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通过自动化微流控反馈控制定量表征活细胞中的α-突触核蛋白聚集。

Quantitative Characterization of α-Synuclein Aggregation in Living Cells through Automated Microfluidics Feedback Control.

机构信息

Telethon Institute of Genetics and Medicine (TIGEM), Via Campi Flegrei 34, 80078 Pozzuoli (NA), Italy.

Telethon Institute of Genetics and Medicine (TIGEM), Via Campi Flegrei 34, 80078 Pozzuoli (NA), Italy; Department of Chemical, Materials and Industrial Production Engineering, University of Naples Federico II, Piazzale Tecchio 80, 80125 Naples, Italy.

出版信息

Cell Rep. 2019 Apr 16;27(3):916-927.e5. doi: 10.1016/j.celrep.2019.03.081.

Abstract

Aggregation of α-synuclein and formation of inclusions are hallmarks of Parkinson's disease (PD). Aggregate formation is affected by cellular environment, but it has been studied almost exclusively in cell-free systems. We quantitatively analyzed α-synuclein inclusion formation and clearance in a yeast cell model of PD expressing either wild-type (WT) α-synuclein or the disease-associated A53T mutant from the galactose (Gal)-inducible promoter. A computer-controlled microfluidics device regulated α-synuclein in cells by means of closed-loop feedback control. We demonstrated that inclusion formation is strictly concentration dependent and that the aggregation threshold of the A53T mutant is about half of the WT α-synuclein (56%). We chemically modulated the proteasomal and autophagic pathways and demonstrated that autophagy is the main determinant of A53T α-synuclein inclusions' clearance. In addition to proposing a technology to overcome current limitations in dynamically regulating protein expression levels, our results contribute to the biology of PD and have relevance for therapeutic applications.

摘要

α-突触核蛋白的聚集和包涵体的形成是帕金森病 (PD) 的标志。聚集的形成受细胞环境的影响,但几乎仅在无细胞系统中进行了研究。我们在表达野生型 (WT) α-突触核蛋白或源自半乳糖 (Gal) 诱导启动子的疾病相关 A53T 突变体的 PD 酵母细胞模型中,定量分析了 α-突触核蛋白包涵体的形成和清除。计算机控制的微流控装置通过闭环反馈控制调节细胞中的 α-突触核蛋白。我们证明了包涵体的形成严格依赖于浓度,并且 A53T 突变体的聚集阈值约为 WT α-突触核蛋白的一半 (56%)。我们化学调节了蛋白酶体和自噬途径,并证明自噬是 A53T α-突触核蛋白包涵体清除的主要决定因素。除了提出一种克服当前动态调节蛋白质表达水平的技术外,我们的结果还为 PD 的生物学做出了贡献,并具有治疗应用的相关性。

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