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Amyloid Fibril Polymorphism Is under Kinetic Control

机译:淀粉样原纤维多态性处于动力学控制之下

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Self-assembly of proteins into amyloid aggregates displays a broad diversity of morphologies, both at the protofibrillar and final fibrillar species. These polymorphic species can coexist at fixed experimental conditions, and their relative abundance can be controlled by changing the solvent composition, or stirring the solution. However, the extent to which external conditions regulate the equilibrium of morphologically distinct species is still unknown. Here we investigate the nucleation of distinct fibril morphologies using computer simulations of a simplified model of an amyloid polypeptide. Counterintuitively, the energetically less favorable fibril morphologies nucleate more frequently than the morphologies of higher stability for models with low aggregation propensity. The free-energy profiles of the aggregation process indicate that the nucleation barrier determines the population fractions of different fibril morphologies, i.e., amyloid polymorphism is under kinetic control.
机译:蛋白质自组装成淀粉样蛋白聚集体在原纤维和最终纤维种类上都表现出广泛的形态多样性。这些多晶型物可以在固定的实验条件下共存,并且可以通过改变溶剂组成或搅拌溶液来控制它们的相对丰度。但是,外部条件调节形态上不同的物种平衡的程度仍然未知。在这里,我们使用淀粉样蛋白多肽简化模型的计算机模拟研究不同原纤维形态的成核。与直觉相反,对于低聚集倾向的模型,在能量上较不利的原纤维形态比较高稳定性的形态更容易成核。聚集过程的自由能曲线表明成核屏障决定了不同原纤维形态的种群分数,即淀粉样蛋白多态性处于动力学控制之下。

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