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Sucrose modulates insulin amyloid-like fibril formation: effect on the aggregation mechanism and fibril morphology

机译:蔗糖调节胰岛素淀粉样蛋白样原纤维形成:对聚集机制和原纤维形态的影响

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Co-solutes, such as sugars, are used in in vitro protein aggregation experiments to mimic crowding and, in general, complex environments. Sugars often increase the stability of the native protein structure by affecting inter- and intramolecular protein–protein interactions. This, in turn, modifies the protein self-assembly pathways. Using a combination of fluorescence spectroscopy, synchrotron radiation circular dichroism and transmission electron microscopy, we study the kinetics of formation and structural properties of human insulin fibrils in the presence of sucrose. The presence of sucrose results in a delay of the onset of fibrillation. Moreover, it leads to a dramatic change in both the morphology and overall amount of fibrils. Our results emphasize that the detailed composition of protein surroundings likely influences not only the fibrillation kinetics but also the balance between different species, potentially determining fibril strains with different biological activities. This aspect is crucial in the etiology of pathologies associated with amyloidosis.
机译:糖等共溶质可用于体外蛋白质聚集实验,以模拟拥挤以及一般情况下的复杂环境。糖通常通过影响分子间和分子内蛋白质与蛋白质的相互作用来增加天然蛋白质结构的稳定性。反过来,这改变了蛋白质的自组装途径。结合荧光光谱,同步辐射圆二色性和透射电子显微镜,我们研究了蔗糖存在下人胰岛素原纤维形成和结构性质的动力学。蔗糖的存在导致原纤维化的延迟。而且,它导致原纤维的形态和总量的巨大变化。我们的结果强调,蛋白质周围环境的详细组成不仅可能影响原纤维形成动力学,而且还影响不同物种之间的平衡,从而可能确定具有不同生物活性的原纤维菌株。这方面与淀粉样变性病相关的病因学至关重要。

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