Institute of Biotechnology, Life Sciences Center, Vilnius University, LT-10257 Vilnius, Lithuania.
Int J Mol Sci. 2024 Aug 29;25(17):9406. doi: 10.3390/ijms25179406.
Protein amyloid aggregation is linked with widespread and fatal neurodegenerative disorders as well as several amyloidoses. Insulin, a small polypeptide hormone, is associated with injection-site amyloidosis and is a popular model protein for in vitro studies of amyloid aggregation processes as well as in the search for potential anti-amyloid compounds. Despite hundreds of studies conducted with this specific protein, the procedures used have employed a vast array of different means of achieving fibril formation. These conditions include the use of different solution components, pH values, ionic strengths, and other additives. In turn, this variety of conditions results in the generation of fibrils with different structures, morphologies and stabilities, which severely limits the possibility of cross-study comparisons as well as result interpretations. In this work, we examine the condition-structure relationship of insulin amyloid aggregation under a range of commonly used pH and ionic strength conditions as well as solution components. We demonstrate the correlation between the reaction solution properties and the resulting aggregation kinetic parameters, aggregate secondary structures, morphologies, stabilities and dye-binding modes.
蛋白质淀粉样聚集与广泛存在且致命的神经退行性疾病以及几种淀粉样变性有关。胰岛素是一种小的多肽激素,与注射部位淀粉样变性有关,是体外淀粉样聚集过程研究以及寻找潜在抗淀粉样化合物的常用模型蛋白。尽管已经对这种特定蛋白质进行了数百项研究,但所采用的方法采用了各种不同的方法来实现纤维形成。这些条件包括使用不同的溶液成分、pH 值、离子强度和其他添加剂。反过来,这种各种条件导致产生具有不同结构、形态和稳定性的纤维,这严重限制了跨研究比较以及结果解释的可能性。在这项工作中,我们研究了在一系列常用 pH 值和离子强度条件以及溶液成分下胰岛素淀粉样聚集的条件-结构关系。我们证明了反应溶液性质与所得聚集动力学参数、聚集体二级结构、形态、稳定性和染料结合模式之间的相关性。