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Alpha-Synuclein Continues to Enhance SNARE-Dependent Vesicle Docking at Exorbitant Concentrations

机译:α-突触核蛋白继续以过高的浓度增强依赖SNARE的囊泡停泊。

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摘要

Recently, Parkinson’s disease-associated α-synuclein (αS) has emerged as an important regulator for SNARE-dependent vesicle fusion. However, it is controversial if excessive accumulation of αS, even in the absence of aggregation, impairs neurotransmission. Here we use a single vesicle fusion assay with ms time resolution capable of dissecting the impact of αS on each step of membrane fusion. Unlike the previous results from various in vitro, cellular, and in vivo studies, we find that non-aggregated αS promotes vesicle merger even at exorbitant concentrations. The enhancement has been seen as much as 13 fold. Delving into the kinetics of the intermediate states for vesicle fusion reveals that αS stimulates vesicle docking without altering the dynamics of bilayer merger (lipid mixing). However, minute amounts of soluble aggregated species abolish SNARE-dependent bilayer merger completely. Thus, the results show that excessive accumulation of non-aggregated αS may not be toxic for neurotransmitter release.
机译:最近,帕金森氏病相关的α-突触核蛋白(αS)已成为依赖SNARE的囊泡融合的重要调节剂。但是,即使在没有聚集的情况下,αS的过度积累是否会损害神经传递也是有争议的。在这里,我们使用毫秒时间分辨率的单囊泡融合测定法,能够分析αS对膜融合每个步骤的影响。与先前来自各种体外,细胞和体内研究的结果不同,我们发现即使在高浓度下,非聚集αS也会促进囊泡合并。增强效果被认为高达13倍。对囊泡融合的中间状态的动力学进行研究表明,αS刺激了囊泡对接,而没有改变双层合并(脂质混合)的动力学。但是,微量的可溶性聚集物质完全消除了依赖SNARE的双层合并。因此,结果表明,未聚集的αS的过量积累可能对神经递质释放没有毒性。

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