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Development of a cell-based high throughput luciferase enzyme fragment complementation assay to identify nuclear-factor-E2-related transcription factor 2 activators

机译:开发基于细胞的高通量荧光素酶片段互补测定法,以鉴定核因子 E2 相关转录因子 2 激活剂

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Nuclear-factor-E2-related transcription factor 2 (Nrf2) regulates a large panel of Phase II genes and plays an important role in cell survival. Nrf2 activation has been shown as preventing cigarette smoke-induced alveolar enlargement in mice. Therefore, activation of the Nrf2 protein by small-molecule activators represents an attractive therapeutic strategy that is used for chronic obstructive pulmonary disease. In this article, we describe a cell-based luciferase enzyme fragment complementation assay that identifies Nrf2 activators. This assay is based on the interaction of Nrf2 with its nuclear partner MafK or runt-related transcription factor 2 (RunX2) and is dependent on the reconstitution of a "split" luciferase. Firefly luciferase is split into two fragments, which are genetically fused to Nrf2 and MafK or RunX2, respectively. BacMam technology was used to deliver the fusion constructs into cells for expression of the tagged proteins. When the BacMam-transduced cells were treated with Nrf2 activators, the Nrf2 protein was stabilized and translocated into the nucleus where it interacted with MafK or RunX2. The interaction of Nrf2 and MafK or RunX2 brought together the two luciferase fragments that form an active luciferase. The assay was developed in a 384-well format and was optimized by titrating the BacMam concentration, transduction time, cell density, and fetal bovine serum concentration. It was further validated with known Nrf2 activators. Our data show that this assay is robust, sensitive, and amenable to high throughput screening of a large compound collection for the identification of novel Nrf2 activators.
机译:核因子-E2 相关转录因子 2 (Nrf2) 调节大量 II 期基因,并在细胞存活中起重要作用。Nrf2 激活已被证明可以防止香烟烟雾诱导的小鼠肺泡肿大。因此,小分子激活剂激活 Nrf2 蛋白是一种有吸引力的治疗策略,用于慢性阻塞性肺疾病。在本文中,我们描述了一种基于细胞的荧光素酶片段互补测定,可鉴定 Nrf2 激活剂。该测定基于 Nrf2 与其核伴侣 MafK 或 runt 相关转录因子 2 (RunX2) 的相互作用,并且依赖于“分裂”荧光素酶的重建。萤火虫荧光素酶分裂成两个片段,分别在基因上融合到 Nrf2 和 MafK 或 RunX2。BacMam 技术用于将融合构建体递送至细胞中以表达标记蛋白。当用 Nrf2 激活剂处理 BacMam 转导的细胞时,Nrf2 蛋白稳定并转位到细胞核中,在那里它与 MafK 或 RunX2 相互作用。Nrf2 和 MafK 或 RunX2 的相互作用将形成活性荧光素酶的两个荧光素酶片段聚集在一起。该测定以 384 孔形式开发,并通过滴定 BacMam 浓度、转导时间、细胞密度和胎牛血清浓度进行优化。它用已知的 Nrf2 激活剂进一步验证。我们的数据表明,该检测方法稳健、灵敏,适用于高通量筛选大型化合物集合,以鉴定新型 Nrf2 激活剂。

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