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Solution conditions determine the relative importance of nucleation and growth processes in α-synuclein aggregation

机译:溶解条件决定了α-突触核蛋白聚集中成核和生长过程的相对重要性

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摘要

The formation of amyloid fibrils by the intrinsically disordered protein α-synuclein is a hallmark of Parkinson disease. To characterize the microscopic steps in the mechanism of aggregation of this protein we have used in vitro aggregation assays in the presence of preformed seed fibrils to determine the molecular rate constant of fibril elongation under a range of different conditions. We show that α-synuclein amyloid fibrils grow by monomer and not oligomer addition and are subject to higher-order assembly processes that decrease their capacity to grow. We also find that at neutral pH under quiescent conditions homogeneous primary nucleation and secondary processes, such as fragmentation and surface-assisted nucleation, which can lead to proliferation of the total number of aggregates, are undetectable. At pH values below 6, however, the rate of secondary nucleation increases dramatically, leading to a completely different balance between the nucleation and growth of aggregates. Thus, at mildly acidic pH values, such as those, for example, that are present in some intracellular locations, including endosomes and lysosomes, multiplication of aggregates is much faster than at normal physiological pH values, largely as a consequence of much more rapid secondary nucleation. These findings provide new insights into possible mechanisms of α-synuclein aggregation and aggregate spreading in the context of Parkinson disease.
机译:固有紊乱的蛋白质α-突触核蛋白形成淀粉样蛋白原纤维是帕金森氏病的标志。为了表征该蛋白聚集机理的微观步骤,我们在存在预先形成的种子原纤维的情况下使用了体外聚集测定法,以确定在一系列不同条件下原纤维伸长的分子速率常数。我们表明,α-突触核蛋白淀粉样原纤维通过单体而不是低聚物的添加而生长,并且经受降低其生长能力的更高阶的组装过程。我们还发现在静止条件下的中性pH下,均质的初级成核和次级过程(如碎裂和表面辅助成核)会导致聚集体总数的增殖,这是无法检测到的。但是,在pH值低于6时,二次成核的速率急剧增加,从而导致聚集体的成核与生长之间完全不同的平衡。因此,在中等酸性pH值下,例如在某些细胞内位置(包括内体和溶酶体)存在的pH值下,聚集体的增殖比正常生理pH值快得多,这在很大程度上是由于继发反应更加迅速成核。这些发现为帕金森病中α-突触核蛋白聚集和聚集扩散的可能机制提供了新的见解。

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