The impact of protein disulfide bonds on the amyloid fibril morphology.

Dmitry Kurouski, Igor K Lednev
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引用次数: 16

Abstract

Amyloid fibrils are associated with many neurodegenerative diseases. Being formed from more than 20 different proteins that are functionally or structurally unrelated, amyloid fibrils share a common cross-β core structure. It is a well-accepted hypothesis that fibril biological activity and the associated toxicity vary with their morphology. Partial denaturation of a native protein usually precedes the initial stage of fibrillation, namely the nucleation process. Low pH and elevated temperature, typical conditions of amyloid fibril formation in vitro, resulted in partial denaturation of the proteins. Cleavage of disulfide bonds results typically in significant disruption of protein native structure and in the formation of the molten global state. Herein we report on a comparative investigation of fibril formation by apo-α-lactalbumin and its analog that contains only one of the four original disulfide bonds using deep UV resonance and non-resonance Raman spectroscopy and atomic force microscopy. Significant differences in the aggregation mechanism and the resulting fibril morphology were found.

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蛋白质二硫键对淀粉样纤维形态的影响。
淀粉样原纤维与许多神经退行性疾病有关。淀粉样蛋白原纤维由20多种不同的蛋白质组成,这些蛋白质在功能或结构上不相关,它们具有共同的交叉β核心结构。一个被广泛接受的假设是,原纤维的生物活性和相关毒性随其形态而变化。天然蛋白的部分变性通常先于纤颤的初始阶段,即成核过程。低pH值和高温是淀粉样纤维在体外形成的典型条件,导致蛋白质部分变性。二硫键的断裂通常会导致蛋白质天然结构的严重破坏和熔融整体状态的形成。本文采用深紫外共振、非共振拉曼光谱和原子力显微镜对载脂蛋白-α-乳清蛋白及其类似物形成纤维进行了比较研究,其中载脂蛋白-α-乳清蛋白只含有四个原始二硫键中的一个。在聚集机制和产生的原纤维形态上发现了显著的差异。
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