Center for Neuropathology and Prion Research, Ludwig-Maximilians-University, Munich, Germany.
Department of Neurology, Klinikum der Universität München, Munich, Germany.
Sci Rep. 2019 Jun 24;9(1):9100. doi: 10.1038/s41598-019-45298-6.
Parkinson's disease (PD) represents an increasing problem in society. The oligomerization of alpha-synuclein (αSyn) is a suggested key event in its pathogenesis, yet the pathological modes of action remain to be fully elucidated. To identify potential disease-modifying therapeutics and to study αSyn-mediated toxic mechanisms, we established cell lines with inducible overexpression of different αSyn constructs: αSyn, αSyn coupled to the fluorescence protein Venus (αSyn-Venus), and αSyn coupled to the N-terminal or C-terminal part of Venus (V1S and SV2, respectively) for a bimolecular fluorescence complementation assay (BiFC). Inducibility was achieved by applying modified GAL4-UAS or Cre-loxP systems and addition of tebufenozide or 4-OH-tamoxifen, respectively. Expression constructs were stably integrated into the host genome of H4 neuroglioma cells by lentiviral transduction. We here demonstrate a detailed investigation of the expression characteristics of inducible H4 cells showing low background expression and high inducibility. We observed increased protein load and aggregation of αSyn upon incubation with DMSO and FeCl along with an increase in cytotoxicity. In summary, we present a system for the creation of inducibly αSyn-overexpressing cell lines holding high potential for the screening for modulators of αSyn aggregation and αSyn-mediated toxicity.
帕金森病(PD)是社会面临的一个日益严重的问题。α-突触核蛋白(αSyn)的寡聚化被认为是其发病机制中的一个关键事件,但病理作用模式仍有待充分阐明。为了确定潜在的疾病修饰治疗方法,并研究αSyn 介导的毒性机制,我们建立了可诱导过表达不同αSyn 构建体的细胞系:αSyn、与荧光蛋白 Venus 偶联的αSyn(αSyn-Venus)以及与 Venus N 端或 C 端部分偶联的αSyn(分别为 V1S 和 SV2),用于双分子荧光互补测定(BiFC)。通过应用改良的 GAL4-UAS 或 Cre-loxP 系统,并分别添加 Tebufenozide 或 4-OH-Tamoxifen 来实现诱导性。表达构建体通过慢病毒转导稳定整合到 H4 神经胶质瘤细胞的宿主基因组中。在这里,我们详细研究了诱导型 H4 细胞的表达特征,这些细胞表现出低背景表达和高诱导性。我们观察到在用 DMSO 和 FeCl 孵育时,αSyn 的蛋白负荷增加和聚集增加,同时细胞毒性增加。总之,我们提出了一种可诱导αSyn 过表达细胞系的创建系统,该系统具有筛选αSyn 聚集和αSyn 介导的毒性调节剂的巨大潜力。