary structures. We analysed and estimated the Young's modulus (E) by comparing the persistence length (Lp) - measured from the observation of TEM images by using statistical mechanics arguments - with the mechanical information provided by peak force quantitative nanomechanical property mapping (PF-QNM). The secondary structure content and the chirality are investigated by means of synchrotron radiation circular dichroism (SR-CD). Results arising from this study could be fruitfully used as a protocol to investigate other medical or engineering relevant peptide fibrils.
淀粉样蛋白和类似淀粉样的纤维代表了一类高度有序的纳米结构,它们与一些最致命的神经退行性疾病有关。另一方面,淀粉样蛋白具有出色的机械强度,也已成功用作功能性生物材料。出于这些原因,广泛研究了驱动纤维自组装和形态的物理和化学因素——在这些参数中,二级结构和 pH 已被证明是至关重要的,因为 pH 的变化会在蛋白质聚集过程中改变纤维形态和净手性。为了帮助设计与淀粉样纤维存在相关的疾病的有效治疗策略,定量这些纤维的力学性能非常重要。在这项工作中,我们表明通过改变 pH 值,类似淀粉样的纤维的力学性能也会发生变化。具体而言,我们揭示了这些力学性能与二级结构的含量密切相关。我们通过将由 TEM 图像观察得出的统计力学参数的持久性长度(Lp)与通过峰值力定量纳米力学特性映射(PF-QNM)获得的机械信息进行比较,分析和估计了杨氏模量(E)。通过同步辐射圆二色性(SR-CD)研究了二级结构含量和手性。这项研究的结果可作为一种方案,用于研究其他医学或工程相关的肽纤维。