A simple and robust cell-based assay for the discovery of novel cytokinesis inhibitors.

Journal of biological methods Pub Date : 2020-09-17 eCollection Date: 2020-01-01 DOI:10.14440/jbm.2020.335
Laszlo Radnai, Rebecca F Stremel, Thomas Vaissiere, Li Lin, Michael Cameron, William H Martin, Gavin Rumbaugh, Theodore M Kamenecka, Patrick R Griffin, Courtney A Miller
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Abstract

Cytokinesis is the last step of mitotic cell division that separates the cytoplasm of dividing cells. Small molecule inhibitors targeting either the elements of the regulatory pathways controlling cytokinesis, or the terminal effectors have been of interest as potential drug candidates for the treatment of various diseases. Here we present a detailed protocol for a cell-based cytokinesis assay that can be used for the discovery of novel cytokinesis inhibitors. The assay is performed in a 96-well plate format in 48 h. Living cells, nuclei and nuclei of dead cells are identified by a single staining step using three fluorescent dyes, followed by rapid live cell imaging. The primary signal is the nuclei-to-cell ratio (NCR). In the presence of cytokinesis inhibitors, this ratio increases over time, as the ratio of multinucleated cells increases in the population. The ratio of dead nuclei to total nuclei provides a simultaneous measure of cytotoxicity. A screening window coefficient (Z`) of 0.65 indicates that the assay is suitable for screening purposes, as the positive and negative controls are well-separated. EC50 values can be reliably determined in a single 96-well plate by using only six different compound concentrations, enabling the testing of 4 compounds per plate. An excellent test-retest reliability (R 2 = 0.998) was found for EC50 values covering a ~1500-fold range of potencies. Established small molecule inhibitors of cytokinesis operating via direct action on actin dynamics or nonmuscle myosin II are used to demonstrate the robustness, simplicity and flexibility of the assay.

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一个简单和稳健的细胞为基础的分析发现新的细胞分裂抑制剂。
细胞质分裂是有丝分裂细胞分裂的最后一步,它将分裂细胞的细胞质分离。小分子抑制剂针对控制细胞分裂的调控途径的元件,或终端效应物,作为治疗各种疾病的潜在候选药物已引起人们的兴趣。在这里,我们提出了一个详细的方案,以细胞为基础的细胞分裂测定,可用于发现新的细胞分裂抑制剂。检测在96孔板上进行,时间为48小时。活细胞、细胞核和死细胞的细胞核通过使用三种荧光染料的单一染色步骤进行鉴定,然后进行快速活细胞成像。主要信号是核细胞比(NCR)。在细胞分裂抑制剂存在的情况下,这个比例随着时间的推移而增加,因为多核细胞的比例在人群中增加。死亡细胞核与总细胞核的比率提供了细胞毒性的同时测量。筛选窗口系数(Z′)为0.65,表明该方法适合筛选目的,因为阳性对照和阴性对照分离良好。只需使用6种不同的化合物浓度,就可以在单个96孔板中可靠地确定EC50值,每个板可以测试4种化合物。EC50值在1500倍效价范围内具有良好的重测信度(r2 = 0.998)。已建立的细胞分裂小分子抑制剂通过直接作用于肌动蛋白动力学或非肌肉肌球蛋白II来证明该试验的稳健性、简单性和灵活性。
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