Alpha-synuclein is a major component of intraneuronal protein aggregates constituting a distinctive feature of Parkinson disease. To date, fluorescence imaging of dynamic processes leading to such amyloid deposits in living cells has not been feasible. To address this need, we generated a recombinant alpha-synuclein (alpha-synuclein-C4) bearing a tetracysteine target for fluorogenic biarsenical compounds. The biophysical, biochemical and aggregation properties of alpha-synuclein-C4 matched those of the wild-type protein in vitro and in living cells. We observed aggregation of alpha-synuclein-C4 transfected or microinjected into cells, particularly under oxidative stress conditions. Fluorescence resonance energy transfer (FRET) between FlAsH and ReAsH confirmed the close association of fibrillized alpha-synuclein-C4 molecules. Alpha-synuclein-C4 offers the means for directly probing amyloid formation and interactions of alpha-synuclein with other proteins in living cells, the response to cellular stress and screening drugs for Parkinson disease.

译文

α-突触核蛋白是构成帕金森病独特特征的神经内蛋白聚集体的主要成分。迄今为止,对导致活细胞中此类淀粉样蛋白沉积的动态过程进行荧光成像是不可行的。为了满足这一需求,我们产生了带有用于荧光二砷化合物的四半胱氨酸靶标的重组 α-突触核蛋白 (alpha-synuclein-C4)。alpha-synuclein-C4的生物物理,生化和聚集特性与体外和活细胞中的野生型蛋白质相匹配。我们观察到转染或微注入细胞的alpha-synuclein-C4聚集,特别是在氧化应激条件下。闪光和ReAsH之间的荧光共振能量转移 (FRET) 证实了纤化alpha-synuclein-C4分子的紧密结合。Alpha-synuclein-C4提供了直接探测活细胞中淀粉样蛋白的形成以及 α-突触核蛋白与其他蛋白质的相互作用,对细胞应激的反应以及筛选帕金森病药物的手段。

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